首页> 美国卫生研究院文献>Journal of Experimental Botany >Tomato PYR/PYL/RCAR abscisic acid receptors show high expression in root differential sensitivity to the abscisic acid agonist quinabactin and the capability to enhance plant drought resistance
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Tomato PYR/PYL/RCAR abscisic acid receptors show high expression in root differential sensitivity to the abscisic acid agonist quinabactin and the capability to enhance plant drought resistance

机译:番茄PYR / PYL / RCAR脱落酸受体在根中表现出高表达对脱落酸激动剂奎那汀有不同的敏感性并具有增强植物抗旱性的能力

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摘要

Abscisic acid (ABA) plays a crucial role in the plant’s response to both biotic and abiotic stress. Sustainable production of food faces several key challenges, particularly the generation of new varieties with improved water use efficiency and drought tolerance. Different studies have shown the potential applications of Arabidopsis PYR/PYL/RCAR ABA receptors to enhance plant drought resistance. Consequently the functional characterization of orthologous genes in crops holds promise for agriculture. The full set of tomato (Solanum lycopersicum) PYR/PYL/RCAR ABA receptors have been identified here. From the 15 putative tomato ABA receptors, 14 of them could be grouped in three subfamilies that correlated well with corresponding Arabidopsis subfamilies. High levels of expression of PYR/PYL/RCAR genes was found in tomato root, and some genes showed predominant expression in leaf and fruit tissues. Functional characterization of tomato receptors was performed through interaction assays with Arabidopsis and tomato clade A protein phosphatase type 2Cs (PP2Cs) as well as phosphatase inhibition studies. Tomato receptors were able to inhibit the activity of clade A PP2Cs differentially in an ABA-dependent manner, and at least three receptors were sensitive to the ABA agonist quinabactin, which inhibited tomato seed germination. Indeed, the chemical activation of ABA signalling induced by quinabactin was able to activate stress-responsive genes. Both dimeric and monomeric tomato receptors were functional in Arabidopsis plant cells, but only overexpression of monomeric-type receptors conferred enhanced drought resistance. In summary, gene expression analyses, and chemical and transgenic approaches revealed distinct properties of tomato PYR/PYL/RCAR ABA receptors that might have biotechnological implications.
机译:脱落酸(ABA)在植物对生物和非生物胁迫的响应中起着至关重要的作用。粮食的可持续生产面临若干关键挑战,特别是在提高水利用效率和抗旱性的新品种的产生方面。不同的研究表明拟南芥PYR / PYL / RCAR ABA受体在增强植物抗旱性方面的潜在应用。因此,农作物直系同源基因的功能表征为农业带来了希望。此处已鉴定出完整的番茄(Solanum lycopersicum)PYR / PYL / RCAR ABA受体。从15种推定的番茄ABA受体中,可以将14种归为三个亚科,这些亚科与相应的拟南芥亚科密切相关。在番茄根中发现了高水平的PYR / PYL / RCAR基因表达,并且一些基因在叶片和果实组织中表现出主要表达。通过与拟南芥和番茄进化枝A蛋白磷酸酶2C型(PP2Cs)的相互作用测定以及对磷酸酶抑制的研究,对番茄受体进行了功能表征。番茄受体能够以ABA依赖性方式不同地抑制进化枝A PP2Cs的活性,并且至少三个受体对ABA激动剂奎那菌素敏感,后者抑制了番茄种子的发芽。的确,由奎那菌素诱导的ABA信号转导的化学激活能够激活应激反应基因。番茄的二聚体和单体番茄受体在拟南芥植物细胞中均具有功能,但只有单体型受体的过表达才能增强抗旱性。总之,基因表达分析以及化学和转基因方法揭示了番茄PYR / PYL / RCAR ABA受体的独特特性,可能具有生物技术意义。

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