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非自主反向重复外来转座元件与单子叶植物和双子叶植物的基因都有关联。

Nonautonomous inverted repeat Alien transposable elements are associated with genes of both monocotyledonous and dicotyledonous plants.

作者信息

Pozueta-Romero J, Houlné G, Schantz R

机构信息

Institut de Biologie Moléculaire des Plantes, Université Louis Pasteur, Strasbourg, France.

出版信息

Gene. 1996 Jun 1;171(2):147-53. doi: 10.1016/0378-1119(96)00007-8.

Abstract

Alien are highly repeated plant transposable elements characterized by their small size (approx. 400 bp), high A + T content, target site specificity, potential to form stable secondary structures and possession of a conserved 28-bp terminal inverted repeat (TIR). Besides the TIR, they contain subterminal inverted repeat motifs (SIRM), as well as the 5'-CATGCAT domain which has been reported to be a cis-acting regulatory element of gene expression in some plant species. Although they were first identified in the intron of the bell pepper (Capsicum annuum) Sn-2 gene and in the promoter region of the potato starch phosphorylase-encoding gene, Alien arranged in tandem are present in the promoter of patatin class-II genes. PCR on the bell pepper genomic DNA using the Alien TIR consensus sequence as primer yielded DNA fragments of nearly 400 bp. These fragments have characteristics of transposable elements and contain numerous motifs reminiscent of Alien elements. Importantly, PCR on genomic DNA extracts from various monocotyledonous and dicotyledonous plants using the TIR consensus sequence as primer and subsequent hybridization with different Alien probes revealed that these elements are ubiquitously present and highly repeated in the genomes of higher plants.

摘要

异形元件是高度重复的植物转座元件,其特点是尺寸小(约400碱基对)、A+T含量高、靶位点特异性、具有形成稳定二级结构的潜力以及拥有保守的28碱基对末端反向重复序列(TIR)。除了TIR外,它们还包含亚末端反向重复基序(SIRM),以及5'-CATGCAT结构域,据报道该结构域在一些植物物种中是基因表达的顺式作用调控元件。尽管异形元件最初是在甜椒(辣椒)Sn-2基因的内含子和马铃薯淀粉磷酸化酶编码基因的启动子区域中被鉴定出来的,但串联排列的异形元件存在于patatin II类基因的启动子中。以异形元件TIR共有序列为引物对甜椒基因组DNA进行PCR,得到了近400碱基对的DNA片段。这些片段具有转座元件的特征,并包含许多让人联想到异形元件的基序。重要的是,以TIR共有序列为引物对各种单子叶植物和双子叶植物的基因组DNA提取物进行PCR,随后与不同的异形元件探针杂交,结果表明这些元件普遍存在于高等植物基因组中且高度重复。

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