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首页> 外文期刊>Planta: An International Journal of Plant Biology >Multiple cis-regulatory elements regulate distinct and complex patterns of developmental and wound-induced expression of Arabidopsis thaliana 4CL gene family members.
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Multiple cis-regulatory elements regulate distinct and complex patterns of developmental and wound-induced expression of Arabidopsis thaliana 4CL gene family members.

机译:多个顺式调节元件调节拟南芥4CL基因家族成员发育和伤口诱导表达的不同和复杂模式。

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摘要

Lignin is an important biopolymer that is deposited in secondary cell walls of plant cells (e.g., tracheary elements) and in response to stresses such as wounding. Biosynthesis of lignin monomers occurs via the phenylpropanoid pathway, in which the enzyme 4-coumarate:CoA ligase (4CL) plays a key role by catalyzing the formation of hydroxycinnamoyl-CoA esters, subsequently reduced to the corresponding monolignols (hydroxycinnamoyl alcohols). 4CL is encoded by a family of four genes in Arabidopsis thaliana (At4CL1-At4CL4), which are developmentally regulated and co-expressed with other phenylpropanoid genes. We investigated in detail the wound-induced expression of At4CL1-At4CL4, and found that At4CL1 and At4CL2 mRNA accumulation follows biphasic kinetics over a period of 72 h, while At4CL4 expression is rapidly activated for a period of at least 12 h before declining. In order to localize cis-regulatory elements involved in the developmental and wound-induced regulation of the At4CL gene family members, At4CL promoter-beta-glucuronidase (GUS) reporter gene fusions were constructed and transferred into Arabidopsis plants. Analysis of these plants revealed that the promoter fragments direct discrete and distinct patterns of expression, some of which did not recapitulate expected patterns of wound-induced expression. The locations of regulatory elements associated with the At4CL2 gene were investigated in detail using a series of transgenic Arabidopsis plants containing promoter fragments and parts of the transcribed region of the gene fused to GUS. Positive and negative regulatory elements effective in modulating developmental expression or wound responsiveness of the gene were located both in the promoter and transcribed regions of the At4CL2 gene..
机译:木质素是重要的生物聚合物,其沉积在植物细胞的次级细胞壁(例如气管元件)中,并响应于诸如创伤的压力。木质素单体的生物合成是通过苯丙烷途径进行的,其中4-香豆酸酯:CoA连接酶(4CL)通过催化羟基肉桂酰基-CoA酯的形成起关键作用,随后被还原为相应的单木酚醇(羟基肉桂酰基醇)。 4CL由拟南芥中的四个基因家族(At4CL1-At4CL4)编码,这些基因在发育上受到调控并与其他苯基丙烷基因共同表达。我们详细研究了伤口诱导的At4CL1-At4CL4的表达,发现At4CL1和At4CL2 mRNA的积累在72小时内遵循双相动力学,而At4CL4的表达在下降之前至少12 h内被迅速激活。为了定位参与At4CL基因家族成员的发育和伤口诱导调控的顺式调控元件,构建了At4CL启动子-β-葡萄糖醛酸苷酶(GUS)报告基因融合体,并将其转移到拟南芥植物中。对这些植物的分析表明,启动子片段指导离散的和不同的表达模式,其中一些不能概括伤口诱导表达的预期模式。使用一系列含有启动子片段和与GUS融合的基因转录区部分的转基因拟南芥植物,详细研究了与At4CL2基因相关的调控元件的位置。有效调节基因的发育表达或伤口反应性的正调控元件和负调控元件都位于At4CL2基因的启动子和转录区域。

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