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压力诱导豇豆中两种交替氧化酶(VuAox1 和 2b)基因的共表达。

Stress-induced co-expression of two alternative oxidase (VuAox1 and 2b) genes in Vigna unguiculata.

机构信息

Department of Biochemistry and Molecular Biology, Federal University of Ceara, 60455-760 Fortaleza, Ceará, Brazil.

出版信息

J Plant Physiol. 2010 May 1;167(7):561-70. doi: 10.1016/j.jplph.2009.11.001. Epub 2009 Dec 14.

Abstract

Cowpea (Vigna unguiculata) alternative oxidase is encoded by a small multigene family (Aox1, 2a and 2b) that is orthologous to the soybean Aox family. Like most of the identified Aox genes in plants, VuAox1 and VuAox2 consist of 4 exons interrupted by 3 introns. Alignment of the orthologous Aox genes revealed high identity of exons and intron variability, which is more prevalent in Aox1. In order to determine Aox gene expression in V. unguiculata, a steady-state analysis of transcripts involved in seed development (flowers, pods and dry seeds) and germination (soaked seeds) was performed and systemic co-expression of VuAox1 and VuAox2b was observed during germination. The analysis of Aox transcripts in leaves from seedlings under different stress conditions (cold, PEG, salicylate and H2O2 revealed stress-induced co-expression of both VuAox genes. Transcripts of VuAox2a and 2b were detected in all control seedlings, which was not the case for VuAox1 mRNA. Estimation of the primary transcript lengths of V. unguiculata and soybean Aox genes showed an intron length reduction for VuAox1 and 2b, suggesting that the two genes have converged in transcribed sequence length. Indeed, a bioinformatics analysis of VuAox1 and 2b promoters revealed a conserved region related to a cis-element that is responsive to oxidative stress. Taken together, the data provide evidence for co-expression of Aox1 and Aox2b in response to stress and also during the early phase of seed germination. The dual nature of VuAox2b expression (constitutive and induced) suggests that the constitutive Aox2b gene of V. unguiculata has acquired inducible regulatory elements.

摘要

豇豆(Vigna unguiculata)替代氧化酶由一个小的多基因家族(Aox1、2a 和 2b)编码,该家族与大豆 Aox 家族同源。与大多数已鉴定的植物 Aox 基因一样,VuAox1 和 VuAox2 由 4 个外显子和 3 个内含子组成。同源 Aox 基因的比对显示,外显子和内含子的高度同源性,而内含子的变异性更为普遍。为了确定 V. unguiculata 中 Aox 基因的表达,对种子发育(花、豆荚和干种子)和萌发(浸泡种子)过程中涉及的转录本进行了稳态分析,并观察到 VuAox1 和 VuAox2b 在萌发过程中系统共表达。对幼苗叶片在不同胁迫条件下(冷、PEG、水杨酸和 H2O2)的 Aox 转录本进行分析,结果表明这两个 VuAox 基因都受到胁迫诱导共表达。在所有对照幼苗中都检测到 VuAox2a 和 2b 的转录本,但 VuAox1 mRNA 则不然。对 V. unguiculata 和大豆 Aox 基因的初级转录本长度的估计表明,VuAox1 和 2b 的内含子长度减少,这表明这两个基因在转录序列长度上已经趋同。事实上,对 VuAox1 和 2b 启动子的生物信息学分析表明,一个与响应氧化应激的顺式元件相关的保守区域。综上所述,这些数据为 Aox1 和 Aox2b 在应对胁迫以及种子萌发早期阶段的共表达提供了证据。VuAox2b 表达的双重性质(组成型和诱导型)表明,V. unguiculata 的组成型 Aox2b 基因已经获得了诱导调节元件。

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