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水稻耐铝性的新见解:ASR5蛋白与STAR1启动子及其他铝响应基因结合。

New insights into aluminum tolerance in rice: the ASR5 protein binds the STAR1 promoter and other aluminum-responsive genes.

作者信息

Arenhart Rafael Augusto, Bai Yang, de Oliveira Luiz Felipe Valter, Neto Lauro Bucker, Schunemann Mariana, Maraschin Felipe dos Santos, Mariath Jorge, Silverio Adriano, Sachetto-Martins Gilberto, Margis Rogerio, Wang Zhi-Yong, Margis-Pinheiro Marcia

机构信息

Programa de Pós-Graduação em Genética e Biologia Molecular Avenida Bento Gonçalves 9500, Departamento de Genética, sala 207, prédio 43312, Universidade Federal do Rio Grande do Sul, 91501-970, Porto Alegre, Brasil.

出版信息

Mol Plant. 2014 Apr;7(4):709-21. doi: 10.1093/mp/sst160. Epub 2013 Nov 19.

Abstract

Aluminum (Al) toxicity in plants is one of the primary constraints in crop production. Al³⁺, the most toxic form of Al, is released into soil under acidic conditions and causes extensive damage to plants, especially in the roots. In rice, Al tolerance requires the ASR5 gene, but the molecular function of ASR5 has remained unknown. Here, we perform genome-wide analyses to identify ASR5-dependent Al-responsive genes in rice. Based on ASR5_RNAi silencing in plants, a global transcriptome analysis identified a total of 961 genes that were responsive to Al treatment in wild-type rice roots. Of these genes, 909 did not respond to Al in the ASR5_RNAi plants, indicating a central role for ASR5 in Al-responsive gene expression. Under normal conditions, without Al treatment, the ASR5_RNAi plants expressed 1.756 genes differentially compared to the wild-type plants, and 446 of these genes responded to Al treatment in the wild-type plants. Chromatin immunoprecipitation followed by deep sequencing identified 104 putative target genes that were directly regulated by ASR5 binding to their promoters, including the STAR1 gene, which encodes an ABC transporter required for Al tolerance. Motif analysis of the binding peak sequences revealed the binding motif for ASR5, which was confirmed via in vitro DNA-binding assays using the STAR1 promoter. These results demonstrate that ASR5 acts as a key transcription factor that is essential for Al-responsive gene expression and Al tolerance in rice.

摘要

植物中的铝(Al)毒性是作物生产中的主要限制因素之一。Al³⁺是铝毒性最强的形式,在酸性条件下会释放到土壤中,对植物造成广泛损害,尤其是对根部。在水稻中,耐铝性需要ASR5基因,但ASR5的分子功能尚不清楚。在这里,我们进行全基因组分析,以鉴定水稻中依赖ASR5的铝响应基因。基于植物中的ASR5_RNAi沉默,一项全球转录组分析共鉴定出961个在野生型水稻根中对铝处理有响应的基因。在这些基因中,有909个在ASR5_RNAi植物中对铝无响应,这表明ASR5在铝响应基因表达中起核心作用。在正常条件下,未经铝处理时,ASR5_RNAi植物与野生型植物相比差异表达1756个基因,其中446个基因在野生型植物中对铝处理有响应。染色质免疫沉淀结合深度测序鉴定出104个推定的靶基因,这些基因由ASR5与其启动子结合直接调控,包括编码耐铝所需ABC转运蛋白的STAR1基因。对结合峰序列的基序分析揭示了ASR5的结合基序,这通过使用STAR1启动子的体外DNA结合试验得到了证实。这些结果表明,ASR5作为关键转录因子,对水稻中铝响应基因表达和耐铝性至关重要。

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