Неспецифическая устойчивость растений к стрессовым факторам и ее регуляция - часть 10

 

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Неспецифическая устойчивость растений к стрессовым факторам и ее регуляция - часть 10

 

 

 

147

Hong SW,  Jon JH,  Kwak JM,  Nam HG (1997) Identification of a receptor-like protein 

kinase gene rapidly induced by abscisic acid, dehydration, high salt, and cold treatments in 
Arabidopsis thaliana. Plant Physiol. 113: 1203–1212 

Hoyos ME,  Zhang S (2000) Calcium-independent activation of salicylic acid-induced protein 

kinase and 40-kilodalton protein kinase by hyperosmotic stress. Plant Physiol. 122: 1355–
1363 

Hsu F, Kleier D (1990) Phloem mobility of xenobiotics. 3. Sensitivity of unified model to plant 

parameters and application to patented chemical hybridizing agents. Weed Sci. 38:  
315–323  

Hughes MA,  Dunn MA (1996) The molecular biology of plant acclimation to low temperature. 

J. Exp. Botany 47: 296–305 

Hughes RK, Dickerson AG (1990) Auxin regulation of Phaseolus vulgaris to a fungal elicitor. 

Plant Cell Physiol. 31: 667–675 

Hurkman W,  Tanaka CK (1987) The effects of salt on the pattern of protein synthesis in 

barley roots. Plant Physiol. 83: 517–524 

Hurkman W,  Tanaka CK (1996) Effect of salt stress on germin gene expression in barley 

roots. Plant Physiol. 110: 971–977 

Hwang DL,  Yang WK,  Foard DE (1978) Rapid release of protease inhibitors from soybeans. 

Immunochemical quantitation and parallels with lectins. Plant Physiol. 61: 30–34 

Iseli-Gamboni B, Boller T, Neuhaus J-M (1998) Mutation of either of two essential 

glutamates converts the catalytic domain of tobacco class I chitinase into a chitin-binding 
lectin. Plant Sci. 134: 45–51 

Ishige F,  Yamazaki K,  Mori H,  Imaseki H (1991) The effect of ethylene on the 

coordinated synthesis of multiple proteins: accumulation of an acidic chitinase and a basic 
glycoprotein induced by ethylene in leaves of azuki bean, Vigna angularis. Plant Cell 
Physiol. 32: 681–691 

Ishikawa M,  Robertson AJ,  Gusta L (1995) Comparison of viability tests for assessing 

cross-adaptation to freezing, heat and salt stresses induced by abscisic acid in bromegrass 
(Bromus inermis leyss) suspension culture cells. Plant Sci. 107: 83–93 

Isla MI,  Vattuone MA,  Sampietro AR (1991) Proteinaseous inhibitor from Solanum 

tuberosum invertase. Phytochemistry 30: 739–743 

Ismail A,  Hall AE,  Close TJ (1999) Allelic variation of a dehydrin gene cosegregates with 

chilling tolerance during seedling emergence. Proc. Natl. Acad. Sci. USA 96:  
13556–13570 

Jacinto T, McCurl B, Ryan CA (1999) Wound-regulation and tissue specificity of the tomato 

prosistemin promoter in transgenic tobacco plants. Plant Sci. 14: 155–159 

Jackson M (1993) Are plants hormones involved in root to shoot communication? 

 

In: Advanced in Botanical Research 19 Ed. JA Callow Academic Press 103–187 

Jackson M (1997) Hormones from roots as signal for the shoots of stressed plants Elsevier 

Trends J. 2: 22–28 

Jonson KD,  Daniels D,  Dowler MJ,  Rayle DL (1974) Activation of Avena coleoptile cell 

wall glycosidases by hydrogen ions and auxin. Plant Physiol. 53: 222–228 

Jouanin L,  Bonade-Bottino M,  Girard C  et al. (1998) Transgenic plants for insect 

resistance. Plant Sci. 131: 1–11 

Jung J-L, Friting B, Hahne G (1993) Sunflower (Helianthus annuus L) pathogenesis-related 

proteins. Induction by aspirin (acetylsalicylic acid) and characterization. Plant Physiol. 
101: 873–880 

Kakimoto T (1998) Cytokinin signalling. Curr. Opin. Plant Biol. 1: 399–403 
Kalinich JF,  Mandava NB,  Todhunter JA (1985) Relationship of nucleic acid metabolism 

to brassinolide-induced responses in beans. J. Plant Physiol. 120: 207–221 

 

148 

Katsumi M (1985) Interaction of a brassinosteroid with IAA and GA

3

 in the elongation of 

cucumber hypocotyl sections. Plant Cell Physiol. 26: 615–625 

Katz A,  Thulke OU,  Conrath U (1998) A benzothiadiazole primes parsley cells for 

augmented elicitation of defence responses. Plant Physiol. 117: 1333–1339 

Kauss H,  Jeblick W  (1996) Influence of salicylic acid on the induction of competence for 

H

2

O

2

 elicitation. Comparison of ergosterol with other elicitors. Plant Physiol. 111:  

755–763 

Kawano T,  Sahashi N,  Takahashi K  et al. (1998) Salicylic acid induces extracellular 

superoxide generation followed by an increase in cytosolic calcium ion in tobacco 
suspension culture: the earliest events in salicylic acid signal transduction. Plant Cell 
Physiol. 39: 721–730 

Kende H,  Zeevaart JAD (1997) The five «classical» plant hormones. Plant Cell 9:  

1197–1210 

Khripach V,  Zhabinskii V,  de Groot A (2000) Twenty years of brassinosteroids: steroidal 

plant hormones warrant better crops for the XXI century. Annals Bot. 86: 441–447 

Kiraly Z,  Ersek T,  Barna B,  Adam A,  Gullner G (1991) Pathophysiological aspects of 

plants disease resistance. Acta Phytopath. Entomol. Hungarica 26: 233–250  

Klyachko NL,  Ananiev E,  Kulaeva ON (1979) Effect of 6-benzylaminopurine and abscisic 

acid on protein synthesis in isolated pumpkin cotyledons. Physiol Vegetale 17: 607–617 

Knogge W (1996) Fungal infection of plants. Plant Cell 8: 1711–1722 
Kobayashi K,  Fukuda M,  Igarashi D,  Sunaoshi M (2000) Cytokinin-binding proteins 

from tobacco callus share homology with osmotin-like protein and an endochitinase. Plant 
Cell Physiol. 41: 148–157 

Kolattukudy PE,  Rogers LM,  Li D  et al. (1995) Surface signalling in pathogenesis. Proc. 

Natl. Acad. Sci. USA 92: 4080–4087 

Kuc J (1982) Induced immunity to plant disease. BioSci. 32: 854–860 
Kudoyarova G,  Veselov D,  Symonyan M  et al. (2001) Fast shoot responses to root 

treatment. Are hormones involved? Recent advances of Plant root structure and function. 
Eds. O. Gasparikova et al. Dortrecht etc.: Kluver Acad Publ. 85–92 

Kuznetsov VV,  Herrmann RG,  Kulaeva ON,  Oelmuller R (1998) Cytokinin stimulates 

and abscisic acid inhibits greening of etiolated Lupinus luteus cotyledons by affecting the 
expression of the light-sensitive protochlorophyllide oxidoreductase. Mol. Gener. Genetics 
259: 21–28 

Kuznetsov VV,  Rakitin VYu,  Borisova NN,  Rotschupkin BV (1993) Why does heat 

shock increase salt resistance in cotton plants? Plant Physiol. Biochem. 31: 181–188 

Lamb C,  Dixon RA (1997) The oxidative burst in plant disease resistance. Annu. Rev. Plant 

Physiol. Plant Mol. Biol. 48: 251–275 

Lang V,  Mantyla E,  Welin B  et al. (1994) Alterations in water status, endogenous abscisic 

acid content, and expression of rab18 gene during the development of freezing tolerance 
in Arabidopsis thaliana. Plant Physiol. 104: 1341–1349 

Lawton KA, Potter ShL, Ukness S, Ryals J (1994) Acquired resistance signal transduction 

in Arabidopsis is ethylene independent. Plant Cell 6: 581–588 

Leach JE,  Cantrell MA,  Sequerira L (1982) Hydroxyproline-rich bacterial agglutinin from 

potato. Extraction, purification, and characterization. Plant Physiol. 70: 

 

1353–1358 

Lee H-I,  Leon J,  Raskin I (1995) Biosynthesis and metabolism of salicylic acid. Proc. Natl. 

Acad. Sci. USA 92: 4076–4079 

Lee S,  Woffenden BJ,  Beers EP,  Roberts AW (2000) Expansion of cultures Zinnia 

mesophyll cells in response to hormones and light. Physiol. Plant. 108: 216–222 

Leon J,  Lawton MA,  Raskin I (1995) Hydrogen peroxide stimulates salicylic acid 

biosynthesis in tobacco. Plant Physiol. 108: 1673–1678 

 

149

Leung J, Giraudat J (1996) Abscisic acid signal transduction. Annu. Rev. Plant Mol. Biol. 49: 

199–222 

Levinsh G,  Valcina A,  Ozola D (1995) Induction of ascorbate peroxidase activity in stressed 

pine (Pinus sylvestris L) needles: a putative role for ethylene. Plant Sci. 112: 167–173 

Li A,  Heath C (1990) Effect of plant growth regulators on the interactions between bean plants 

and rust fungi non-pathogenic on beans. Physiol. Mol. Plant Pathol. 37: 245–254 

Lis H, Sharon H (1986) Lectins as molecules and as tools. Annu. Rev. Biochem. 55: 35–67 
Long ShR (1996) Rhizobium symbiosis: nod factors in perspective. Plant Cell 8: 1885–1898 
Lord JM (1985) The structure and synthesis of plant lectins. New Phytol. 101: 351–366 
Lord JM,  Hartley MR,  Robertson LM (1991) Ribosome inactivating proteins of plants. 

Semin. Cell Biol. 2: 15–22  

Loris R,  Hamelryck T,  Bouckaert J,  Wyns L (1998) Legume lectin structure. Biochim. 

Biophys. Acta 1383: 9–36 

Lui D,  Raghothama KG,  Hasegava PM  et al. (1994) Osmotin overexpression in potato 

delays development of disease symptoms. Proc. Natl. Acad. Sci. USA 91: 1888–1892 

Mandava NB (1988) Plant growth-promoting brassinosteroids. Annu. Rev. Plant Physiol.; Plant 

Mol. Biol. 39: 23–52 

Mandava NB,  Sasse JM,  Yopp JH (1981) Brassinolide, a growth promoting steroidal 

lactone. II. Activity in selected gibberellin and cytokinin bioassays Physiol Plant. 53:  
453–514 

Mandava NB,  Thompson MJ,  Yopp JH  (1987) Effects of selected putative inhibitors of 

RNA and protein synthesis on brassinosteroid-induced growth in mung bean epicotyls.  
J. Plant Physiol. 128: 63–68 

Mansfield MA,  Peumans WJ,  Raikhel NV (1988) Wheat germ agglutinin is synthesized as 

a glycosylated precursor. Planta 173: 482–489 

Mansfield MA,  Raikhel NV (1990) Abscisic acid enhances the transcription of wheat-germ 

agglutinin mRNA without altering its tissue-specific expression. Planta 180: 548–554 

Marchesi VT  (1972) Wheat germ (Triticum vulgaris) agglutinin. Methods in Enzymology. Ed. 

Ginsberg. N. Y.: Academic Press, 28: 354–356 

Mauch F, Mauch-Mani B, Boller T (1988) Antifungal hydrolases in pea tissue. II. Inhibition 

of fungal growth by combinations of chitinase and 

β-1,3-glucanase. Plant Physiol 88: 

936–942 

Mauch-Mani B,  Metraux J-P (1998) Salicylic acid and systemic acquired resistance to 

pathogen attack. Annals Bot. 82: 535–540 

Mauch-Mani B,  Slusarenko AJ (1996) Production of salicylic acid precursors is a major 

function of phenylalanine ammonia-lyase in the resistance of Arabidopsis to Peronospora 
parasitica.
 Plant Cell 8: 203–212 

Mazau D, Esquerre-Tugaye MT (1986) Hydroxyprolin-rich glycoprotein accumulation in the 

cell walls of plants infected by various pathogens. Physiol. Mol. Plant Pathol. 29: 157–165 

Merkouropoulos G,  Barnett DC,  Shirsat AH (1999) The arabidopsis extensin gene is 

developmentally regulated, is induced by wounding, methyl jasmonate, abscisic and 
salicylic acid, and codes for a protein with unusual motifs. Planta 208: 212–219 

Metraux J-P,  Signer H,  Ryals J  et al. (1990) Increase in salicylic acid at the onset of 

systemic acquired resistance in cucumber. Science 250: 1004 

Meyer A,  Muller P,  Sembdner G  (1987) Air pollution and plant hormones. Biochem. 

Physiol. Pflanz. 182: 1–21 

Michael G,  Beringer H (1980) The role of hormones in yield formation. Physiol. Aspects 

Crop Prod. Bern. 85–66 

 

150 

Mikolajczyk M,  Awotunde OS,  Muszynska G  et al. (2000) Osmotic stress induces rapid 

activation of a salicylic acid-induced protein kinase and a homolog of protein kinase 
ASK1 in tobacco cells. Plant Cell 12: 165–178 

Milborrow B (1974) The chemistry and physiology of abscisic acid. Annu. Rev. Plant Physiol. 

25: 259–307 

Mirelman D,  Galun E,  Sharon N,  Lotan R (1975) Inhibition of fungal growth by wheat 

germ agglutinin. Nature 256: 414–416 

Mishkind D,  Raikhel NV,  Palevits BA,  Keegstra K (1982) Immunocytochemical 

localization of wheat germ agglutinin in wheat. J. Cell Biol. 92: 753–764 

Mishkind M,  Kieegstra K,  Palevitz A (1980) Distribution of wheat germ agglutinin in 

young wheat plants. Plant Physiol. 66: 950–955 

Mishra A,  Choudhuri MA  (1999) Effect of salicylic acid on heavy metal-induced membrane 

deterioration mediated by lipoxygenase in rice. Biol. Plant. 42: 409–415 

Mitchell JW,  Mandava N,  Worley JF  et al. (1970) Brassins – a new family of plant 

hormones from rape pollen. Nature 225: 1065–1066 

Molders W,  Buchala A,  Metraux J-P (1996) Transport of salicylic acid in tobacco necrosis 

virus-infected cucumber plants. Plant Physiol. 112: 787–792 

Montero E,  Cabot C,  Sibole J  et al. (1994) Effect of salinity on leaves of Phaseolus 

vulgaris var. Contender in different states of expansion. Plant Physiol. 105(s): 110 

Moons A,  Bauw G,  Prinsen E  et al. (1995) Molecular and physiological responses to 

abscisic acid and salts in roots of salt-sensitive and salt-tolerant Indica rice varieties. Plant 
Physiol. 107: 177–186 

Moons A,  Prinsen E,  van Montagu M (1997) Antagonistic effect of abscisic acid and 

jasmonates on salt stress-inducible transcripts in rice roots. Plant Cell 9: 2243–2259 

Morris K,  Mackerness SA-H,  Page T  et al.  (2000) Salicylic acid has a role in regulating 

gene expression during leaf senescence. Plant J. 23: 677–685 

Morris P-Ch (1989) Endogenous abscisic acid and wheat germ agglutinin content in wheat 

grains during development. Physiol. Plant. 77: 507–511 

Muneharu E,  Akie T,  Hiromi H (1994) Secretion of basic and acidic chitinasis from salt-

adapted and unadapted winged bean cells. Physiol. Plant. 92: 90–94. 

Murphy AM,  Chivasa S,  Singh DP,  Carr J  (1999) Salicylic acid-induced resistance to 

viruses and other pathogens: a parting of the ways? Trends Plant Sci. 4: 155–160 

Nagata N,  Min YK,  Nakano T  et al. (2000) Treatment of dark-grown Arabidopsis thaliana 

a brassinosteroid-biosynthesis inhibitor, brassinazol, induces some characteristics of light-
grown plants. Planta 211: 781–790 

Nagata Y,  Burger MM (1974) Wheat germ agglutinin. Molecular characteristics and 

specificity for sugar binding. J. Biol. Chem. 249: 3116–3122 

Neuenschwander U,  Vernooij B,  Friedrich L  et al. (1995) Is hydrogen peroxide a 

second messenger of salicylic acid in systemic acquired resistance. Plant J. 8: 227–233 

Neumann D,  Nover L,  Parthier B  et al. (1989) Heat shock and other stress response 

systems of plants. Biol. Zentralblatt 108: 1–156 

Nhiri M, 

Bakrin N, 

Bakrin N 

et al. 

(2000) Posttranslational regulation of 

phosphoenolpyruvate carboxylase during germination of Sorghum seeds: influence of 
NaCl and I-malate. Plant Sci. 151: 29–37 

Nomura T,  Nakayama M,  Reid JB  et al. (1997) Blockage of brassinosteroid biosynthesis 

and sensitivity causes dwarfism in garden pea. Plant Physiol. 113: 31–37 

Oda T,  Nakamura A,  Okamoto T  et al. (1998) Lectin-induced enhancement of superoxide 

anion production by red tide phytoplankton. Marine Biol. 131: 383–390 

O'Donnell PJ, Calvert C, Atzorn R et al. (1996) Ethylene as a signal mediating the wound 

response of tomato plants. Science 247: 1914–1917 

 

151

Oh M-H,  Clouse SD  (1998) Brassinolide affects the rate of cell division in isolated leaf 

protoplasts of Petunia hybrida. Plant Cell Rept. 17: 921–924 

Oka Y,  Chet I,  Spiegel Y (1997) An immunoreactive protein to wheat-germ agglutinin 

antibody is induced in oat roots following invasion of cereal cyst nematode Heterodera 
avenae
, and Jasmonate. Mol. Plant Micr. Interact. 10: 961–969  

Ozawa R,  Arimura G,  Takabayashi J  et al. (2000) Involvement of jasmonate- and 

salicylate-related signalling pathways for tie production of specific herbivore-induced 
volatiles in plants. Plant Cell Physiol. 41: 391–398 

Paldi E,  Racz I,  Lasztity D (1999) Effect of long period of low temperature exposure on 

protein synthesis activity in wheat seedlings. Plant Sci. 149: 59–62  

Pallas J,  Paiva N,  Lamb C,  Dixon R (1996) Tobacco plants epigenetically suppressed in 

phenylalanie ammonia-lyase expression do not develop systemic acquired resistance in 
response to infection by tobacco mosaic virus. Plant J. 10: 281–293 

Parbery DC (1996) Trophism and ecology of family associated with plants. Biol. Rev. 71:  

473–927 

Pareek A,  Singla SL,  Kush AK,  Grover  A (1997) A Distribution patters of HSP 90 protein 

in rice. Plant Sci. 125: 221–230 

Peberdy JF  (1989) Fungal cell walls. A review. Biochem. cell wall membranes in fungi. Eds. J 

Kuhn, AJ Trinci, MJ Jung et al. Berlin: Springer Verlag 5–21 

Pegg GF (1985) Pathogenic and non pathogenic microorganisms and insects. Encycl. Plant 

Physiol. Berlin: Springer Verlag 599p  

Penninckx IAMA,  Eggermont K,  Terras RG  et al. (1996) Pathogen-induced systemic 

activation of a plant defesin gene in arabidopsis follows a salicylic acid-independent 
pathway. Plant Cell 8: 2309–2323 

Peumans WJ  (1984) Biochemistry, cell-biology, physiology, biosynthesis and function of 

gramineae lectins. ProefschiftLeuven: Katholike uni. Lab. voor Pflatenbiochemie 211p  

Peumans WJ,  Roy S,  Barre A (1998) Elderberry (Sambucus nigra) contains truncated 

Neu5Ac (δ #945; – 2,6) Gal/GalNAc-binding type 2 ribosome-inactivating proteins. FEBS 
Letts. 425: 35–39  

Peumans WJ,  Stinissen HM (1983) Gramineae lectins: occurrence, molecular biology and 

physiological function. Chemical Taxonomy, Molecular Biology, and Function of Plant 
Lectins. Eds: IJ Goldstein, ME Etzler N. Y.: Alan R Liss INC. 99–116 

Peumans WJ, Stinissen HM, Carlier A (1982) A genetic basis for the origin of six different 

isolectins in hexaploid wheat. Planta 154: 562–567 

Peumans WJ,  Van Damme EJM (1995) Lectins as plant defence proteins. Plant Physiol. 109: 

347–352 

Pieterse CMJ,  van Loon LC  (1999) Salicylic acid-independent plant defence pathways. 

Trends Plant Sci. 4: 52–58 

Piola F,  Label P,  von Aderkas P,  Rohr R (1998) Effects of endogenous ABA level and 

temperature on cedar (Cedar libani Loudon) bud dormancy in vitro. Plant Cell Rept. 18: 
279–283 

Pla M,  Huguet G,  Verdaguer D  et al. (1998) Stress proteins co-expressed in suberized and 

lignified cells and in apical meristems. Plant Sci. 139: 49–57 

Ponstein AS,  Bres-Vloemans SA,  Sela-Buurlage MB  et al. (1994) A novel pathogen- 

and wound-inducible tobacco (Nicotiana tabacum) protein with antifungal activity. Plant 
Physiol. 104: 109–118 

Poschenrider G,  Huber SJ  (1982) Interaction of wheat germ agglutinin (lectin) with 

microconidia of Fusarium poae. Z. fur Pflanzenk Pflanzenschutz 89: 194–199 

Poupet A, Cardin L, Bettachini B, Beck D (1990) Effect of cytokinin on the accumulation 

of pathogenesis related proteins (PR1a protein) in vitro propagated Nicotiana tabacum 
shoots. Physiol. Veget. 311: 239–246 

 

152 

Puri KD,  Surolia A  (1994) Amino acid sequence of the winged bean (Psophocarpus 

tetragonolobus) basic lectin. Adenine binding and identificaition of the active-site 
tryptophan residue. J. Biol. Chem. 269: 30917–30926  

Quarrie SA (1989) Abscisic acid as a factor in modifying drought resistance. Environ. Stress 

Plants. Biochem. Physiol. Mech. NATO Adv. Res. Workshop. Norwich Aug. 2–7 (1987) 
Berlin etc. 27–37 

Quatrano RS,  Hopkins R,  Raikhel NV (1983) Control of the synthesis and localization of 

wheat germ agglutinin during embryogenesis. Chemical taxonomy, molecular biology, 
and function of plant lectins. Eds. IJ Goldstein, ME Etzler. N. Y.: Alan R Liss INC.  
117–130 

Rademacher W,  Grabe JE (1984) Hormonal changes in developing kernels of two spring 

wheat differing in storage capacity. Ber. Deutch Bot. Gas. 97: 167–181 

Rai K,  Sharma SS,  Sharma S (1986) Reversal of ABA-induced stomatal closure by phenolic 

compounds. J. Exp. Bot. 37: 129–134 

Raikhel NV,  Mishkind ML,  Palevitz BA (1984) Characterization of a wheat germ 

agglutinin-like lectin from adult wheat plants. Planta 162: 55–61 

Raikhel NV,  Palevitz BA,  Haigler CH (1986) Abscisic acid control of lectin accumulation 

in wheat seedligs and callus cultures. Plant Physiol. 80:167–171 

Raikhel NV,  Pratt LH (1987) Wheat germ agglutinin accumulation in coleoptiles of different 

genotypes of wheat. Localization by monoclonal antibodies. Plant Cell Rept. 6: 146–149 

Raikhel NV,  Quatrano RS (1986) Localization of wheat germ agglutinin in developing wheat 

embryos and these cultered in abscisic acid. Planta 168: 433–440 

Raikhel NV,  Wilkins TA (1987) Isolation and characterization of a cDNA clone encoding 

wheat germ agglutinin. Proc. Natl. Acad. Sci. USA 84: 6745–6749 

Ramagopal S (1987) Salinity stress induced tissuespecific proteins in barley seedlings. Plant 

Physiol. 84: 324–331 

Raskin I (1992) Role of salicylic acid in plants. Annu. Rev. Plant Physiol. Plant Mol. Biol. 43: 

439–463 

Raskin I,  Ehmann A,  Melander WR,  Meeuse BJD  (1987) Salicylic acid: A natural 

inducer of heat production. Science 237: 1601–1602 

Rasmussen JB,  Hammerschmidt R,  Zook MN (1991) Systemic induction of salicylic acid 

accumulation in cucumber after inoculation with Pseudomonas syringae. Plant Physiol. 
97: 1342–1347 

Raz V,  Fluhr R (1992) Calcium requirement for ethylenedependent responses. Plant Cell  4: 

1123–1130 

Reday MN,  Strzlezyk E (1989) Influense of plant growth and virulense of Rhisoctonia solani 

(Kuhn) pathogenic to groundnut seedling (Arahis hipogea L var TMV 2). J. Phytopathol. 
125: 187–191 

Ribaut JM,  Pilet PE (1994) Water stress and indolyl-acetic acid content of maize roots. Planta 

193: 502–507 

Rice RH,  Etzler ME  (1975) Chemical modification and hybridization of wheat germ 

agglutinins. Biochemistry 14: 4093–4099 

Robertson AJ,  Ishikawa M,  Gusta L,  MacKenzie SL  (1994) Abscisic acid-induced heat 

tolerance in Bromus inermis Leyss cell-suspension culture. Plant Physiol. 105: 181–190 

Rodrigues-Pousada R, Vav Caeneghem W, Chauvaux N et al. (1999) Hormonal cross-

talk regulates the Arabidopsis thaliana 1-aminocyclopropane-1-carboxylate synthase gene 
1 in a developmental and tissue-dependent manner. Physiol. Plant. 105: 312–320 

Romani RJ,  Hess BM,  Leslie C (1989) A Salicylic acid inhibition of ethylene production by 

apple discs and other plant tissues. Plant Growth Reg. 8: 63–69 

 

153

Ronchi A,  Farina G,  Gozzo F,  Tonelli C  (1997) Effect of triazolic fungicide on maize 

plant metabolism: modification of transcript abundant in resistance-related pathways. 
Plant Sci. 130: 51–62 

Roney JM,  Hoad G (1989) Compensation in growth and photosintesis of wheat (Triticum 

aestivum L) following early inoculation with Septopia nodorum (Berk). New Phytol. 113: 
513–521 

Rouleau M,  Marsolais F,  Richard M  et al. (1999) Inactivation of brassinosteroid 

biological activity by a salicylate-inducible steroid sulfotransferasw from Brassica napus. 
J. Biol. Chem. 274: 20925–20930 

Roy R (1997) Recent development in the rational design of multivalent glycoconjugates. Top. 

Curr, Chem. 187: 241–274 

Rudiger H (1997) Structure and function of plant lectins. Glycosciences. Status and perspectives. 

Eds. HJ Gabius, S Gabius. London etc.: Chapman&Hall IT 415–438 

Ryals J,  Uknes S,  Ward E (1994) Systemic acquired resistance. Plant Physiol. 104:  

1109–1112 

Ryals JA,  Neuenschwander UH,  Willits MG  et al. (1996) Systemic acquired resistance. 

Plant Cell 8: 1809–1819 

Ryan C (1994) Oligosaccharide signal: from plant defence to parasite offence. Proc. Natl. Acad. 

Sci. USA 91: 1–2 

Ryan CA (2000) The systemic signalling pathways: differential activation of plant defensive 

genes. Biochim. Biophys. Acta 1477: 112–121  

Sairam RK (1994) Effect of homobrassinolide application on metabolic activity and grain yield 

of wheat under normal and water-stress conditions. J. Agron. Crop Sci. 173: 11–16 

Sakurai A,  Fujioka S (1993) The current status of physiology and biochemistry of 

brassinosteroids: A review. J. Plant Growth Reg. 13: 147–159 

Sala C,  Sala F (1985) Effects of brassinosteroid on cell division and enlargement in cultured 

carrot (Daucus carota L) cells. Plant Cell Rept. 4: 114–191 

Samajova O,  Samaj J,  Volkmann D,  Edelmann HG (1998) Occurrence of osmiophilic 

particles is correlated to elongation growth of higher plants. Protoplasma 202: 185–191 

Sasse JM (1985) The place of brassinolide in the sequential response to plant growth regulators 

in elongating tissue. Physiol. Plant 63: 303–308 

Sasse JM (1997) Resent progress in brassinosteroid research. Physiol. Plant. 100: 696–701 
Schaller A (1999) Action of proteolysis-resistant systemin analogues in wound signalling. 

Phytochemistry 47: 605–612 

Schetz JA,  Anderson PA (1995) Glucosylation patterns of membrane proteins of the jellyfish 

Cyanea capillata. Cell Tissue Res. 279: 315–321 

Schilling G,  Schiller C (1990) Influence of brassinosteroids on organ relations and enzyme 

activities of sugar-beet plants. Int. Workshop Brassinosteroids Chemistry, Bioactivity, 
Application Inst. Plant Biochem. Halle, Gr. 1: 20 

Schlumbaum A, Mauch F, Vogeli U, Boller T (1986) Plant chitinases are potent inhibitors 

of fungal growth. Nature 324: 365–367 

Schmulling T,  Schafer S,  Romanov G (1997) Cytokinins as regulators of gene expression. 

Physiol. Plant. 100: 505–519 

Schneider-Muller S,  Kurosaki F,  Nishi A (1994) Role of salicylic acid and intracellular 

Ca

2+

 in the induction of chitinase activity in carrot suspension culture. Physiol. Mol. Plant 

Pathol. 45: 101–109 

Seki M,  Katsumi M (1994) Protective actions of brassinolide against chilling induced injuries. 

Plant Physiol. 105(s): 141 

Seskar M,  Shulaev V,  Raskin I (1998) Endogenous methyl salicylate in pathogen-inoculated 

tobacco plants. Plant Physiol. 116: 387–392 

 

154 

Shakirova FM,  Avalbaev AM,  Bezrukova MV,  Gimalov FR (2001) Induction of WGA 

synthesis by abscisic and gibberellic acids in roots of wheat seedlings. Plant Growth 
Regul. (in press) 

Shakirova FM,  Bezrukova MV  Shayakhmetov IF (1996) Effect of heat shock on 

dynamics of ABA and WGA accumulation in wheat cell culture. Plant Growth Reg. 19: 
85–87 

Showalter AM (1993) Structure and function of plant cell wall proteins. Plant Cell 5: 9–23 
Shulaev V , Silverman P, Raskin I (1997) Airborne signalling by methyl salicylate in plants 

pathogen resistance. Nature 382: 718–721 

Shulaev V,  Leon J,  Raskin I (1995) Is salicylic acid a translocated signal of systemic 

acquired resistance in tabacco? Plant Cell 7: 1691–1701 

Silverman P,  Seskar M,  Kanter D  et al. (1995) Salicylic acid in rice Biosynthesis, 

conjugation, and possible role. Plant Physiol. 108: 633–639 

Simmons CR,  Litts JC,  Huang N,  Rodriguez RL (1992) Structure of rice β-glucanase 

gene regulated by ethylene, cytokinin, wounding, salicylic acid and fungal elicitors. Plant 
Mol. Biol. 18: 33–45 

Singh NK,  Handa AK,  Hasegava PM,  Bressan RA (1985) Proteins associated with 

adaptation of cultured tobacco cells to NaCl. Plant Physiol. 79: 126–137 

Singh NK,  La Rosa PC,  Handa AK  et al. (1987) Hormonal regulation of protein synthesis 

associated with salt tolerance in plant cells. Proc. Natl. Acad. Sci. USA 84: 739–743 

Singh PS,  Bhaglal P,  Bhullar SS (2000) Wheat germ agglutinin (WGA) gene expression 

and ABA accumulation in the developing embryos of wheat (Triticum aestivum) in 
response to drougth. Plant Growth Reg. 30: 145–150 

Singla SL,  Pareek A,  Grover A (1997) Yeast HSP 104 homologue rice HSP110 is 

developmentally- and stress-regulated. Plant Sci. 125: 211–219 

Skriver K,  Mundy J (1990) Gene expression in response to abscisic acid and osmotic stress. 

Plant Cell 2: 503–512 

Smith JJ,  Raikhel NV  (1989) Nucleotide sequences of cDNA clones encoding wheat germ 

agglutinin isolectins A and D. Plant Mol. Biol. 13: 601–603 

Smith-Becker J,  Marois E,  Huguet EJ  et al. (1998) Accumulation of salicelic acid and 

4-hydroxylbenzoic acid in phloem fluids of cucumber during systemic acquired resistance 
is precedes by a transient increase in phenylalanine ammonia-lyase activity in petioles and 
stems. Plant Physiol. 116: 231–238 

Spadoro-Tank JP,  Etzler ME (1988) Heat shock enhances the synthesis of lectin-related 

protein in Dolichos biflorus cell suspension cultures. Plant Physiol. 88: 1131–1135 

Spilatro SR,  Cochran GR,  Walker RE  et al. (1996) Characterization of a new lectin of 

soybean vegetative tissues. Plant Physiol. 110: 825–834 

Stinissen HM,  Chrispeels MJ,  Peumans WJ (1985) Biosynthesis of lectin in roots of 

germinating and adult cereal plants. Planta 164: 278–286 

Stinissen HM,  Peumans WJ,  Carlier AR (1982) In vivo synthesis and processing of cereal 

lectins. Plant Mol. Biol. 1: 277–290 

Sugino M,  Hibino T,  Tanako Y  et al. (1999) Overexpression of DnaK from a halotolerant 

cyanobacterium  Aphanothece halophytica acquires resistance to salt stress in transgenic 
tobacco plants. Plant Sci. 146: 81–88 

Szekeres M,  Nemeth K,  Konzc-Kalman Z  et al. (1996) Brassinosteroids rescue the 

deficiency of CYP90, a cytochrome P450, controlling cell elongation and de-etiolation in 
Arabidopsis. Cell 85: 171–182  

Tabaci-Aghdaci SR,  Harrison P,  Pearce RS (2000) Expression of dehydration-stress-

related genes in the crowns of wheat grass species [Lophopyrum elongatum (Host) A Love 
and Agropyron desertorum (Fisch Ex Link) Schult] having contrasting acclimation to salt, 
cold and drought. Plant Cell Environm. 23: 561–571 

 

155

Takahashi H,  Chen Z,  Liu Y,  Klessing DF (1997) Development of necrosis and activation 

of disease resistance in transgenic tobacco plants with several reduced catalase levels. 
Plant J. 11: 993–1005 

Takematsu T,  Takenchi Y,  Koguchi M (1982) New plants growth regulators Brassinolide 

analogues: their biological effects and application to agriculture and biomass production. 
Chem. Regul. Plants 18: 2–15 

Taverner E,  Letham DS,  Wang J  et al. (1999) Influence of ethylene on metabolism in 

relation to Petunia corolla senescence. Phytochemistry 51: 341–347 

Tenhaken R,  Rubel C (1997) Salicylic acid is needed in hypersensitive cell death in soybean 

but does not act as a catalase inhibitor. Plant Physiol. 115: 291–298  

Teramoto H,  Momotani E,  Takeba G,  Tsuji H (1994) Isolation of cDNA clone for a 

cytokinin-repressed gene in excised cucumber cotyledons. Planta 193: 573–579 

Tester M (1999) The control of long-distance K

transport by ABA. Trends Plant Sci. 4: 5–6  

Toyama T,  Teramoto H,  Takeba G,  Tsuji H (1995) Cytokinin induces a rapid decrease in 

the levels of mRNAa for catalase 3-hydroxy-3-methylglutaryl CoA reductase, lectin and 
other unidentified proteins in etiolated cotyledons of cucumber. Plant Cell Physiol. 36: 
1349–1359 

Toyoda K,  Miki K,  Ichinose Y  et al. (1995) Plant lectins induce the production of a 

phytoalexin in Pisum sativum. Plant Cell Physiol. 36: 799–807 

Triboi E,  Leblevenec L (1995) Temperature effects on grain growth and protein fraction 

accumulation in winter wheat. J. Exp. Bot. 46(s): 3 

Trione EJ,  Sayvedra-Soto LA (1988) Wheat development enhanced by hormone syndrom. 

Bot. Gaz. 149: 317–324 

Triplett BA,  Quatrano RS (1982) Timing, localization, and control of wheat germ agglutinin 

synthesis in developing wheat embryos. Developm. Biol. 91: 491–496 

Tupy J, Suss I, Rihova V (1986) RNA synthesis and ribosome status in pollen tube growth of 

Nicotiana tabacum L; Effects of external pH. J. Plant Physiol. 123: 467–474 

Uknes S,  Mauch-Mani B,  Moyer M  et al. (1992) Acquired resistance in Arabidopsis. Plant 

Cell 4: 645–656 

Umekawa H,  Kondon K,  Ffujihara M  et al. (1990) Interaction of Tora-mama (Phaseolus 

vulgaris) lectin with indolederivatives. Agric. Biol. Chem. 4: 3295–3299 

Urao TT,  Yamaguchi-Shinozaki KK,  Shinozaki KK (2000) Two-component systems in 

plant signal transduction. Trends Plant Sci. 5: 67–74 

Van der Bulcke  C,  Bauw G,  De Rucke R  et al. (1990) The role of vacuolar and secreted 

pathogenesis-related B (1-3)-gluconases and chitinases in the defense response of plants. 
Bull Soc. Bot. Fr. 137: 51–63 

Van Eijsden R,  Diaz C,  de Pater BS,  Kijne G (1995) Sugar-binding activity of pea 

(Pisum sativum) lectin is essential for heterologous infection of transgenic white clover 
hairy roots by Rizobium leguminosarum biovar viciae. Plant Mol. Biol. 29: 431–439 

Van Loon LC (1985) Pathogenesis-related proteins. Plant Mol. Biol. 4: 111–116 
Van Loon LC,  Antoniw JF  (1982) Comparison of the effect of salicylic acid and ethephon 

with virusinduced hypersensitivity and acquired resistance in tobacco. Neth. Plant Pathol. 
88: 237–256 

Vardhini B,  Rao SSR (1999) Effect of brassinosteroids on nodulation and nitrogenase activity 

in groundnut (Arachis hopogaea L). Plant Growth Reg. 28: 165–167 

Vernooij B, Friedrich L, Morse A et al. (1994) Salicylic acid is not the translocated signal 

responsible for inducing systemic acquired resistance but is required in signal 
transduction. Plant Cell 6: 959–965 

Verret JA,  Hoffman GM,  Amberger A (1987) Auswirkungen der Infection durch Septoria 

nodorum in verschiedenen eut wicklung Stadie des Weizenz auf die Produktionsleistung. 
Z. Pflanzenkrankh. 94: 283–300 

 

156 

Verret JA, Hoffmann GM (1986) The distribution of nitrogen in plant organs after infection of 

wheat with Septoria nodorum. Med. Fac. Land Rijksuni Genet. 51: 581–588 

Vierling E (1991) The role of heat shock proteins in plants. Annu. Rev. Plant Physiol. Plant Mol. 

Biol. 42: 579–620 

Visser K,  Kijne JW,  Wang M (1999) GTP binding activity of membrane proteins in isolated 

barley embryo is enhanced by abscisic acid. Plant Sci. 148: 139–145 

Vogeli-Lange R,  Hansen-Gehri A,  Boller T,  Meins F Jr (1988) Induction of the 

defence-related glucanohydrolases, 

β-1,3-glucanase and chitinase, by tobacco mosaic 

virus infection of tobacco leaves. Plant Sci. 54: 171–176 

Wada K,  Kondo H,  Marumo S (1985) A simple bioassay for brassinosteroids: a wheat leaf-

unrolling test. Agric. Biol. Chem. 49: 2249–2300 

Wada K,  Marumo S  Ikekawa N  et al. (1981) Brassinolide and homobrassinolide promotion 

of lamina inclination of rice seedlings. Plant Cell Physiol. 22: 323–325 

Walker-Simmons M (1987) ABA levels and sensitivity in developing wheat embryos of 

sprouting resistant and susceptible cultivars. Plant Physiol. 84: 61–66 

Ward ER,  Uknes SJ,  Williams SC,  et al. (1991) Coordinate gene activity in response to 

agents that induce systemic acquired resistance. Plant Cell 3: 1085 

Watanabe K,  Honjo E,  Tsukamoto T,  Funatsu G (1992) Fluorescence studies on the 

interaction of adenine with ricin A-chain. FEBS Lett. 304: 249–251 

Wendehenne D,  Durner J,  Chen Z,  Klessing DE (1998) Benzothiadiazole, an inducer of 

plant defenses, inhibits catalases and ascorbate peroxidase. Phytochemistry 47: 651–657 

Wilkins TA,  Bednarek SY,  Raikhel NV (1990) Role of propeptide glucan in post-

translational processing and transport of barley lectin to vacuoles in transgenic tobacco. 
Plant Cell 2: 301–313 

Williams J,  Bulman MP,  Neill SJ  (1994) Wilt-induced ABA biosynthesis, gene expression 

and down-regulation of rbcS mRNA level in Arabidopsis thaliana. Physiol. Plant. 91: 
177–182 

Williamson JD,  Quatrano RS (1988) ABA regulation of two classes of embryo-specific 

sequences in mature wheat embryos. Plant Physiol. 86: 208–215 

Williamson JD,  Stoop JMH,  Massel MO  et al. (1995) Sequence analisis of a mannitol 

degydrogenase cDNA from plants reveals a function for the pathogenesis-related protein 
ELI3. Proc. Natl. Acad. Sci. USA 92: 7148–7152 

Wisniewski M,  Webb R,  Baksamo R  et al. (1999) Purification, immunolocation, 

cryoprotective, and antifreeze activity of PCA60: A dehydrin from peach (Prunus 
persica
). Physiol. Plant. 105: 600–608  

Wollgiehn R,  Neumann D (1995) Stress response of tomato cell cultures to toxic metalls and 

heat shock: differences and similarities. J. Plant Physiol. 146: 736–742 

Woloshuk CP,  Meulenhoff JS,  Sela-Buurlage M  et al. (1991) Pathogen-induced 

proteins with inhibitory activity toward Phytophthora infestans. Plant Cell 3: 619–628 

Wright CS (1987) Refinement of the crystal structure of wheat germ agglutinin isolectin 2 at 1*8 

A resolution. J. Mol. Biol. 194: 501–529 

Wright HT,  Sandrasegham G,  Wright CS (1991) Evolution of a family of 

N-acetylglucosamine binding proteins containing the disulfide-rich domain of wheat germ 
agglutinin. J. Mol. Evol. 33: 283–294 

Xiong L,  Ishitani M,  Zhu J-K (1999) Interaction of osmotic stress, temperature, and abscisic 

acid in the regulation of gene expression in arabidopsis. Plant Physiol. 119: 205–211 

Xu Y,  Chang P-FL,  Liu D  et al. (1994) Plant defense genes are synergistically induced by 

ethylene and methyl jasmonate. Plant Cell 6: 1077–1085 

Yadav BS,  Mandahar CL (1981) Secretion of cytokinin-like substancesin vivo and in vitro by 

Helminthosporium sativum and their role in pathogenesis. J. Plant Diseases and Protection 
88: 726–733 

 

157

Yakovleva LA,  Cheredova EP,  Karavaiko NN (1997) Cytokinin and cytokinin-binding 

sites in transgenic potato plants. Plant Growth Reg. 21: 71–73 

Yakovleva LA,  Klueva NY,  Kulaeva ON (1992) Phosphorilation of ribosome proteins as a 

mechanism of phytogormone regulation protein synthesis in plants. Signals in plant 
Development. Eds. J Krekule, F Seidlova 169–172 

Yalpani N,  Enyedi AJ,  Leon J,  Raskin I (1994) Ultraviolet light and ozone stimulate 

accumulation of salicylic acid, pathogenesis related proteins and virus resistance in 
tabacco. Planta 193: 372–376 

Yalpani N,  Leon J,  Lawton MA,  Raskin I (1993) Pathway of salicylic acid biosynthesis in 

healthy and virus-inoculated tobacco. Plant Physiol. 103: 315–321 

Yokota T,  Nakayama M,  Wakisaka T,  Schmidt J,  Adam G (1994) 3-dehydroteasterone, 

a 3,6-diketobrassinosteroid as a possible biosynthetic intermediate of brassinolide from 
wheat grain. Biosci. Biotech. Biochem. 58: 1183 

Yopp JH,  Colclasure GC,  Mandava N (1979) Effects of brassin-complex on auxin and 

gibberellin mediated events in the morphogenesis of the etiolated bean hypocotyl. Physiol. 
Plant. 46: 247–254 

Yopp JH,  Mandava NB,  Sasse JM (1981) Brassinolide, a growth promoting steroidal 

lactone. I. Activity in selected auxin bioassays. Physiol. Plant. 53: 445–497 

Yu D,  Xie Z,  Chen C  et al.  (1999) Expression of tobacco class II catalase gene activates the 

endogenous homologous gene and is associated with disease resistance in transgenic 
potato plants. Plant Mol. Biol. 39: 477–488 

Yuko O,  Shigemi S,  Taka M  et al. (1995) Enhanced hypersensitive reaction of tabacco 

plants transformed with a small GTP-binding proteins. J. Cell Biochem. 19a.(s): 158 

Zaluzec EJ,  Zaluzec MM,  Olsen KW,  Pavkovic SF (1991) Crystallizaition and 

preliminary X-ray analysis of peanut agglutinin-N6-benzylaminopurine complex. J. Mol. 
Biol. 219: 151–153 

Zhang W,  Peumans W,  Barre A  et al. (2000) Isolation and characterization of a Jacalin-

related mannose-binding lectin from salt-stressed rice (Oryza sativa) plants. Planta  210: 
970–978 

Zhu-Salzman K.,  Salzman R.A.,  Koiwa H.  et al. (1998) Ethylene negatively regulates 

local expression of plant defence lectin genes. Physiol. Plant. 104: 365–372 

Zurek DM,  Clouse SD  (1994) Molecular cloning and characterization of a brassinosteroid-

regulated gene from elongating soybean (Glycine max L.) epicotyls. Plant Physiol. 104: 
161–170 

Zurek DM,  Rayle DL,  McMorris TC,  Clouse SD (1994) Investigation of gene expression, 

growth kinetics, and wall extensibility during brassinosteroid-regulated stem elongation. 
Plant Physiol. 104: 505–513 

 

   

 

158 

О

ГЛАВЛЕНИЕ

 

 

В

ВЕДЕНИЕ

 ................................................................................................................3 

Г

ЛАВА

 1.  МЕХАНИЗМЫ НЕСПЕЦИФИЧЕСКОЙ УСТОЙЧИВОСТИ 

РАСТЕНИЙ  К  НЕБЛАГОПРИЯТНЫМ  ФАКТОРАМ  РАЗНОЙ 
ПРИРОДЫ......................................................................................................6 
О

БЩИЕ  ПРЕДСТАВЛЕНИЯ  О  НЕСПЕЦИФИЧЕСКОЙ  УСТОЙЧИВОСТИ 

РАСТЕНИЙ К

 

СТРЕССОВЫМ ВОЗДЕЙСТВИЯМ

..................................................6 

Р

ОЛЬ 

АБК 

В НЕСПЕЦИФИЧЕСКОЙ УСТОЙЧИВОСТИ РАСТЕНИЙ

...................12 

М

ЕХАНИЗМЫ УСТОЙЧИВОСТИ РАСТЕНИЙ К ФИТОПАТОГЕНАМ

..................18 

Б

ЕЛКИ

СВЯЗАННЫЕ С ПАТОГЕНЕЗОМ

..........................................................22 

Л

ЕКТИНЫ  В  ЗАЩИТНЫХ  РЕАКЦИЯХ  ПРИ  ИНФИЦИРОВАНИИ 

РАСТЕНИЙ

......................................................................................................24 

Г

ЛАВА

 2.  РОЛЬ 

БЕЛОКСИНТЕЗИРУЮЩЕГО 

АППАРАТА 

В 

ПОВЫШЕНИИ 

УСТОЙЧИВОСТИ 

РАСТЕНИЙ 

ПОД 

ВЛИЯНИЕМ  ЦИТОКИНИНА  И  ДРУГИХ  СОЕДИНЕНИЙ, 
ОБЛАДАЮЩИХ ЦИТОКИНИНОВОЙ АКТИВНОСТЬЮ...................32 
В

ЛИЯНИЕ  ГОЛОДАНИЯ  И  ЦИТОКИНИНА  НА  ДИНАМИКУ  РОСТА  И 

КИНЕТИКУ СБОРКИ ПОЛИСОМ В ИЗОЛИРОВАННЫХ СЕМЯДОЛЯХ

................33 

П

ОВЫШЕНИЕ 

УСТОЙЧИВОСТИ 

РАСТЕНИЙ 

К 

СТРЕССОВЫМ 

ФАКТОРАМ СРЕДЫ ПРИ ДЕЙСТВИИ КАРТОЛИНА

..........................................38 

В

ЛИЯНИЕ 

БИСОЛА

 2 

И 

БАЙТАНА 

НА 

СОСТОЯНИЕ 

ТРАНСЛЯЦИОННОГО  АППАРАТА  ИНФИЦИРОВАННЫХ  РАСТЕНИЙ 
ПШЕНИЦЫ

.....................................................................................................43 

Г

ЛАВА

 3.  САЛИЦИЛОВАЯ 

КИСЛОТА 

КАК 

ИНДУКТОР 

УСТОЙЧИВОСТИ РАСТЕНИЙ................................................................48 
Р

ОЛЬ 

PR-

БЕЛКОВ  В  РАЗВИТИИ  ИНДУЦИРОВАННОЙ  САЛИЦИЛОВОЙ 

КИСЛОТОЙ СИСТЕМНОЙ ПРИОБРЕТЕННОЙ УСТОЙЧИВОСТИ

........................49 

М

ЕХАНИЗМЫ ДЕЙСТВИЯ САЛИЦИЛОВОЙ КИСЛОТЫ И ЕЕ ФУНКЦИИ

...........54 

В

ЛИЯНИЕ САЛИЦИЛОВОЙ КИСЛОТЫ НА УСТОЙЧИВОСТЬ ПШЕНИЦЫ

..........59 

 

159

Г

ЛАВА

 4.  РОЛЬ 

ФИТОГОРМОНОВ 

В 

ПРОЯВЛЕНИИ 

УСТОЙЧИВОСТИ 

ПШЕНИЦЫ 

К 

СТРЕССОВЫМ 

ВОЗДЕЙСТВИЯМ ......................................................................................66 
З

АВИСИМОСТЬ  ГОРМОНАЛЬНОГО  ОТВЕТА  РАСТЕНИЙ  ПШЕНИЦЫ  НА 

ИНФИЦИРОВАНИЕ 

РАЗЛИЧНЫМИ 

ВОЗБУДИТЕЛЯМИ 

ГРИБНЫХ 

БОЛЕЗНЕЙ

......................................................................................................66 

В

ЛИЯНИЕ 

ПРЕПАРАТОВ

ОБЛАДАЮЩИХ 

СВОЙСТВАМИ 

ЦИТОКИНИНОВ

НА  БАЛАНС 

ИУК 

И 

АБК 

В  РАСТЕНИЯХ  ПШЕНИЦЫ 

ПРИ ИНФИЦИРОВАНИИ

..................................................................................71 

И

ЗМЕНЕНИЯ  В  СОСТОЯНИИ  ГОРМОНАЛЬНОЙ  СИСТЕМЫ  РАСТЕНИЙ 

ПШЕНИЦЫ  ПОД  ВЛИЯНИЕМ  САЛИЦИЛОВОЙ  КИСЛОТЫ  В  УСЛОВИЯХ 
ВОЗДЕЙСТВИЯ СТРЕССОВЫХ ФАКТОРОВ

......................................................75 

Г

ЛАВА

 5.  АГГЛЮТИНИН 

ЗАРОДЫША 

ПШЕНИЦЫ 

И 

УСТОЙЧИВОСТЬ  РАСТЕНИЙ  К  НЕБЛАГОПРИЯТНЫМ 
УСЛОВИЯМ................................................................................................84 
Ф

УНКЦИИ ЛЕКТИНА ПШЕНИЦЫ

....................................................................86 

У

ЧАСТИЕ  ЛЕКТИНА  В  ПРОЯВЛЕНИИ  УСТОЙЧИВОСТИ  ПШЕНИЦЫ  К 

ГРИБНЫМ ПАТОГЕНАМ

..................................................................................90 

У

ЧАСТИЕ 

ЛЕКТИНА 

В 

АБК-

КОНТРОЛИРУЕМЫХ 

ЗАЩИТНЫХ 

РЕАКЦИЯХ 

ПШЕНИЦЫ 

ПРИ 

ВОЗДЕЙСТВИИ 

АБИОТИЧЕСКИХ 

СТРЕССОВЫХ ФАКТОРОВ

...............................................................................98 

Г

ЛАВА

 6.  БРАССИНОСТЕРОИДЫ – НОВЫЙ 

КЛАСС 

ФИТОГОРМОНОВ, 

ПОВЫШАЮЩИХ 

УСТОЙЧИВОСТЬ 

РАСТЕНИЙ................................................................................................107 
М

ЕХАНИЗМЫ ДЕЙСТВИЯ БРАССИНОСТЕРОИДОВ

.......................................108 

В

ЛИЯНИЕ  БРАССИНОСТЕРОИДОВ  НА  ГОРМОНАЛЬНЫЙ  СТАТУС 

РАСТЕНИЙ

....................................................................................................115 

А

НТИСТРЕССОВОЕ ДЕЙСТВИЕ БРАССИНОСТЕРОИДОВ

...............................118 

З

АКЛЮЧЕНИЕ

.........................................................................................................125 

С

ПИСОК

 

ЛИТЕРАТУРЫ

...........................................................................................131 

О

ГЛАВЛЕНИЕ

..........................................................................................................158 

 

 

 

 

 

 

 

 

содержание   ..  8  9  10