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脯氨酸降解的反义抑制提高了拟南芥对冷冻和盐胁迫的耐受性。

Antisense suppression of proline degradation improves tolerance to freezing and salinity in Arabidopsis thaliana.

作者信息

Nanjo T, Kobayashi M, Yoshiba Y, Kakubari Y, Yamaguchi-Shinozaki K, Shinozaki K

机构信息

Laboratory of Plant Molecular Biology, Tsukuba Life Science Center, The Institute of Physical and Chemical Research (RIKEN), 3-1-1 Koyadai, Tsukuba, Ibaraki, Japan.

出版信息

FEBS Lett. 1999 Nov 19;461(3):205-10. doi: 10.1016/s0014-5793(99)01451-9.

Abstract

Synthesis, degradation, and transport of proline (Pro) are thought to cooperatively control its endogenous levels in higher plants in response to environmental conditions. To evaluate the function of Pro degradation in the regulation of the levels of Pro and to elucidate roles of Pro in stress tolerance, we generated antisense transgenic Arabidopsis plants with an AtProDH cDNA encoding proline dehydrogenase (ProDH), which catalyzes Pro degradation. Several transgenic lines accumulated Pro at higher levels than wild-type plants, providing evidence for a key role of ProDH in Pro degradation in Arabidopsis. These antisense transgenics were more tolerant to freezing and high salinity than wild-type plants, showing a positive correlation between Pro accumulation and stress tolerance in plants.

摘要

脯氨酸(Pro)的合成、降解和转运被认为在高等植物中协同控制其内源水平以响应环境条件。为了评估脯氨酸降解在脯氨酸水平调节中的作用,并阐明脯氨酸在胁迫耐受性中的作用,我们构建了携带编码脯氨酸脱氢酶(ProDH)的AtProDH cDNA的反义转基因拟南芥植株,脯氨酸脱氢酶催化脯氨酸的降解。几个转基因株系积累的脯氨酸水平高于野生型植株,这为ProDH在拟南芥脯氨酸降解中的关键作用提供了证据。这些反义转基因植株比野生型植株更耐冷冻和高盐胁迫,表明植物中脯氨酸积累与胁迫耐受性之间呈正相关。

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