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鉴定和差异表达的两个脱水素 cDNA 在成熟的麻疯树种子。

Identification and differential expression of two dehydrin cDNAs during maturation of Jatropha curcas seeds.

机构信息

Key Laboratory of Tropical Plant Resource and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun 666303, China.

出版信息

Biochemistry (Mosc). 2013 May;78(5):485-95. doi: 10.1134/S0006297913050076.

Abstract

Plant dehydrin proteins (DHNs) are known to be important for environmental stress tolerance and are involved in various developmental processes. Two full-length cDNAs JcDHN-1 and JcDHN-2 encoding two dehydrins from Jatropha curcas seeds were identified and characterized. JcDHN-1 is 764 bp long and contains an open reading frame of 528 bp. The deduced JcDHN-1 protein has 175 a.a. residues that form a 19.3-kDa polypeptide with a predicted isoelectric point (pI) of 6.41. JcDHN-2 is 855 bp long and contains an open reading frame of 441 bp. The deduced JcDHN-2 protein has 156 a.a. residues that form a 17.1-kDa polypeptide with a predicted pI of 7.09. JcDHN-1 is classified as type Y₃SK₂ and JcDHN-2 is classified as type Y₂SK₂ according to the YSK shorthand for structural classification of dehydrins. Homology analysis indicates that both JcDHN-1 and JcDHN-2 share identity with DHNs of other plants. Analysis of the conserved domain revealed that JcDHN-2 has glycoside hydrolase GH20 super-family activity. Quantitative real time PCR analysis for JcDHN-1 and JcDHN-2 expression during seed development showed increasing gene expression of both their transcript levels along with the natural dehydration process during seed development. A sharp increase in JcDHN-2 transcript level occurred in response to water content dropping from 42% in mature seeds to 12% in dry seeds. These results indicate that both JcDHNs have the potential to play a role in cell protection during dehydration occurring naturally during jatropha orthodox seed development.

摘要

植物脱水素蛋白(DHNs)已知对环境胁迫耐受很重要,并参与各种发育过程。从麻疯树种子中鉴定并表征了两个全长 cDNA JcDHN-1 和 JcDHN-2,它们分别编码两种脱水素。JcDHN-1 长 764bp,包含一个 528bp 的开放阅读框。推测的 JcDHN-1 蛋白有 175 个氨基酸残基,形成一个 19.3kDa 的多肽,预测等电点(pI)为 6.41。JcDHN-2 长 855bp,包含一个 441bp 的开放阅读框。推测的 JcDHN-2 蛋白有 156 个氨基酸残基,形成一个 17.1kDa 的多肽,预测 pI 为 7.09。根据脱水素结构分类的 YSK 缩写,JcDHN-1 被分类为 Y₃SK₂,JcDHN-2 被分类为 Y₂SK₂。同源性分析表明,JcDHN-1 和 JcDHN-2 与其他植物的 DHNs 具有同源性。保守结构域分析表明,JcDHN-2 具有糖苷水解酶 GH20 超家族活性。对 JcDHN-1 和 JcDHN-2 在种子发育过程中的表达进行的定量实时 PCR 分析显示,随着种子发育过程中自然脱水过程,它们的转录水平都在增加。当成熟种子中的水分含量从 42%降至干种子中的 12%时,JcDHN-2 转录本水平急剧增加。这些结果表明,JcDHNs 在麻疯树正种种子发育过程中自然发生的脱水过程中,都有可能在细胞保护中发挥作用。

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