首页> 美国卫生研究院文献>Plant Physiology >Fatty Acid Desaturation during Chilling Acclimation Is One of the Factors Involved in Conferring Low-Temperature Tolerance to Young Tobacco Leaves.
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Fatty Acid Desaturation during Chilling Acclimation Is One of the Factors Involved in Conferring Low-Temperature Tolerance to Young Tobacco Leaves.

机译:低温驯化过程中的脂肪酸去饱和是赋予年轻烟叶低温耐受性的因素之一。

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摘要

The FAD7 gene, a gene for a chloroplast [omega]-3 fatty acid desaturase, is responsible for the trienoic fatty acid (TA) formation in leaf tissues. The TA content of the leaf tissue of the 25[deg]C-grown transgenic tobacco (Nicotiana tabacum cv SR1) plants, in which the FAD7 gene from Arabidopsis thaliana was overexpressed, increased uniformly by about 10%. Fatty acid unsaturation in all major leaf polar lipid species increased in the 25[deg]C-grown FAD7 transformants but was approximately the same between the control plants and the FAD7 transformants when grown at 15[deg]C. Therefore, the overexpression of the exogenous FAD7 gene leads to the same consequence in the tobacco plants as the low-temperature-induced TA production that may be catalyzed by an endogenous, temperature-regulated chloroplast [omega]-3 fatty acid desaturase. In the 25[deg]C-grown control plants, the chilling treatment caused symptoms of leaf chlorosis and suppression of leaf growth. The 25[deg]C-grown FAD7 transgenic plants conferred alleviation of these chilling-induced symptoms. A reductions of the chilling injury similar to that of the FAD7 transformants was also observed in the 15[deg]C-preincubated control plants. These results indicate that the increased TA production during chilling acclimation is one of the prerequisites for the normal leaf development at low, nonfreezing temperatures.
机译:FAD7基因是叶绿体ω-3脂肪酸去饱和酶的基因,负责叶组织中三烯脂肪酸(TA)的形成。 25℃生长的转基因烟草(Nicotiana tabacum cv SR1)植物的叶组织中的TA含量均匀地增加了约10%,其中来自拟南芥的FAD7基因被过表达。在生长于25℃的FAD7转化体中,所有主要叶极性脂质种类中的脂肪酸不饱和度均增加,但是在15℃下生长时,对照植物和FAD7转化体之间的脂肪酸不饱和度大致相同。因此,外源FAD7基因的过表达在烟草植物中导致与低温诱导的TA产生相同的结果,其可以由内源的,温度调节的叶绿体ω-3脂肪酸去饱和酶催化。在生长于25℃的对照植物中,冷藏处理引起叶片萎黄症状并抑制叶片生长。在25℃下生长的FAD7转基因植物赋予这些寒冷引起的症状缓解。在15℃预孵育的对照植物中也观察到与FAD7转化体相似的冷害减少。这些结果表明,在低温适应过程中增加的TA产量是在低温,非冻结温度下正常叶片发育的前提之一。

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