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在非生物胁迫条件下白菜(Brassica rapa)中冷休克结构域蛋白的应激响应表达模式和功能特征。

Stress-responsive expression patterns and functional characterization of cold shock domain proteins in cabbage (Brassica rapa) under abiotic stress conditions.

机构信息

Department of Plant Biotechnology, College of Agriculture and Life Sciences, Chonnam National University, 300 Yongbong-dong, Buk-gu, Gwangju 500-757, South Korea.

Department of Plant Biotechnology, College of Agriculture and Life Sciences, Chonnam National University, 300 Yongbong-dong, Buk-gu, Gwangju 500-757, South Korea.

出版信息

Plant Physiol Biochem. 2015 Nov;96:132-40. doi: 10.1016/j.plaphy.2015.07.027. Epub 2015 Jul 29.

Abstract

Although the functional roles of cold shock domain proteins (CSDPs) have been demonstrated during the growth, development, and stress adaptation of Arabidopsis (Arabidopsis thaliana), rice (Oryza sativa), and wheat (Triticum aestivum), the functions of CSDPs in other plants species, including cabbage (Brassica rapa), are largely unknown. To gain insight into the roles of CSDPs in cabbage under stress conditions, the genes encoding CSDPs in cabbage were isolated, and the functional roles of CSDPs in response to environmental stresses were analyzed. Real-time RT-PCR analysis revealed that the levels of BrCSDP transcripts increased during cold, salt, or drought stress, as well as upon ABA treatment. Among the five BrCSDP genes found in the cabbage genome, one CSDP (BRU12051), named BrCSDP3, was unique in that it is localized to the chloroplast as well as to the nucleus. Ectopic expression of BrCSDP3 in Arabidopsis resulted in accelerated seed germination and better seedling growth compared to the wild-type plants under high salt or dehydration stress conditions, and in response to ABA treatment. BrCSDP3 did not affect the splicing of intron-containing genes and processing of rRNAs in the chloroplast. BrCSDP3 had the ability to complement RNA chaperone-deficient Escherichia coli mutant cells under low temperatures as well as DNA- and RNA-melting abilities, suggesting that it possesses RNA chaperone activity. Taken together, these results suggest that BrCSDP3, harboring RNA chaperone activity, plays a role as a positive regulator in seed germination and seedling growth under stress conditions.

摘要

尽管冷激域蛋白(CSDPs)的功能作用在拟南芥(Arabidopsis thaliana)、水稻(Oryza sativa)和小麦(Triticum aestivum)的生长、发育和应激适应中得到了证实,但 CSDPs 在包括白菜(Brassica rapa)在内的其他植物物种中的功能仍知之甚少。为了深入了解 CSDPs 在白菜受到胁迫条件下的作用,我们分离了白菜编码 CSDPs 的基因,并分析了 CSDPs 在应对环境胁迫时的功能作用。实时 RT-PCR 分析显示,BrCSDP 转录本的水平在冷、盐或干旱胁迫以及 ABA 处理期间增加。在白菜基因组中发现的五个 BrCSDP 基因中,一个 CSDP(BRU12051),命名为 BrCSDP3,其独特之处在于它定位于叶绿体和细胞核。与野生型植物相比,拟南芥中 BrCSDP3 的异位表达导致在高盐或脱水胁迫条件下以及响应 ABA 处理时,种子发芽加速,幼苗生长更好。BrCSDP3 不影响内含子基因的剪接和叶绿体中 rRNAs 的加工。BrCSDP3 能够在低温下以及 DNA 和 RNA 解链能力下补充 RNA 伴侣缺陷型大肠杆菌突变细胞,表明它具有 RNA 伴侣活性。综上所述,这些结果表明,具有 RNA 伴侣活性的 BrCSDP3 在胁迫条件下作为种子发芽和幼苗生长的正调控因子发挥作用。

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