正在加载图片...
Huang et al. and required for plant tolerance to cold stress. Mol Cell Biol 26: a negative regulator of systemic acquired resistance, SNIl, through a 339543 screen for suppressors of mpr1-1. Cell 98: 329-339 Dong H, Deng Y, Mu J, Lu Q, Wang Y, Xu Y, Chu C, Chong K Li Y, Yang S, Yang H, HuaJ(2007) The TiR-NB-lRR gene SNCI is regulated desaturase essential for carotenoid biosynthesis, is chloroplast development, photoprotection and retrograde signalling. Los DA, Murata N(2004)Membrane fluidity and its roles in the perception Cell Res 17: 458-470 of environmental signals. Biochim Biophys Acta 1666: 142-157 Du L, Ali GS, Simons KA, Hou J, Yang T, Reddy AS, Poovaiah BW(2009) Lyons JM(1973)Chilling injury in plants. Annu Rev Plant Physiol 24 Ca /calmodulin regulates salicylic-acid-mediated plant immunity Nature 457: Mauch-Mani B, Slusarenko AJ(1996)Production of salicylic acid precur Durrant WE, Dong X (2004)Systemic acquired resistance. Annu Rev lalanine ammonia-lyase in the resis- Phytopathol 42: 185-209 tance of Arabidopsis to Peronospora parasitica. Plant Cell 8: 203-212 Fryer MJ, Oxborough K, Mullineaux PM, Baker NR (2002) Imaging of Mayda E, Mauch-Mani B, Vera P(2000)Arabidopsis dth mutation iden- photo-oxidative stress responses in leaves. J Exp Bot 53: 1249-1254 tifies a gene involved in regulating disease susceptibility with Gilmour S], Artus NN, Thomashow MF (1992)cDNA sequence analysis affecting salicylic acid-dependent responses. Plant Cell 12: 2119-2128 Gilmour S), Fowler SG, Thomashow MF (2004)Arabidopsis transcrip- vary in functional requirements for NDR1, EDSI, NPRI and salicylic nal activators CBFl, CBF2, and CBF3 have matching functional activities. Plant Mol Biol 54: 767-78 Meyers BC, Kozik A, Griego A, Kuang H, Michelmore RW(2003) Glazebrook J, Rogers EE, Ausubel FM(1996) Isolation of Arabidopst Genome-wide analysis of NBS-LRR-encoding genes in Arabidopsis Plant mutants with enhanced disease susceptibility by direct screening. cell15:809-834 Genetics 143: 973-982 Mittler R, Vanderauwera S, Gollery M, Van Breusegem F(2004)Reactive Gray WM, Muskett PR, Chuang Hw, Parker JE (2003)Arabidopsis SGT1b oxygen gene network of plants. Trends Plant Sci 9: 490-498 uired for SCF(TIRI)-mediated auxin response. Plant Cell 15 Miur B, Lee, Yoo CY, Stirm V, Miura T, Ashworth EN, Bress 10-1319 RA, Yun DJ, Hasegawa PM(2007) SIZl-mediated sumoylation of iCEl Guy CL(1990) Cold acclimation and freezing stress tolerance: role of controls CBF3/DREBlAe 1 Rev plant ph Plant Cell 19: 1403-14 Hellens RP, Edwards EA, Leyland NR, Bean S, Mullineaux PM (2000) Muskett PR, Kahn K, Austin M, Moisan L, Sadanandom A, Shirasu K, for Agrobacterium- Jones JD, Parker JE (2002) Arabidopsis RARl exerts rate-limiting control mediated plant transformation. Plant Mol Biol 42: 819-83 of r gene-mediated defenses against multiple pathogens. Plant Cell 14: Hideg E, Barta C, Kalai T, Vass l, 979-992 f singlet oxygen and superoxide with fluorescent sensors in leaves Nanjo T, Kobayashi M, Yoshiba Y, sana Kakubari Y, Yamaguchi-Shinozaki K, Shinozaki K(1999) Biological Hirashima M, Tanaka R, Tanaka A(2009)Light- Plant Cell Physiol 50: 719-729eophorbide a in Arabidopsis thaliana induced by Noel L, moores TL, van Der Biezen EA, Parniske M, Daniels M, Parker JE, Jones JD(1999) Pronounced intraspecific haplotype divergence at Howles P, Lawrence G, Finnegan J, McFadden H, Ayliffe M, Dodds P, he RPP5 complex disease resistance locus of Arabidopsis Plant Cell 11: lis J (2005) Autoactive alleles of the flax L6 rust resistance gene induce on-race-specific rust resistance associated with the hypersensitiv O'Kane D, Gill v, Boyd P, Burdon R(1996)Chilling, oxidative stress an A response. Mol Plant Microbe Interact 18: 570-582 in Arabidopsis thaliana callus. Planta 198: 371-377 llk A, Gunn ND, EMB1303 is required for chloroplast development in Arabidopsis Cell Characterization of edsI, a mutation in Arabidopsis suppressing resis- Res19:1205-1 ance to Peronospora parasitica specified by several different RPP genes. Hwang CE Bhakta AV, Truesdell GM, Pudlo WM, williamson VM(2000) Plant Cell 8: 2033-2046 Evidence for a role of the n terminus and leucine-rich repeat region fannschmidt T, Schutze K, Fey V, Sherameti I, Oelmuller R (2003) the Mi gene product in regulation of localized cell death. Plant Cell 12 Chloroplast redox control of nuclear gene expression: a new class of 1319-1329 plastid signals in interorganellar communication. Antioxid Redox Sig- Iba K(2002)Acclimative response to temperature stress in higher plants: approaches of gene engineering for temperature tolerance. Annu Rev Rafiqi M, Bermoux M, Ellis JG, Dodds PN (2009)In the trenches of plant Plant Biol 53: 225-245 pathogen recognition: role of NB-LRR Proteins. Semin Cell Dev Biol 20 Jirage D, Tootle TL, Reuber tl, Frost LN, Feys B), Parker JE, Ausubel FM, Glazebrook J(1999)Arabidopsis thaliana PAD4 encodes a lipase-like gene Ravet K, Touraine B, Boucherez J, Briat JE, Gaymard E, Cellier F(2009) hat is important for salicylic acid signaling. Proc Natl Acad Sci USA96: Ferritins control interaction between iron homeostasis and oxidative stress in Arabidopsis. Plant J 57: 400-412 Knoth C, Ringler J, Dangl JL, Eulgem T(2007) Arabidopsis WRKY70 is Rizhsky L, Davletova S, Liang H, Mittler R (2004)The zinc finger protein required for full RPP4-mediated disease resistance and basal defense Zat12 is required ainst Hyaloperonospora parasitica. Mol Plant Microbe oxidative stress in Arabidopsis. J Biol 279:11736-11743 120-128 Scheel D(1998) Resistance response physiology and signal transduction. ee BH, Kapoor A, Zhu ), Zhu JK (2006)STABILIZEDI, a stress-upregu Curr Op iol1:305-310 protein, is required for pre-mRNA splicing, mRNA turn- Schneider JC, Hugly S, Somerville CR (1995)Chilling-sensitive mutants of over and st iol Rep 13: 11-17 Lee H, Guo Y, Ohta M, Xiong L on B, Zhu JK(2002)LOS2, a Seo PJ, Kim M], Park JY, Kim SY, Jeon J, Lee YH, Kim J, Park CM(2010) Cold activation of a plasma membrane-tethered NAC transcription factor induces a pathogen resistance response in Arabidopsis Plant]61 Lee j, Nam Park HC, Na G, Miura K, Jin JB, Yoo CY, Baek D, Kim DH, ated innate immunity in Seo PJ, Lee AK, Xiang F, Park CM(2008)Molecular and functional ligase. Plant J49: 79-90 filing of Arabidopsis pathogen ted genes: insights into their Li x, Clarke JD, Zhang Y, Dong X(2001) Activation of an EDS1-mediatec sles in salt response of seed germination. Plant Cell Physiol 49: 334-34 R-gene pathway in the sncl mutant leads to constitutive, NPRl-inde- Snider CS, Hsiang T, Zhao G, Griffith M(2000)Role of ice nucleation and pendent pathogen resistance. Mol Plant Microbe Interact 14: 1131-1139 antifreeze activities in pathogenesis and growth of snow molds. Phy Li X, Zhang Y, Clarke JD, LiY, Dong X (1999) Identification and cloning of pathology 90: 354-361 Plant Physiol. Vol. 154, 2010export and required for plant tolerance to cold stress. Mol Cell Biol 26: 9533–9543 Dong H, Deng Y, Mu J, Lu Q, Wang Y, Xu Y, Chu C, Chong K, Lu C, Zuo J (2007) The Arabidopsis Spontaneous Cell Death1 gene, encoding a zeta￾carotene desaturase essential for carotenoid biosynthesis, is involved in chloroplast development, photoprotection and retrograde signalling. Cell Res 17: 458–470 Du L, Ali GS, Simons KA, Hou J, Yang T, Reddy AS, Poovaiah BW (2009) Ca2+/calmodulin regulates salicylic-acid-mediated plant immunity. Nature 457: 1154–1158 Durrant WE, Dong X (2004) Systemic acquired resistance. Annu Rev Phytopathol 42: 185–209 Fryer MJ, Oxborough K, Mullineaux PM, Baker NR (2002) Imaging of photo-oxidative stress responses in leaves. J Exp Bot 53: 1249–1254 Gilmour SJ, Artus NN, Thomashow MF (1992) cDNA sequence analysis and expression of two cold-regulated genes of Arabidopsis thaliana. Plant Mol Biol 18: 13–21 Gilmour SJ, Fowler SG, Thomashow MF (2004) Arabidopsis transcrip￾tional activators CBF1, CBF2, and CBF3 have matching functional activities. Plant Mol Biol 54: 767–781 Glazebrook J, Rogers EE, Ausubel FM (1996) Isolation of Arabidopsis mutants with enhanced disease susceptibility by direct screening. Genetics 143: 973–982 Gray WM, Muskett PR, Chuang HW, Parker JE (2003) Arabidopsis SGT1b is required for SCF(TIR1)-mediated auxin response. Plant Cell 15: 1310–1319 Guy CL (1990) Cold acclimation and freezing stress tolerance: role of protein metabolism. Annu Rev Plant Physiol Plant Mol Biol 41: 187–223 Hellens RP, Edwards EA, Leyland NR, Bean S, Mullineaux PM (2000) pGreen: a versatile and flexible binary Ti vector for Agrobacterium￾mediated plant transformation. Plant Mol Biol 42: 819–832 Hideg E, Barta C, Kalai T, Vass I, Hideg K, Asada K (2002) Detection of singlet oxygen and superoxide with fluorescent sensors in leaves under stress by photoinhibition or UV radiation. Plant Cell Physiol 43: 1154–1164 Hirashima M, Tanaka R, Tanaka A (2009) Light-independent cell death induced by accumulation of pheophorbide a in Arabidopsis thaliana. Plant Cell Physiol 50: 719–729 Howles P, Lawrence G, Finnegan J, McFadden H, Ayliffe M, Dodds P, Ellis J (2005) Autoactive alleles of the flax L6 rust resistance gene induce non-race-specific rust resistance associated with the hypersensitive response. Mol Plant Microbe Interact 18: 570–582 Huang X, Zhang X, Yang S (2009) A novel chloroplast-localized protein EMB1303 is required for chloroplast development in Arabidopsis. Cell Res 19: 1205–1216 Hwang CF, Bhakta AV, Truesdell GM, Pudlo WM, Williamson VM (2000) Evidence for a role of the N terminus and leucine-rich repeat region of the Mi gene product in regulation of localized cell death. Plant Cell 12: 1319–1329 Iba K (2002) Acclimative response to temperature stress in higher plants: approaches of gene engineering for temperature tolerance. Annu Rev Plant Biol 53: 225–245 Jirage D, Tootle TL, Reuber TL, Frost LN, Feys BJ, Parker JE, Ausubel FM, Glazebrook J (1999) Arabidopsis thaliana PAD4 encodes a lipase-like gene that is important for salicylic acid signaling. Proc Natl Acad Sci USA 96: 13583–13588 Knoth C, Ringler J, Dangl JL, Eulgem T (2007) Arabidopsis WRKY70 is required for full RPP4-mediated disease resistance and basal defense against Hyaloperonospora parasitica. Mol Plant Microbe Interact 20: 120–128 Lee BH, Kapoor A, Zhu J, Zhu JK (2006) STABILIZED1, a stress-upregu￾lated nuclear protein, is required for pre-mRNA splicing, mRNA turn￾over, and stress tolerance in Arabidopsis. Plant Cell 18: 1736–1749 Lee H, Guo Y, Ohta M, Xiong L, Stevenson B, Zhu JK (2002) LOS2, a genetic locus required for cold-responsive gene transcription encodes a bi-functional enolase. EMBO J 21: 2692–2702 Lee J, Nam J, Park HC, Na G, Miura K, Jin JB, Yoo CY, Baek D, Kim DH, Jeong JC, et al (2007) Salicylic acid-mediated innate immunity in Arabidopsis is regulated by SIZ1 SUMO E3 ligase. Plant J 49: 79–90 Li X, Clarke JD, Zhang Y, Dong X (2001) Activation of an EDS1-mediated R-gene pathway in the snc1 mutant leads to constitutive, NPR1-inde￾pendent pathogen resistance. Mol Plant Microbe Interact 14: 1131–1139 Li X, Zhang Y, Clarke JD, Li Y, Dong X (1999) Identification and cloning of a negative regulator of systemic acquired resistance, SNI1, through a screen for suppressors of npr1-1. Cell 98: 329–339 Li Y, Yang S, Yang H, Hua J (2007) The TIR-NB-LRR gene SNC1 is regulated at the transcript level by multiple factors. Mol Plant Microbe Interact 20: 1449–1456 Los DA, Murata N (2004) Membrane fluidity and its roles in the perception of environmental signals. Biochim Biophys Acta 1666: 142–157 Lyons JM (1973) Chilling injury in plants. Annu Rev Plant Physiol 24: 445–466 Mauch-Mani B, Slusarenko AJ (1996) Production of salicylic acid precur￾sors is a major function of phenylalanine ammonia-lyase in the resis￾tance of Arabidopsis to Peronospora parasitica. Plant Cell 8: 203–212 Mayda E, Mauch-Mani B, Vera P (2000) Arabidopsis dth9 mutation iden￾tifies a gene involved in regulating disease susceptibility without affecting salicylic acid-dependent responses. Plant Cell 12: 2119–2128 McDowell JM, Cuzick A, Can C, Beynon J, Dangl JL, Holub EB (2000) Downy mildew (Peronospora parasitica) resistance genes in Arabidopsis vary in functional requirements for NDR1, EDS1, NPR1 and salicylic acid accumulation. Plant J 22: 523–529 Meyers BC, Kozik A, Griego A, Kuang H, Michelmore RW (2003) Genome-wide analysis of NBS-LRR-encoding genes in Arabidopsis. Plant Cell 15: 809–834 Mittler R, Vanderauwera S, Gollery M, Van Breusegem F (2004) Reactive oxygen gene network of plants. Trends Plant Sci 9: 490–498 Miura K, Jin JB, Lee J, Yoo CY, Stirm V, Miura T, Ashworth EN, Bressan RA, Yun DJ, Hasegawa PM (2007) SIZ1-mediated sumoylation of ICE1 controls CBF3/DREB1A expression and freezing tolerance in Arabidopsis. Plant Cell 19: 1403–1414 Muskett PR, Kahn K, Austin MJ, Moisan LJ, Sadanandom A, Shirasu K, Jones JD, Parker JE (2002) Arabidopsis RAR1 exerts rate-limiting control of R gene-mediated defenses against multiple pathogens. Plant Cell 14: 979–992 Nanjo T, Kobayashi M, Yoshiba Y, Sanada Y, Wada K, Tsukaya H, Kakubari Y, Yamaguchi-Shinozaki K, Shinozaki K (1999) Biological functions of proline in morphogenesis and osmotolerance revealed in antisense transgenic Arabidopsis thaliana. Plant J 18: 185–193 Noel L, Moores TL, van Der Biezen EA, Parniske M, Daniels MJ, Parker JE, Jones JD (1999) Pronounced intraspecific haplotype divergence at the RPP5 complex disease resistance locus of Arabidopsis. Plant Cell 11: 2099–2112 O’Kane D, Gill V, Boyd P, Burdon R (1996) Chilling, oxidative stress and antioxidant responses in Arabidopsis thaliana callus. Planta 198: 371–377 Parker JE, Holub EB, Frost LN, Falk A, Gunn ND, Daniels MJ (1996) Characterization of eds1, a mutation in Arabidopsis suppressing resis￾tance to Peronospora parasitica specified by several different RPP genes. Plant Cell 8: 2033–2046 Pfannschmidt T, Schutze K, Fey V, Sherameti I, Oelmuller R (2003) Chloroplast redox control of nuclear gene expression: a new class of plastid signals in interorganellar communication. Antioxid Redox Sig￾nal 5: 95–101 Rafiqi M, Bernoux M, Ellis JG, Dodds PN (2009) In the trenches of plant pathogen recognition: role of NB-LRR proteins. Semin Cell Dev Biol 20: 1017–1024 Ravet K, Touraine B, Boucherez J, Briat JF, Gaymard F, Cellier F (2009) Ferritins control interaction between iron homeostasis and oxidative stress in Arabidopsis. Plant J 57: 400–412 Rizhsky L, Davletova S, Liang H, Mittler R (2004) The zinc finger protein Zat12 is required for cytosolic ascorbate peroxidase 1 expression during oxidative stress in Arabidopsis. J Biol Chem 279: 11736–11743 Scheel D (1998) Resistance response physiology and signal transduction. Curr Opin Plant Biol 1: 305–310 Schneider JC, Hugly S, Somerville CR (1995) Chilling-sensitive mutants of Arabidopsis. Plant Mol Biol Rep 13: 11–17 Seo PJ, Kim MJ, Park JY, Kim SY, Jeon J, Lee YH, Kim J, Park CM (2010) Cold activation of a plasma membrane-tethered NAC transcription factor induces a pathogen resistance response in Arabidopsis. Plant J 61: 661–671 Seo PJ, Lee AK, Xiang F, Park CM (2008) Molecular and functional profiling of Arabidopsis pathogenesis-related genes: insights into their roles in salt response of seed germination. Plant Cell Physiol 49: 334–344 Snider CS, Hsiang T, Zhao G, Griffith M (2000) Role of ice nucleation and antifreeze activities in pathogenesis and growth of snow molds. Phy￾topathology 90: 354–361 Huang et al. 808 Plant Physiol. Vol. 154, 2010
<<向上翻页向下翻页>>
©2008-现在 cucdc.com 高等教育资讯网 版权所有