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首页> 外文期刊>Natural science >The Dependence of &i& N&/i&-Malonyltryptophan Formation in Plants on Water Deficit (Review)
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The Dependence of &i& N&/i&-Malonyltryptophan Formation in Plants on Water Deficit (Review)

机译:& i&gt的依赖性。 n& / i& - 水赤字植物中的甘龙属植物形成(审查)

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Drought stress in plants is accompanied by several metabolic changes. One of them is the appearance of N -malonyltryptophan (MT) during leaf wilting of many species, but there is a significant number of plant species in which the appearance of MT did not occur. Plants of some species were able to synthesize also N -acetyltryptophan (AT). Excised tomato leaves incubated with D-amino acids (including D-Trp) transform them into malonyl- and acetyl-derivatives even without water deficit. However, MT which appeared during water deficit has been shown to contain L-Trp. Amino acid—1-amino-cyclopropane-1-carboxylic acid (ACC) is also malonylated during water deficit, but other L-amino acids were not malonylated. N -malonyl transferases specific for Trp and ACC have been found in several plants. The existence of N -malonyltransferase specific to L-Trp and appeared during water deficit in plants forming MT is supposed, but clear experimental proof has not been obtained yet. Plants can transform MT applied exogenously into Trp and further to indole-3-acetic acid (IAA). But no evidence has been appeared up to now that endogenous MT may be a source of IAA. It is unknown till now why it is necessary for plants of many species to malonylate only Trp during water deficit. How MT metabolized in animals and if it affects them is also unknown. The necessity to use molecular-genetic approaches for the elucidation of the physiological significance of MT formation during water deficit is underlined.
机译:植物中的干旱胁迫伴随着几种代谢变化。其中一个是N-Malonyltrophan(MT)的外观在许多物种的叶片萎缩过程中,但是有大量的植物物种,其中没有发生MT的外观。一些物种的植物也能够合成N-乙酰基三藻(AT)。切除的番茄叶与D-氨基酸(包括D-TRP)孵育,即使没有水缺损,也可以将它们转化为丙二酰基和乙酰基衍生物。然而,在水缺陷期间出现的MT被证明包含L-TRP。氨基酸-1-氨基 - 环丙烷-1-羧酸(ACC)也在水缺水期间麦隆化,但其他L-氨基酸不是炔酰化的。在几种植物中发现了对TRP和ACC特异的N-甘龙转移酶。存在于L-TRP的N-甘酰基转移酶的存在,并在形成MT的植物中的水缺水期间出现,但尚未获得明确的实验证据。植物可以将外部施用的MT转化为TRP,并进一步向吲哚-3-乙酸(IAA)。但现在没有证据表明,内生MT可能是IAA的来源。现在是未知的,为什么在水资源赤字期间,许多物种的植物只能在丙二酰盐。如何在动物中代谢,如果它影响它们也是未知的。强调了使用分子遗传措施阐明水缺损过程中Mt形成生理意义的必要性。

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