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首页> 外文期刊>Environmental and experimental botany >Sodium chloride-ABA interaction in two common bean (Phaseolus vulgaris) cultivars differing in salinity tolerance.
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Sodium chloride-ABA interaction in two common bean (Phaseolus vulgaris) cultivars differing in salinity tolerance.

机译:两种耐盐性不同的普通豆(菜豆)的氯化钠-ABA相互作用。

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The involvement of exogenous abscisic acid (ABA) concentrations in common bean responses to saline stress was studied in two cultivars differing in NaCl tolerance. To examine this, salt-sensitive (cv. Coco) and salt-tolerant (cv. Africa) plants in symbiosis with Rhizobium tropici CIAT899 strain were grown under controlled conditions and treated with ABA previously to the saline treatment. Plants decreased the shoot and root growth, nitrogenase activity and ureides content of nodules and nitrogen percentage of shoot and increased root to shoot ratio and amino acids and proline content of shoot with individual treatments of ABA and NaCl. The ABA pre-treatment to salinized plants improved the growth parameters and normalized nodule weight of Coco and induced recuperation or a lower nitrogenase activity inhibition in both cultivars. Since the salt-tolerant cultivar Africa was the main Na accumulator in shoot of salinized plants grown in absence of ABA, our results support the hypothesis that sodium exclusion in shoot is a strategy of common bean to limit Na toxicity under our experimental conditions. Besides, the ABA treatment in these plants seems to limit sodium translocation to shoot resulting in the maintenance of high K/Na ratio. Finally, results found here support roles of ABA and proline in the alleviation of salt stress and osmotic adjustment of common bean plants respectively..
机译:在两个NaCl耐受性不同的品种中研究了外源脱落酸(ABA)浓度对普通豆对盐胁迫的响应。为了检验这一点,与热带根瘤菌CIAT899菌株共生的盐敏感性植物(可可可)和盐耐受性(非洲可可)在受控条件下生长,并在进行盐处理之前先用ABA处理。分别处理ABA和NaCl,植物降低了枝条和根的生长,氮素活性和根瘤中尿素的含量以及枝条的氮含量,并增加了枝根比,氨基酸和脯氨酸含量。 ABA对盐渍化植物的预处理改善了两个品种的生长参数,使可可的结节重量正常化,并诱导了同养或较低的固氮酶活性抑制。由于耐盐品种非洲是在无ABA的条件下生长的盐渍植物芽中主要的Na累积剂,因此我们的结果支持以下假设:在我们的实验条件下,芽中钠的排斥是限制豆Na毒性的一种策略。此外,这些植物中的ABA处理似乎限制了钠的转运,从而维持了较高的K / Na比。最后,这里发现的结果分别支持ABA和脯氨酸在减轻普通豆类植物的盐胁迫和渗透调节中的作用。

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