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在花生(Arachis hypogaea)叶片渐进性水分亏缺及随后恢复过程中,对 Bowman-Birk 抑制剂进行克隆、鉴定和差异表达分析。

Cloning, characterization and differential expression of a Bowman-Birk inhibitor during progressive water deficit and subsequent recovery in peanut (Arachis hypogaea) leaves.

机构信息

Equipe IBIOS, UMR 7618 Bioemco, Université Paris Est - Créteil, 61 avenue du Général de Gaulle, C Créteil cedex, France.

出版信息

J Plant Physiol. 2013 Jan 15;170(2):225-9. doi: 10.1016/j.jplph.2012.09.005. Epub 2012 Oct 16.

Abstract

Bowman-Birk inhibitor (BBI) genes encode serine protease inhibitors well known for their anticarcinogenic properties and roles in plant defense against insects and pathogens. Here we investigated the expression of a BBI gene in response to water deficit, recovery and phytohormones. A full length cDNA encoding a novel BBI (AhBBI) was isolated from peanut (Arachis hypogaea L.) leaves. The deduced protein is a polypeptide of 11.5kDa containing a signal peptide of 20 amino acids which is missing from peanut seed full-length BBI. Sequence analysis showed that AhBBI presents the characteristic features of BBIs but its first inhibitory loop is unique among the Fabaceae species. Real-time PCR analyses indicated that in peanut leaves, AhBBI is upregulated by water deficit and exogenous jasmonic acid (JA) but repressed by abscissic acid (ABA) after 24h of treatment. The transcripts accumulation patterns during water deficit differed between two cultivars studied in relation to their tolerance levels to drought. AhBBI transcripts accumulated earlier and stronger in the tolerant cultivar (cv. Fleur11) compared to the susceptible one (cv. 73-30) suggesting that BBI genes are involved in drought stress tolerance. Subsequent rehydration reversed the accumulation of AhBBI transcripts in both cultivars but at different levels. The overall role of BBI in abiotic stress tolerance and the possible mechanisms of action are discussed.

摘要

Bowman-Birk 抑制剂 (BBI) 基因编码丝氨酸蛋白酶抑制剂,以其抗癌特性和在植物抵御昆虫和病原体方面的作用而闻名。在这里,我们研究了 BBI 基因对水分亏缺、恢复和植物激素的表达。从花生(Arachis hypogaea L.)叶片中分离到一个编码新型 BBI(AhBBI)的全长 cDNA。推导的蛋白是一个 11.5kDa 的多肽,含有 20 个氨基酸的信号肽,而花生种子全长 BBI 中缺失该信号肽。序列分析表明,AhBBI 具有 BBI 的特征,但它的第一个抑制环在豆科植物中是独特的。实时 PCR 分析表明,在花生叶片中,AhBBI 受水分亏缺和外源茉莉酸(JA)上调,但在处理 24 小时后受脱落酸(ABA)抑制。在与耐旱性相关的两个品种中,水分亏缺期间 AhBBI 的转录积累模式不同。与易感品种(cv. 73-30)相比,耐旱品种(cv. Fleur11)中 AhBBI 转录物的积累更早、更强,表明 BBI 基因参与了干旱胁迫耐受。随后的复水在两个品种中都逆转了 AhBBI 转录物的积累,但水平不同。讨论了 BBI 在非生物胁迫耐受中的整体作用和可能的作用机制。

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