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Zinc finger protein STOP1 is critical for proton tolerance in Arabidopsis and coregulates a key gene in aluminum tolerance

机译:锌指蛋白STOP1对于拟南芥的质子耐受性至关重要,并能调控铝耐受性的关键基因

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Acid soil syndrome causes severe yield losses in various crop plants because of the rhizotoxicities of ions, such as aluminum (Al~(3+)). Although protons (H~+) could be also major rhizotoxicants in some soil types, molecular mechanisms of their tolerance have not been identified yet. One mutant that was hypersensitive to H~+ rhizo-toxicity was isolated from ethyl methanesulfonate mutagenized seeds, and a single recessive mutation was found on chromosome 1. Positional cloning followed by genomic sequence analysis revealed that a missense mutation in the zinc finger domain in a predicted Cys_2His_2-type zinc finger protein, namely sensitive to proton rhizotoxicity (STOP)1, is the cause of hypersensitivity to H~+ rhizotoxicity. The STOP1 protein belongs to a functionally unidentified subfamily of zinc finger proteins, which consists of two members in Arabidopsis based on a Blast search. The stop1 mutation resulted in no effects on cadmium, copper, lanthanum, manganese and sodium chloride sensitivitities, whereas it caused hypersensitivity to Al~(3+) rhizotoxicity. This stop1 mutant lacked the induction of the AtALMT1 gene encoding a malate transporter, which is concomitant with Al-induced malate exudation. There was no induction of AtALMT1 by Al~(3+) treatment in the stop1 mutant. These results indicate that STOP1 plays a critical role in Arabidopsis tolerance to major stress factors in acid soils.
机译:酸性土壤综合症由于诸如铝(Al〜(3+))等离子的根际毒性而导致各种农作物的严重减产。尽管质子(H〜+)在某些土壤类型中也可能是主要的根际毒物,但尚未确定其耐受性的分子机制。从甲磺酸乙酯诱变的种子中分离出一个对H〜+根际毒性高度敏感的突变体,并在1号染色体上发现了一个隐性突变。位置克隆,然后进行基因组序列分析表明,锌指结构域中的错义突变位于预测的Cys_2His_2型锌指蛋白,即对质子的根际毒性(STOP)1敏感,是对H〜+根际毒性超敏的原因。 STOP1蛋白属于功能不明的锌指蛋白亚家族,由Blast搜索基于拟南芥中的两个成员组成。 stop1突变对镉,铜,镧,锰和氯化钠的敏感性没有影响,但对Al〜(3+)的根际毒性引起超敏性。该stop1突变体缺少编码苹果酸转运蛋白的AtALMT1基因的诱导,这与Al诱导的苹果酸渗出同时发生。在stop1突变体中,Al〜(3+)处理没有诱导AtALMT1。这些结果表明,STOP1在拟南芥对酸性土壤中主要胁迫因子的耐受性中起着关键作用。

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