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直接调控拟南芥甘露聚糖合酶基因 CSLA9 表达的转录因子。

Transcription factors that directly regulate the expression of CSLA9 encoding mannan synthase in Arabidopsis thaliana.

机构信息

Department of Horticulture, Michigan State University, 126 Natural Resources, East Lansing, MI, 48824-1222, USA.

出版信息

Plant Mol Biol. 2014 Mar;84(4-5):577-87. doi: 10.1007/s11103-013-0154-9. Epub 2013 Nov 17.

Abstract

Mannans are hemicellulosic polysaccharides that have a structural role and serve as storage reserves during plant growth and development. Previous studies led to the conclusion that mannan synthase enzymes in several plant species are encoded by members of the cellulose synthase-like A (CSLA) gene family. Arabidopsis has nine members of the CSLA gene family. Earlier work has shown that CSLA9 is responsible for the majority of glucomannan synthesis in both primary and secondary cell walls of Arabidopsis inflorescence stems. Little is known about how expression of the CLSA9 gene is regulated. Sequence analysis of the CSLA9 promoter region revealed the presence of multiple copies of a cis-regulatory motif (M46RE) recognized by transcription factor MYB46, leading to the hypothesis that MYB46 (At5g12870) is a direct regulator of the mannan synthase CLSA9. We obtained several lines of experimental evidence in support of this hypothesis. First, the expression of CSLA9 was substantially upregulated by MYB46 overexpression. Second, electrophoretic mobility shift assay (EMSA) was used to demonstrate the direct binding of MYB46 to the promoter of CSLA9 in vitro. This interaction was further confirmed in vivo by a chromatin immunoprecipitation assay. Finally, over-expression of MYB46 resulted in a significant increase in mannan content. Considering the multifaceted nature of MYB46-mediated transcriptional regulation of secondary wall biosynthesis, we reasoned that additional transcription factors are involved in the CSLA9 regulation. This hypothesis was tested by carrying out yeast-one hybrid screening, which identified ANAC041 and bZIP1 as direct regulators of CSLA9. Transcriptional activation assays and EMSA were used to confirm the yeast-one hybrid results. Taken together, we report that transcription factors ANAC041, bZIP1 and MYB46 directly regulate the expression of CSLA9.

摘要

甘露聚糖是半纤维素多糖,在植物生长和发育过程中具有结构功能,并作为储存储备。先前的研究得出结论,几种植物物种中的甘露聚糖合酶酶由纤维素合酶样 A (CSLA)基因家族的成员编码。拟南芥有 9 个 CSLA 基因家族成员。早期的工作表明,CSLA9 负责拟南芥花序茎初生和次生细胞壁中大多数葡甘露聚糖的合成。关于 CLSA9 基因的表达是如何调节的知之甚少。CSLA9 启动子区域的序列分析揭示了多个顺式调控基序 (M46RE)的存在,该基序被转录因子 MYB46 识别,这导致了 MYB46(At5g12870)是甘露聚糖合酶 CSLA9 的直接调节剂的假设。我们获得了一些实验证据来支持这一假设。首先,MYB46 的过表达使 CSLA9 的表达显著上调。其次,电泳迁移率变动分析(EMSA)用于证明 MYB46 在体外直接结合 CSLA9 的启动子。通过染色质免疫沉淀测定进一步在体内证实了这种相互作用。最后,MYB46 的过表达导致甘露聚糖含量显著增加。考虑到 MYB46 介导的次生壁生物合成的转录调控的多方面性质,我们推断其他转录因子参与 CSLA9 的调节。通过进行酵母单杂交筛选来检验这一假设,该筛选鉴定了 ANAC041 和 bZIP1 是 CSLA9 的直接调节剂。转录激活测定和 EMSA 用于确认酵母单杂交结果。综上所述,我们报告转录因子 ANAC041、bZIP1 和 MYB46 直接调节 CSLA9 的表达。

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