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首页> 外文期刊>Functional & integrative genomics >Reduced tillering in Basmati rice T-DNA insertional mutant OsTEF1 associates with differential expression of stress related genes and transcription factors
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Reduced tillering in Basmati rice T-DNA insertional mutant OsTEF1 associates with differential expression of stress related genes and transcription factors

机译:印度香米T-DNA插入突变体OsTEF1的分till减少与胁迫相关基因和转录因子的差异表达有关

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摘要

A T-DNA insertional mutant OsTEF1 of rice gives 60-80% reduced tillering, retarded growth of seminal roots, and sensitivity to salt stress compared to wild type Basmati 370. The insertion occurred in a gene encoding a transcription elongation factor homologous to yeast elf1, on chromosome 2 of rice. Detailed transcriptomic profiling of OsTEF1 revealed that mutation in the transcription elongation factor differentially regulates the expression of more than 100 genes with known function and finely regulates tillering process in rice by inducing the expression of cytochrome P450. Along with different transcription factors, several stress associated genes were also affected due to a single insertion. In silico analysis of the TEF1 protein showed high conservation among different organisms. This transcription elongation factor predicted to interact with other proteins that directly or indirectly positively regulate tillering in rice.
机译:与野生型Basmati 370相比,水稻的T-DNA插入突变体OsTEF1降低了60-80%的分till,延缓了生根的生长,并且对盐胁迫敏感。该插入发生在编码与酵母elf1同源的转录延伸因子的基因中,位于水稻2号染色体上。 OsTEF1的详细转录组分析显示,转录延伸因子中的突变可通过诱导细胞色素P450的表达差异调节水稻中100多个具有已知功能的基因的表达,并精细调节分till过程。与不同的转录因子一起,由于单次插入,一些与压力相关的基因也受到影响。在计算机分析中,TEF1蛋白在不同生物之间具有高度保守性。该转录延伸因子预计会与直接或间接正调控水稻分ing的其他蛋白质相互作用。

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