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一个编码定位于叶绿体的β-淀粉酶的拟南芥基因。

An Arabidopsis gene encoding a chloroplast-targeted beta-amylase.

作者信息

Lao N T, Schoneveld O, Mould R M, Hibberd J M, Gray J C, Kavanagh T A

机构信息

Department of Genetics, Trinity College, Dublin 2, Ireland.

出版信息

Plant J. 1999 Dec;20(5):519-27. doi: 10.1046/j.1365-313x.1999.00625.x.

Abstract

beta-Amylase is one of the most abundant starch degrading activities found in leaves and other plant organs. Despite its abundance, most if not all of this activity has been reported to be extrachloroplastic and for this reason, it has been assumed that beta-amylases are not involved in the metabolism of chloroplast-localized transitory leaf starch. However, we have identified a novel beta-amylase gene, designated ct-Bmy, which is located on chromosome IV of Arabidopsis thaliana. Ct-Bmy encodes a precursor protein which contains a typical N-terminal chloroplast import signal and is highly similar at the amino acid level to extrachloroplastic beta-amylases of higher plants. Expression of the ct-Bmy cDNA in E. coli confirmed that the encoded protein possesses beta-amylase activity. CT-BMY protein, synthesized in vitro, was efficiently imported by isolated pea chloroplasts and shown to be located in the stroma. In addition, fusions between the predicted CT-BMY transit peptide and jellyfish green fluorescent protein (GFP) or the entire CT-BMY protein and GFP showed accumulation in vivo in chloroplasts of Arabidopsis. Expression of the GUS gene fused to ct-Bmy promoter sequences was investigated in transgenic tobacco plants. GUS activity was most strongly expressed in the palisade cell layer in the leaf blade and in chlorenchyma cells associated with the vascular strands in petioles and stems. Histochemical staining of whole seedlings showed that GUS activity was largely confined to the cotyledons during the first 2 weeks of growth and appeared in the first true leaves at approximately 4 weeks.

摘要

β-淀粉酶是在叶片和其他植物器官中发现的最丰富的淀粉降解活性之一。尽管其含量丰富,但据报道,大部分(如果不是全部)这种活性存在于叶绿体之外,因此,人们认为β-淀粉酶不参与叶绿体定位的叶片暂存淀粉的代谢。然而,我们鉴定出了一个新的β-淀粉酶基因,命名为ct-Bmy,它位于拟南芥的第四条染色体上。Ct-Bmy编码一种前体蛋白,该蛋白含有典型的N端叶绿体导入信号,并且在氨基酸水平上与高等植物的叶绿体之外的β-淀粉酶高度相似。ct-Bmy cDNA在大肠杆菌中的表达证实,编码的蛋白具有β-淀粉酶活性。体外合成的CT-BMY蛋白被分离的豌豆叶绿体有效导入,并显示定位于基质中。此外,预测的CT-BMY转运肽与水母绿色荧光蛋白(GFP)的融合体或整个CT-BMY蛋白与GFP的融合体在拟南芥叶绿体中体内积累。在转基因烟草植物中研究了与ct-Bmy启动子序列融合的GUS基因的表达。GUS活性在叶片的栅栏细胞层以及叶柄和茎中与维管束相关的薄壁细胞中表达最强。对整个幼苗的组织化学染色表明,在生长的前两周内,GUS活性主要局限于子叶,在大约4周时出现在第一片真叶中。

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