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拟南芥中两个紧密相关的新型胚胎后期丰富蛋白(Lea)基因的结构、组织与表达

Structure, organization and expression of two closely related novel Lea (late-embryogenesis-abundant) genes in Arabidopsis thaliana.

作者信息

Raynal M, Guilleminot J, Gueguen C, Cooke R, Delseny M, Gruber V

机构信息

Laboratoire de Physiologie et Biologie Moléculaire des Plantes, UMR5545 du CNRS, Université de Perpignan, France.

出版信息

Plant Mol Biol. 1999 May;40(1):153-65. doi: 10.1023/a:1026403215270.

Abstract

We have isolated and sequenced a 9.5 kb genomic region from A. thaliana, located on chromosome 2, which contains two tandemly arranged closely related genes (AtM10 and AtM17) coding for a new family of LEA proteins. The deduced proteins have a molecular mass of 11 and 29 kDa, respectively, are extremely hydrophilic except at their N-termini and share 70% amino acid (aa) identity. A 47 aa motif containing a 6-cysteine domain is present once in AtM10 and four times in AtM17. The short intergenic region, the identical position of the intron and the overall sequence homology suggest that these two genes evolved through a duplication event. This conclusion is supported by the presence of two homologous strictosidine synthase-like (pseudo)genes downstream from AtM17 and AtM10. Expression studies, using AtM10 and AtM17 cDNAs, revealed that both transcripts accumulate exclusively in seeds from late embryogenesis until two days after imbibition. Expression of both genes in young seedlings is repressed during ABA, salt or drought treatment, whereas a cold stress induces the expression of AtM17 only. In situ hybridization revealed that AtM10 transcripts are detected throughout the embryo while those of AtM17 are more localized to cotyledon cells.

摘要

我们从拟南芥中分离并测序了一个位于2号染色体上的9.5 kb基因组区域,该区域包含两个串联排列的密切相关基因(AtM10和AtM17),它们编码一个新的LEA蛋白家族。推导的蛋白质分子量分别为11 kDa和29 kDa,除了N端外都极具亲水性,并且氨基酸(aa)同源性为70%。一个包含6个半胱氨酸结构域的47个氨基酸的基序在AtM10中出现一次,在AtM17中出现四次。短的基因间区域、内含子的相同位置以及整体序列同源性表明这两个基因是通过一次复制事件进化而来的。AtM17和AtM10下游存在两个同源的类蛇根碱合酶样(假)基因,这支持了这一结论。使用AtM10和AtM17 cDNA进行的表达研究表明,两种转录本仅在胚胎后期发育直至吸胀后两天的种子中积累。在ABA、盐或干旱处理期间,这两个基因在幼苗中的表达受到抑制,而冷胁迫仅诱导AtM17的表达。原位杂交显示,AtM10转录本在整个胚胎中都能检测到,而AtM17的转录本更局限于子叶细胞。

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