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首页> 外文期刊>Plant and cell physiology >Sucrose Transporter AtSUC9 Mediated by a Low Sucrose Level is Involved in Arabidopsis Abiotic Stress Resistance by Regulating Sucrose Distribution and ABA Accumulation
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Sucrose Transporter AtSUC9 Mediated by a Low Sucrose Level is Involved in Arabidopsis Abiotic Stress Resistance by Regulating Sucrose Distribution and ABA Accumulation

机译:通过调节蔗糖分布和ABA积累,低蔗糖水平介导的蔗糖转运蛋白AtSUC9参与拟南芥非生物胁迫的抗性。

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Sucrose (Suc) transporters (SUCs or SUTs) are important regulators in plant growth and stress tolerance. However, the mechanism of SUCs in plant abiotic stress resistance remains to be dietermined. Here, we found that AtSUC9 expression was induced by abiotic stress, including salt, osmotic and cold stress conditions. Disruption of AtSUC9 led to sensitive responses to abiotic stress during seed germination and seedling growth. Further analyses indicated that the sensitivity phenotype of Atsuc9 mutants resulted from higher Suc content in shoots and lower Suc content in roots, as compared with that in wild-type (WT) plants. In addition, we found that the expression of AtSUC9 is induced in particular by low levels of exogenous and endogenous Suc, and deletion of AtSUC9 affected the expression of the low Suc level-responsive genes. AtSUC9 also showed an obvious response to treatments with low concentrations of exogenous Suc during seed germination, seedling growth and Suc distribution, and Atsuc9 mutants hardly grew in abiotic stress treatments without exogenous Suc. Moreover, our results illustrated not only that deletion of AtSUC9 blocks abiotic stress-inducible ABA accumulation but also that Atsuc9 mutants had a lower content of endogenous ABA in stress conditions than in normal conditions. Deletion of AtSUC9 also inhibited the expression of many ABA-inducible genes (SnRk2.2/3/6, ABF2/3/4, ABI1/3/4, RD29A, KIN1 and KIN2). These results indicate that AtSUC9 is induced in particular by low Suc levels then mediates the balance of Suc distribution and promotes ABA accumulation to enhance Arabidopsis abiotic stress resistance.
机译:蔗糖(Suc)转运蛋白(SUC或SUT)是植物生长和胁迫耐受性的重要调节剂。然而,SUCs在植物非生物逆境抗性中的机制仍有待研究。在这里,我们发现AtSUC9表达是由非生物胁迫诱导的,包括盐,渗透压和冷胁迫条件。 AtSUC9的破坏导致种子萌发和幼苗生长过程中对非生物胁迫的敏感反应。进一步的分析表明,与野生型(WT)植物相比,Atsuc9突变体的敏感性表型是由芽中较高的Suc含量和根中较低的Suc含量引起的。此外,我们发现AtSUC9的表达特别是由低水平的外源性和内源性Suc诱导的,而AtSUC9的缺失影响了低Suc水平响应基因的表达。在种子萌发,幼苗生长和Suc分布期间,AtSUC9还显示出对低浓度外源Suc处理的明显响应,并且在没有外源Suc的非生物胁迫处理中,Atsuc9突变体几乎不生长。此外,我们的结果不仅说明了AtSUC9的缺失会阻止非生物胁迫诱导的ABA积累,而且表明Atsuc9突变体在胁迫条件下的内源ABA含量低于正常条件。 AtSUC9的删除也抑制了许多ABA诱导基因的表达(SnRk2.2 / 3/6,ABF2 / 3/4,ABI1 / 3/4,RD29A,KIN1和KIN2)。这些结果表明,AtSUC9特别是由低水平的Suc诱导,然后介导Suc分布的平衡并促进ABA积累,从而增强拟南芥的非生物胁迫抗性。

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