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去除对δ-1-吡咯啉-5-羧酸合成酶的反馈抑制会导致脯氨酸积累增加,并保护植物免受渗透胁迫。

Removal of feedback inhibition of delta(1)-pyrroline-5-carboxylate synthetase results in increased proline accumulation and protection of plants from osmotic stress.

作者信息

Hong Z, Lakkineni K, Zhang Z, Verma D P

机构信息

Department of Molecular Genetics and Plant Biotechnology Center, The Ohio State University, Columbus, Ohio 43210-1002, USA.

出版信息

Plant Physiol. 2000 Apr;122(4):1129-36. doi: 10.1104/pp.122.4.1129.

Abstract

The Delta(1)-pyrroline-5-carboxylate synthetase (P5CS; EC not assigned) is the rate-limiting enzyme in proline (Pro) biosynthesis in plants and is subject to feedback inhibition by Pro. It has been suggested that the feedback regulation of P5CS is lost in plants under stress conditions. We compared Pro levels in transgenic tobacco (Nicotiana tabacum) plants expressing a wild-type form of Vigna aconitifolia P5CS and a mutated form of the enzyme (P5CSF129A) whose feedback inhibition by Pro was removed by site-directed mutagenesis. Transgenic plants expressing P5CSF129A accumulated about 2-fold more Pro than the plants expressing V. aconitifolia wild-type P5CS. This difference was further increased in plants treated with 200 mM NaCl. These results demonstrated that the feedback regulation of P5CS plays a role in controlling the level of Pro in plants under both normal and stress conditions. The elevated Pro also reduced free radical levels in response to osmotic stress, as measured by malondialdehyde production, and significantly improved the ability of the transgenic seedlings to grow in medium containing up to 200 mM NaCl. These findings shed new light on the regulation of Pro biosynthesis in plants and the role of Pro in reducing oxidative stress induced by osmotic stress, in addition to its accepted role as an osmolyte.

摘要

Δ¹-吡咯啉-5-羧酸合成酶(P5CS;酶委员会未指定)是植物脯氨酸(Pro)生物合成中的限速酶,且受到脯氨酸的反馈抑制。有研究表明,在胁迫条件下,植物中P5CS的反馈调节会丧失。我们比较了表达野生型豇豆P5CS和通过定点诱变去除了脯氨酸反馈抑制的该酶突变形式(P5CSF129A)的转基因烟草(烟草)植株中的脯氨酸水平。表达P5CSF129A的转基因植株积累的脯氨酸比表达豇豆野生型P5CS的植株多约2倍。在用200 mM NaCl处理的植株中,这种差异进一步增大。这些结果表明,P5CS的反馈调节在正常和胁迫条件下都对控制植物中的脯氨酸水平起作用。通过丙二醛产生量测定,升高的脯氨酸还能降低渗透胁迫下的自由基水平,并显著提高转基因幼苗在含有高达200 mM NaCl的培养基中生长的能力。这些发现除了揭示脯氨酸作为渗透调节剂的公认作用外,还为植物中脯氨酸生物合成的调节以及脯氨酸在减轻渗透胁迫诱导的氧化应激中的作用提供了新线索。

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