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SlPti4 Affects Regulation of Fruit Ripening, Seed Germination and Stress Responses by Modulating ABA Signaling in Tomato

机译:通过调节番茄中的ABA信号传导,SLPTI4影响果实成熟,种子萌发和应力响应的调节

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Although the role of the ethylene response factor (ERF) Pti4 in disease resistance has been demonstrated in higher plants, it is presently unknown whether the tomato SlPti4 protein plays a role in the regulation of fruit development and the stress response. Here, we show that SlPti4 is involved in the regulation of fruit ripening, seed germination, and responses to drought and Botrytis cinerea infection through adjustments to ABA metabolism and signaling. SlPti4 gene expression is very low early in fruit development, but increases rapidly during ripening and can be induced by exogenous ABA and 1-aminocyclopropane 1-carboxylate (ACC). RNA interference (RNAi)-induced silencing of SlPti4 leads to an increase of ABA accumulation together with a decrease of ethylene release, which causes the high expression level of SlBcyc, and thus the transgenic fruit is orange instead of red as in wild-type fruit during ripening. SlPti4-RNAi seeds accumulate less ABA and mRNA for ABA receptor SlPYL genes, which causes insensitivity to ABA treatment. SlPti4-RNAi transgenic plants with low ABA levels and high ethylene release were more sensitive to drought stress. SlPti4-RNAi plants also showed weaker resistance to B. cinerea infection than the wild type. Thus, SlPti4 is an important regulator of tomato fruit ripening, seed germination and abiotic/biotic stress responses. This study expands our knowledge on diverse plant physiologies which are regulated by ABA signaling and the function of SlPti4.
机译:虽然乙烯响应因子(ERF)PTI4在抗病症中的作用已经在高等植物中证明,目前番茄SLPTI4蛋白是在水果发育和应力反应的调节中起作用的作用。在这里,我们表明SLPTI4参与了果实成熟,种子萌发和对干旱和Botrytis Cherea感染的调节,通过调整ABA代谢和信号传导。 SLPTI4基因表达在果实发育早期非常低,但在成熟过程中迅速增加,可以通过外源ABA和1-氨基环丙烷1-羧酸盐(ACC)诱导。 RNA干扰(RNAi)诱导SLPTI4的沉默导致ABA积累的增加随着乙烯释放的降低而增加,这导致SLBCYC的高表达水平,因此转基因果是橙色而不是野生型果实。在成熟期间。 SLPTI4-RNAi种子积聚较少的ABA和MRNA用于ABA受体的裂解物裂解物基因,这导致对ABA处理的不敏感性。具有低ABA水平和高乙烯释放的SLPTI4-RNAI转基因植物对干旱胁迫更敏感。 SLPTI4-RNAI植物还表现出耐受B. Cinerea感染的耐受性较弱。因此,SLPTI4是番茄果实成熟,种子萌发和非生物/生物应激反应的重要调节因子。本研究扩大了我们对各种植物生理学的知识,这些生理学由ABA信令和SLPTI4的功能调节。

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