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首页> 外文期刊>Journal of Experimental Botany >Expression profiling of ascorbic acid-related genes during tomato fruit development and ripening and in response to stress conditions.
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Expression profiling of ascorbic acid-related genes during tomato fruit development and ripening and in response to stress conditions.

机译:抗坏血酸相关基因在番茄果实发育和成熟过程中以及响应胁迫条件下的表达谱。

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摘要

L-Ascorbate (the reduced form of vitamin C) participates in diverse biological processes including pathogen defence mechanisms, and the modulation of plant growth and morphology, and also acts as an enzyme cofactor and redox status indicator. One of its chief biological functions is as an antioxidant. L-Ascorbate intake has been implicated in the prevention/alleviation of varied human ailments and diseases including cancer. To study the regulation of accumulation of this important nutraceutical in fruit, the expression of 24 tomato (Solanum lycopersicon) genes involved in the biosynthesis, oxidation, and recycling of L-ascorbate during the development and ripening of fruit have been characterized. Taken together with L-ascorbate abundance data, the results show distinct changes in the expression profiles for these genes, implicating them in nodal regulatory roles during the process of L-ascorbate accumulation in tomato fruit. The expression of these genes was further studied in the context of abiotic and post-harvest stress, including the effects of heat, cold, wounding, oxygen supply, and ethylene. Important aspects of the hypoxic and post-anoxic response in tomato fruit are discussed. The data suggest that L-galactose-1-phosphate phosphatase could play an important role in regulating ascorbic acid accumulation during tomato fruit development and ripening. (c) 2009 The Author(s).
机译:L-抗坏血酸盐(维生素C的还原形式)参与多种生物过程,包括病原体防御机制以及植物生长和形态的调节,并且还充当酶辅因子和氧化还原状态指示剂。它的主要生物学功能之一是作为抗氧化剂。 L-抗坏血酸的摄入与预防/缓解各种人类疾病和疾病(包括癌症)有关。为了研究这种重要营养素在水果中的积累调控,已表征了在果实发育和成熟过程中涉及L-抗坏血酸生物合成,氧化和再循环的24个番茄基因(Solanum lycopersicon)的表达。结合L-抗坏血酸丰度数据,结果表明这些基因的表达谱发生了明显变化,从而暗示了它们在番茄果实中L-抗坏血酸积累过程中的节点调节作用。这些基因的表达在非生物和收获后胁迫的背景下进行了进一步研究,包括热,冷,创伤,供氧和乙烯的影响。讨论了番茄果实缺氧和缺氧后反应的重要方面。数据表明L-半乳糖-1-磷酸磷酸酶可能在调节番茄果实发育和成熟过程中的抗坏血酸积累中起重要作用。 (c)2009作者。

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