Identification of Aluminum Responsive Genes in Al-Tolerant Soybean Line PI 416937.

International journal of plant genomics Pub Date : 2010-01-01 Epub Date: 2010-10-03 DOI:10.1155/2010/164862
Dechassa Duressa, Khairy Soliman, Dongquan Chen
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引用次数: 28

Abstract

Soybean is one of the most aluminum (Al) sensitive plants. The complex inheritance of Al tolerance trait has so far undermined breeding efforts to develop Al-tolerant soybeans. Discovering the genetic factors underlying the Al tolerance mechanisms would undoubtedly accelerate the pace of such endeavor. As a first step toward this goal, we analyzed the transcriptome profile in roots of Al-tolerant soybean line PI 416937 comparing Al-treated and untreated control plants using DNA microarrays. Many genes involved in transcription activation, stress response, cell metabolism and signaling were differentially expressed. Patterns of gene expression and mechanisms of Al toxicity and tolerance suggest that Cys2His2 and ADR6 transcription activators, cell wall modifying enzymes, and phytosulfokines growth factor play role in soybean Al tolerance. Our data provide insights into the molecular mechanisms of soybean Al tolerance and will have practical value in genetic improvement of Al tolerance trait.

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大豆耐铝系皮416937铝响应基因的鉴定
大豆是对铝最敏感的植物之一。耐铝性状的复杂遗传一直是影响大豆耐铝育种的主要因素。发现人工智能耐受机制背后的遗传因素无疑会加快这一努力的步伐。作为实现这一目标的第一步,我们使用DNA芯片分析了耐铝大豆品系PI 416937根系的转录组谱,比较了铝处理和未处理的对照植株。许多参与转录激活、应激反应、细胞代谢和信号传导的基因被差异表达。大豆铝毒性和铝耐受性的基因表达模式和机制表明,Cys2His2和ADR6转录激活因子、细胞壁修饰酶和植物磺基生长因子在大豆铝耐受性中起作用。本研究为大豆耐铝分子机制的研究提供了新的思路,对大豆耐铝性状的遗传改良具有实用价值。
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