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GMCHI, cloned from soybean [Glycine max (L.) Meer.], enhances survival in transgenic Arabidopsis under abiotic stress

机译:从大豆[Glycine max(L.)Meer。]克隆的GMCHI可提高转基因拟南芥在非生物胁迫下的存活率

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摘要

Plants respond to cold stress by modifying the expression of a battery of cold-responsive genes. Using cDNA-AFLP techniques, GMCHI (G lycine m ax chilling-inducible) (accession no. EU699765) was isolated from the embryonic axis of a chilling-resistant cultivar of soybean seed imbibed at 4°C for 24 h. The full-length GMCHI cDNA which consisted of a single open reading frame (ORF) encoded a putative polypeptide of 129 amino acids. Sequence analysis revealed neither significant similarity of GMCHI to known proteins, nor any conserved domains found. Soybean seed imbibed at 4°C dramatically enhanced transcript level of GMCHI after 1 h, and reached a maximum at 18 h, while the expression was only detected in the embryonic axis. GMCHI expression was strongly induced by treatment with ABA and PEG, but weakly by 250 mM NaCl which suggests that GMCHI is probably regulated by ABA-dependent signal transduction pathway during cold acclimation. Overexpression of GMCHI in Arabidopsis under the control of CaMV35S promoter enhanced the tolerance to cold, drought and NaCl stresses. Therefore, GMCHI may play an important role in the adaptation of chilling-resistant soybean seed to chilling imbibition.
机译:植物通过修饰一系列冷响应基因的表达来应对冷胁迫。使用cDNA-AFLP技术,从在4°C吸收24 h的大豆种子的耐寒性品种的胚轴中分离出GMCHI(甘氨酸可诱导低温)(登录号EU699765)。由单个开放阅读框(ORF)组成的全长GMCHI cDNA编码一个推测的129个氨基酸的多肽。序列分析没有显示出GMCHI与已知蛋白质的显着相似性,也没有发现任何保守的结构域。在4°C吸收的大豆种子在1 h后显着提高了GMCHI的转录水平,并在18 h达到最大值,而仅在胚轴中检测到该表达。 ABA和PEG处理可强烈诱导GMCHI表达,但250 mM NaCl弱诱导GMCHI表达,这表明GMCHI可能在冷驯化过程中受ABA依赖的信号转导途径调控。在CaMV35S启动子控制下,拟南芥中GMCHI的过表达增强了对寒冷,干旱和NaCl胁迫的耐受性。因此,GMCHI可能在抗寒大豆种子适应寒冷吸收方面发挥重要作用。

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