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基于微阵列的拟南芥茉莉酸应答基因筛选

Microarray-based screening of jasmonate-responsive genes in Arabidopsis thaliana.

作者信息

Jung Choonkyun, Lyou Seoung Hyun, Yeu SongYion, Kim Myeong Ae, Rhee Sangkee, Kim Minkyun, Lee Jong Seob, Choi Yang Do, Cheong Jong-Joo

机构信息

School of Agricultural Biotechnology and Center for Agricultural Biomaterials, Seoul National University, Seoul 151-921, Korea.

出版信息

Plant Cell Rep. 2007 Jul;26(7):1053-63. doi: 10.1007/s00299-007-0311-1. Epub 2007 Feb 13.

Abstract

Jasmonates comprise a family of plant hormones that regulate gene expression to modulate diverse developmental and defensive processes. To screen a set of jasmonate-responsive Arabidopsis genes, we performed a microarray analysis using an Affymetrix GeneChip containing about 8,300 gene probes synthesized in situ. External treatment with 100 microM methyl jasmonate resulted in significant changes (more than twofold increases or decreases) in the expression levels of 137 genes in the rosette leaves of 5-week-old Arabidopsis plants. Of these, 74 genes were up-regulated, including those involved in jasmonate biosynthesis, defense responses, oxidative stress responses, senescence, and cell wall modification. In contrast, the expression of genes involved in chlorophyll constitution and photosynthesis was down-regulated. Most importantly, the jasmonate treatment significantly reduced transcripts of abscisic acid-responsive cold/drought-stress genes, which suggests that an antagonistic interaction occurs between the jasmonate and abscisic acid signaling pathways in abiotic stress responses. Northern blot analysis of some selected genes revealed that the jasmonate-responsive genes exhibited unique time-course expression patterns after the external jasmonate treatment. Based on the basic clustering of the genes, we established a likely regulation scenario: the genes induced early after treatment are involved in signaling mechanisms that activate or repress other genes, whereas intermediate- and late-accumulating genes are activated by the signaling mechanisms and are subsequently involved in the ultimate jasmonate-modulated cellular responses.

摘要

茉莉酸酯是一类植物激素,可调节基因表达以调控多种发育和防御过程。为了筛选一组茉莉酸酯响应型拟南芥基因,我们使用了包含约8300个原位合成基因探针的Affymetrix基因芯片进行微阵列分析。用100微摩尔甲基茉莉酸酯进行外部处理,导致5周龄拟南芥植株莲座叶中137个基因的表达水平发生显著变化(增加或减少超过两倍)。其中,74个基因上调,包括参与茉莉酸酯生物合成、防御反应、氧化应激反应、衰老和细胞壁修饰的基因。相比之下,参与叶绿素组成和光合作用的基因表达下调。最重要的是,茉莉酸酯处理显著降低了脱落酸响应型冷/干旱胁迫基因的转录本,这表明在非生物胁迫反应中,茉莉酸酯和脱落酸信号通路之间存在拮抗相互作用。对一些选定基因的Northern印迹分析表明,茉莉酸酯响应型基因在外部茉莉酸酯处理后呈现独特的时间进程表达模式。基于基因的基本聚类,我们建立了一种可能的调控模式:处理后早期诱导的基因参与激活或抑制其他基因的信号传导机制,而中期和后期积累的基因则由信号传导机制激活,随后参与最终的茉莉酸酯调节的细胞反应。

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