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通过微阵列分析揭示了拟南芥种子成熟主调控因子 FUS3 的多种角色和基因调控机制。

Diverse roles and mechanisms of gene regulation by the Arabidopsis seed maturation master regulator FUS3 revealed by microarray analysis.

机构信息

Bioscience and Biotechnology Center, Nagoya University, Furo-cho, Chikusa, Nagoya, 464-8601 Japan.

出版信息

Plant Cell Physiol. 2010 Dec;51(12):2031-46. doi: 10.1093/pcp/pcq162. Epub 2010 Nov 2.

Abstract

The FUSCA3 (FUS3) transcription factor is considered a master regulator of seed maturation because a wide range of seed maturation events are impaired in its defective mutant. To identify comprehensively genes under the control of FUS3, two types of microarray experiments were performed. First, transgenic plants in which FUS3 expression could be induced by the application of estrogen (ESTR) were used to identify any genes up-regulated in young seedlings of Arabidopsis in response to the ectopic expression of FUS3. Secondly, the transcriptomes of the fus3 mutant and wild-type developing seeds were compared. The combined results of these experiments identified genes under the relatively immediate and robust control of FUS3 during seed development. The analysis has extended the range of identified gene types under the control of FUS3. The genes positively controlled by FUS3 are not confined to previously known seed maturation-related genes and include those involved in the production of secondary metabolites, such as glucosinolates, phenylpropanoids and flavonoids, and those involved in primary metabolism, such as photosynthesis and fatty acid biosynthesis. Furthermore, several different patterns were identified in the manner of ectopic activation by FUS3 with respect to the induction kinetics and ABA requirement of downstream gene induction depending on the nature of developmental regulation, suggesting mechanistic diversity of gene regulation by FUS3.

摘要

FUSCA3(FUS3)转录因子被认为是种子成熟的主要调控因子,因为其缺陷突变体中广泛的种子成熟事件受损。为了全面鉴定受 FUS3 调控的基因,进行了两种类型的微阵列实验。首先,使用可以通过应用雌激素(ESTR)诱导 FUS3 表达的转基因植物,鉴定拟南芥幼苗中外源表达 FUS3 时响应的任何上调基因。其次,比较了 fus3 突变体和野生型发育种子的转录组。这些实验的综合结果确定了在种子发育过程中 FUS3 相对立即和强烈控制下的基因。该分析扩展了受 FUS3 控制的鉴定基因类型的范围。FUS3 正向调控的基因不仅限于先前已知的与种子成熟相关的基因,还包括参与次生代谢产物如硫代葡萄糖苷、苯丙烷类和类黄酮以及参与初级代谢产物如光合作用和脂肪酸生物合成的基因。此外,根据发育调节的性质,FUS3 对下游基因诱导的异位激活在诱导动力学和 ABA 需求方面表现出几种不同的模式,这表明 FUS3 对基因调控的机制多样性。

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