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甘薯醇脱氢酶基因对植物发育阶段和环境胁迫的转录调控。

Transcriptional regulation of the cinnamyl alcohol dehydrogenase gene from sweet potato in response to plant developmental stage and environmental stress.

机构信息

Ubiquitous Health Research Center (UHRC), Inje University, Gimhae, Gyungnam, South Korea.

出版信息

Plant Cell Rep. 2010 Jul;29(7):779-91. doi: 10.1007/s00299-010-0864-2. Epub 2010 May 9.

DOI:10.1007/s00299-010-0864-2
PMID:20454964
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2886125/
Abstract

Cinnamyl alcohol dehydrogenase (CAD) is a key enzyme in the biosynthesis of lignin. We have isolated full length of a cDNA encoding CAD (IbCAD1) that was previously identified as the most abundant gene in an EST library of sweetpotato suspension cells. Phylogenetic analysis revealed that IbCAD1 belongs to the family of defense-related CADs. High levels of IbCAD1 mRNA were found in the roots of sweetpotato, but not in the leaves and petioles. The IbCAD1 gene transcripts were highly induced by cold, wounding, and reactive oxygen species. Analyses of transcriptional regulation of the IbCAD1 gene in transgenic tobacco plants carrying the IbCAD1 promoter-GUS revealed that IbCAD1 promoter expression was strong in the roots, but barely detectable in the cotyledons. IbCAD1 promoter activity increased with increasing root age, and strong promoter expression was observed in the lateral root emergence sites and in root tips. Weak GUS expression was observed in lignified tissues of vascular system of mature leaves and stems. IbCAD1 promoter activity was strongly induced in response to the biotic and abiotic stresses, with the strongest inducer being wounding, and was also induced by salicylic acid (SA) and jasmonic acid (JA) as well as by abscisic acid (ABA) and 6-benzylaminopurine. Taken together, our data suggest that IbCAD1 can be involved in JA- and SA-mediated wounding response and ABA-mediated cold response, respectively. The IbCAD1 gene may play a role in the resistance mechanism to biotic and abiotic stresses as well as in tissue-specific developmental lignification.

摘要

肉桂醇脱氢酶(CAD)是木质素生物合成的关键酶。我们已经分离出了全长 cDNA 编码 CAD(IbCAD1),它之前被鉴定为甘薯悬浮细胞 EST 文库中最丰富的基因。系统发育分析表明,IbCAD1 属于防御相关 CAD 家族。在甘薯的根中发现 IbCAD1 mRNA 水平较高,但在叶片和叶柄中则没有。IbCAD1 基因转录物在低温、创伤和活性氧诱导下高度诱导。对携带 IbCAD1 启动子-GUS 的转基因烟草植物中 IbCAD1 基因转录的调控分析表明,IbCAD1 启动子在根中表达强烈,但在子叶中几乎无法检测到。IbCAD1 启动子活性随根龄的增加而增加,在侧根出现部位和根尖处观察到强烈的启动子表达。在成熟叶片和茎的维管束系统的木质化组织中观察到微弱的 GUS 表达。IbCAD1 启动子活性在生物和非生物胁迫下强烈诱导,最强的诱导剂是创伤,同时也被水杨酸(SA)、茉莉酸(JA)以及脱落酸(ABA)和 6-苄基氨基嘌呤(6-BA)诱导。总之,我们的数据表明 IbCAD1 可以参与 JA 和 SA 介导的创伤反应以及 ABA 介导的冷响应。IbCAD1 基因可能在生物和非生物胁迫以及组织特异性发育木质化的抗性机制中发挥作用。

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