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从黄瓜中分离出的一种高迁移率族蛋白的表达影响拟南芥在非生物胁迫条件下的萌发。

Expression of a high mobility group protein isolated from Cucumis sativus affects the germination of Arabidopsis thaliana under abiotic stress conditions.

作者信息

Jang Ji Young, Kwak Kyung Jin, Kang Hunseung

机构信息

Department of Plant Biotechnology, Agricultural Plant Stress Research Center, Biotechnology Research Institute, College of Agriculture and Life Sciences, Chonnam National University, Gwangju, Korea.

出版信息

J Integr Plant Biol. 2008 May;50(5):593-600. doi: 10.1111/j.1744-7909.2008.00650.x.

DOI:10.1111/j.1744-7909.2008.00650.x
PMID:18713428
Abstract

Although high mobility group B (HMGB) proteins have been identified from a variety of plant species, their importance and functional roles in plant responses to changing environmental conditions are largely unknown. Here, we investigated the functional roles of a CsHMGB isolated from cucumber (Cucumis sativus L.) in plant responses to environmental stimuli. Under normal growth conditions or when subjected to cold stress, no differences in plant growth were found between the wild-type and transgenic Arabidopsis thaliana overexpressing CsHMGB. By contrast, the transgenic Arabidopsis plants displayed retarded germination compared with the wild-type plants when grown under high salt or dehydration stress conditions. Germination of the transgenic plants was delayed by the addition of abscisic acid (ABA), implying that CsHMGB affects germination through an ABA-dependent way. The expression of CsHMGB had affected only the germination stage, and CsHMGB did not affect the seedling growth of the transgenic plants under the stress conditions. The transcript levels of several germination-responsive genes were modulated by the expression of CsHMGB in Arabidopsis. Taken together, these results suggest that ectopic expression of a CsHMGB in Arabidopsis modulates the expression of several germination-responsive genes, and thereby affects the germination of Arabidopsis plants under different stress conditions.

摘要

尽管已从多种植物物种中鉴定出高迁移率族B(HMGB)蛋白,但它们在植物应对不断变化的环境条件中的重要性和功能作用在很大程度上仍不清楚。在此,我们研究了从黄瓜(Cucumis sativus L.)中分离出的一种CsHMGB在植物对环境刺激的反应中的功能作用。在正常生长条件下或遭受冷胁迫时,过表达CsHMGB的野生型和转基因拟南芥之间未发现植物生长有差异。相比之下,在高盐或脱水胁迫条件下生长时,转基因拟南芥植株与野生型植株相比发芽延迟。添加脱落酸(ABA)会延迟转基因植株的发芽,这意味着CsHMGB通过依赖ABA的方式影响发芽。CsHMGB的表达仅影响发芽阶段,并且在胁迫条件下CsHMGB不影响转基因植株的幼苗生长。拟南芥中几个发芽响应基因的转录水平受到CsHMGB表达的调节。综上所述,这些结果表明,拟南芥中CsHMGB的异位表达调节了几个发芽响应基因的表达,从而影响了不同胁迫条件下拟南芥植株的发芽。

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Overexpression of Alleviates Phytotoxicity and Propamocarb Residues in Cucumber.[具体基因名称]的过表达减轻黄瓜中的植物毒性和霜霉威残留。 (注:原文中“Overexpression of ”后面缺少具体基因名称,这里用[具体基因名称]代替以便完整表达意思)
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Plant proteins containing high mobility group box DNA-binding domains modulate different nuclear processes.
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Natural variation in Arabidopsis thaliana revealed a genetic network controlling germination under salt stress.拟南芥自然变异揭示了一个控制盐胁迫下种子萌发的遗传网络。
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