水稻Rim2转录物对稻瘟病的响应是积累的,其预测的蛋白产物与CACTA转座子编码的tnp2样蛋白具有相似性。

Z H He, H T Dong, J X Dong, D B Li, P C Ronald
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引用次数: 40

摘要

水稻转录本Rim2在水稻与稻瘟病病菌的不亲和亲和互作中均有积累。Rim2转录本也在稻瘟病菌细胞壁激发子处理后积累。获得了一个3.3 kb的RIM2 cDNA克隆,该克隆编码653个氨基酸,与其他植物CACTA转座子编码的tnp2样蛋白具有3255%的同源性。一个1.05 kb片段的Rim2序列显示82%的核苷酸序列与水稻Xa21抗病基因家族A1和C成员的序列同源。克隆了Rim2的5′上游区域,并确定了转录起始位点。Rim2的5'和3'非编码端富含at。在5'上游区域发现了一个与烟草反转录转座子Tnt1防御相关转录激活序列相似的顺式元件,以及四个符合欧芹PR-1基因启动子中启动子响应元件共识序列的基序。在3'非编码端鉴定出4个不完全串联重复序列。对不同水稻品种基因组DNA的Southern分析表明,Rim2在每个基因组中存在3-4个拷贝。这些结果表明,Rim2可能是一个大型caca样元件的一个组成部分,其转录物在对病原体攻击的反应中积累。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The rice Rim2 transcript accumulates in response to Magnaporthe grisea and its predicted protein product shares similarity with TNP2-like proteins encoded by CACTA transposons.

A rice transcript, Rim2, was identified that accumulated in both incompatible and compatible interactions between rice and Magnaporthe grisea. The Rim2 transcript also accumulated in response to treatment with a cell wall elicitor derived from M. grisea. A 3.3-kb RIM2 cDNA clone was isolated and is predicted to encode a protein of 653 amino acids, which shares 32 55% identity with TNP2-like proteins encoded by CACTA transposons of other plants. A 1.05-kb segment of the Rim2 sequence shows 82% nucleotide sequence identity with sequences flanking the A1 and C members of the rice Xa21 disease resistance gene family. The 5'-upstream region of Rim2 was cloned and the transcriptional start sites were identified. The 5' and 3' noncoding termini of Rim2 are AT-rich. A cis-element showing similarity to a sequence that mediates defense-associated transcriptional activation of the tobacco retrotransposon Tnt1, and four motifs that fit the consensus sequence of the elicitor-responsive elements in the promoters of the parsley PR-1 genes were found in the 5'-upstream region. Four imperfect tandem repeats were identified in the 3' noncoding terminus. Southern analysis with genomic DNA from different rice species indicated that Rim2 is present in 3-4 copies per genome. These results suggest that Rim2 may be one component of a large CACTA-like element, whose transcript accumulates in response to attack by pathogens.

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