Warianty tytułu
Defence-related proteins in plant defence against pests
Języki publikacji
Abstrakty
The review focuses on the role of two groups of proteins (anti-nutritive and toxic) in plant defence against insect herbivores.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Numer
Opis fizyczny
s.897-901,bibliogr.
Twórcy
autor
- Katedra Entomologii Stosowanej, Wydział Ogrodnictwa i Architektury Krajobrazu, Szkoła Główna Gospodarstwa Wiejskiego w Warszawie, ul.Nowoursynowska 159, 02-776 Warszawa
autor
autor
Bibliografia
- Berenbaum M.R., Zangerl A.R. 2008. Facing the future of plant-insect interaction research: le retour à la „raison d'être”. Plant Physiol. 146: 804–811.
- Chen H., Gonzales-Vigil E., Wilkerson C.G., Howe G.A. 2007. Stability of plant defense proteins in the gut of insect herbivores. Plant Physiol. 143: 1954–1967.
- Chen H., Wilkerson C.G., Kuchar J.A., Phinney B.S., Howe G.A. 2005. Jasmonate-inducible plant enzymes degrade essential amino acids in the herbivore midgut. Proc. Natl. Acad. Sci. USA 102: 19237–19242.
- Constabel C.P., Yip L., Patton J.J., Christopher M.E. 2000. Polyphenol oxidase from hybrid poplar. Cloning and expression in response to wounding and herbivory. Plant Physiol. 124: 285–296.
- Farmer E.E., Ryan C.A. 1990. Interplant communication: airborne methyl jasmonate induces synthesis of proteinase inhibitors in plant leaves. Proc. Natl. Acad. Sci. USA 87: 7713–7716.
- Felton G.W. 2005. Indigestion is a plant's best defense. Proc. Natl. Acad. Sci. USA 102: 18771–18772.
- Felton G.W., Donato K.K., Broadway R.M., Duffey S.S. 1992. Impact of oxidized plant phenolics on the nutritional quality of dietary protein to a noctuid herbivore, Spodoptera exigua. J. Insect Physiol. 38: 277–285.
- Felton G.W., Donato K., Delvecchio R.J., Duffey S.S. 1989. Activation of plant foliar oxidases by insect feeding reduces nutritive quality of foliage for noctuid herbivores. J. Chem. Ecol. 15: 2667–2694.
- Felton G.W., Summers C.B. 1993. Potential role of ascorbate oxidase as a plant defense protein against insect herbivory. J. Chem. Ecol. 19: 1553–1568.
- Green T.R., Ryan C.A. 1972. Wound-induced proteinase inhibitor in plant leaves: a possible defense mechanism against insects. Science 175: 776–777.
- Hopkins T.L., Harper M.S. 2001. Lepidopteran peritrophic membranes and effects of dietary wheat germ agglutinin on their formation and structure. Arch. Insect Biochem. Physiol. 47: 100–109.
- Jeffers L.A., Thompson D.M., Ben-Yakir D., Roe R.M. 2005. Movement of proteins across the digestive system of the tobacco budworm, Heliothis virescens. Entomol. Exp. Appl. 117: 135–146.
- Kant M.R., Ament K., Sabelis M.W., Haring M.A., Schuurink R.C. 2004. Differential timing of spider mite-induced direct and indirect defenses in tomato plants. Plant Physiol. 135: 483–495.
- Kessler A., Halitschke R., Baldwin I.T. 2004. Silencing the jasmonate cascade: induced plant defenses and insect populations. Science 305: 665–668.
- Konno K., Hirayama C., Nakamura M., Tateishi K., Tamura Y., Hattori M., Kohno K. 2004. Papain protects papaya trees from herbivorous insects: role of cysteine proteases in latex. Plant J. 37: 370–378.
- Lawrence S.D., Novak N.G. 2006. Expression of poplar chitinase in tomato leads to inhibition of development in Colorado potato beetle. Biotechnol. Lett. 28: 593–599.
- Liu Y.L., Ahn J.E., Datta S., Salzman R.A., Moon J., Huyghues-Despointes B., Pittendrigh B., Murdock L.L., Koiwa H., Zhu-Salzman K. 2005. Arabidopsis vegetative storage protein is an anti-insect acid phosphatase. Plant Physiol. 139: 1545–1556.
- Pechan T., Ye L.J., Chang Y.M., Mitra A., Lin L., Davis F.M., Williams W.P., Luthe D.S. 2000. A unique 33-kD cysteine proteinase accumulates in response to larval feeding in maize genotypes resistant to fall armyworm and other Lepidoptera. Plant Cell 12 (7): 1031–1041.
- Royo J., Leon J., Vancanneyt G., Albar J.P., Rosahl S., Ortego F., Castanera P., Sanchez-Serrano J.J. 1999. Antisense-mediated depletion of a potato lipoxygenase reduces wound induction of proteinase inhibitors and increases weight gain of insect pests. Proc. Natl. Acad. Sci. USA 96: 1146–1151.
- Ryan C.A. 1990. Proteinase inhibitors in plants: genes for improving defenses against insects and pathogens. Annu. Rev. Phytopathol. 28: 425–449.
- Steppuhn A., Baldwin I.T. 2007. Resistance management in a native plant: nicotine prevents herbivores from compensating for plant protease inhibitors. Ecol. Lett. 10: 499–511.
- Thaler J.S., Stout M.J., Karban R., Duffey S.S. 2001. Jasmonate-mediated induced plant resistance affects a community of herbivores. Ecol. Entomol. 26: 312–324.
- Walling L.L. 2006. Recycling or regulation? The role of amino-terminal modifying enzymes. Curr. Opin. Plant Biol. 9: 227–233.
- Wang J.H., Constabel C.P. 2004. Polyphenol oxidase overexpression in transgenic Populus enhances resistance to herbivory by forest tent caterpillar (Malacosoma disstria). Planta 220: 87–96.
- Zhu-Salzman K., Luthe D.S., Felton G.W. 2008. Arthropod-inducible proteins: broad spectrum defenses against multiple herbivores. Plant Physiol. 146: 852–858.
- Zhu-Salzman K., Salzman R.A., Ahn J.E., Koiwa H. 2004. Transcriptional regulation of sorghum defense determinants against a phloem-feeding aphid. Plant Physiol. 134: 420–431.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.dl-catalog-61c72114-fa4b-49eb-827d-8a2d671cec17