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Drought-Tolerance Gene Identification Using Genome Comparison and Co-Expression Network Analysis of Chromosome Substitution Lines in Rice

机译:水稻染色体取代线的基因组比较和共表达网络分析的干旱耐受基因鉴定

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摘要

Drought stress limits plant growth and productivity. It triggers many responses by inducing changes in plant morphology and physiology. KDML105 rice is a key rice variety in Thailand and is normally grown in the northeastern part of the country. The chromosome segment substitution lines (CSSLs) were developed by transferring putative drought tolerance loci (QTLs) on chromosome 1, 3, 4, 8, or 9 into the KDML105 rice genome. CSSL104 is a drought-tolerant line with higher net photosynthesis and leaf water potential than KDML105 rice. The analysis of CSSL104 gene regulation identified the loci associated with these traits via gene co-expression network analysis. Most of the predicted genes are involved in the photosynthesis process. These genes are also conserved in Arabidopsis thaliana. Seven genes encoding chloroplast proteins were selected for further analysis through characterization of Arabidopsis tagged mutants. The response of these mutants to drought stress was analyzed daily for seven days after treatment by scoring green tissue areas via the PlantScreen™ XYZ system. Mutation of these genes affected green areas of the plant and stability index under drought stress, suggesting their involvement in drought tolerance.
机译:干旱压力限制植物生长和生产力。它通过诱导植物形态和生理学的变化来触发许多反应。 KDML105米是泰国的一个关键米品种,通常在该国东北部种植。通过将推定的干旱耐受基因座(QTLS)转移到KDM1105水稻基因组的染色体1,3,4,8或9上,通过将推定的干旱耐耐受基因座(QTL)转移到KDM1105水稻基因组中来开发染色体分段替代线(CSSL)。 CSSL104是一种耐受耐水线,具有比KDML105米的净光合作用和叶水势较高。 CSSL104基因调节的分析鉴定了通过基因共表达网络分析与这些性状相关的基因座。大多数预测基因都参与了光合作用过程。这些基因也在拟南芥中保存。选择编码叶绿体蛋白的七种基因以进一步分析Arabidopsis标记突变体的表征。通过PlationCreen TM XYZ系统进行调速绿色组织区域,每天每天进行7天进行这些突变体对干旱胁迫的响应。这些基因的突变在干旱胁迫下影响了植物和稳定性指数的绿色区域,表明他们参与耐旱性。

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