首页> 外文期刊>Plant molecular biology reporter >Gene Expression Analysis in Sorghum Hybrids and Their Parental Lines at Critical Developmental Stages in Relation to Grain Yield Heterosis by Exploiting Heterosis-Related Genes from Major Cereals
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Gene Expression Analysis in Sorghum Hybrids and Their Parental Lines at Critical Developmental Stages in Relation to Grain Yield Heterosis by Exploiting Heterosis-Related Genes from Major Cereals

机译:高粱杂交种的基因表达分析及其在谷物产量杂种中的关键发育阶段中的父母缺陷来自主要谷物的杂种优势相关基因

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Relative expression levels of selected genes from the Heterosis-Related Gene Database exhibiting more than 90% homology with sorghum were studied in hybrids and their respective parental lines for a better understanding on the molecular basis of heterosis. A high (27A × RS 673) and a low heterotic hybrid (7A × CB 26) of sorghum along with their parental lines were used for this purpose. Twenty (15 maize and 5 rice) genes exhibiting more than 90% homology with that of sorghum were identified. The maize genes ZmHG13 , ZmHG16 , and ZmhG19 exhibited more than fourfold increase over the male parent (RS 673) of high heterotic hybrid during booting stage, which started decreasing during flowering stage. Similarly, the rice genes OsHG1 and OsHG12 recorded >?2.5-fold increase. However, these genes recorded less than twofold increase during the same stage of the plant in the low heterotic hybrid. Notably, among the genes that exhibited higher expression in the highly heterotic hybrid were those coding for proteins, which were known to play crucial roles in the manifestation of heterosis in plants.
机译:在杂交种及其各自的父母系中研究了杂种相关基因数据库中所选基因的相对表达水平,其与高粱同源性的同源性和各自的父母线进行了杂种优势的分子基础。为此目的使用高(27a×Rs 673)和高粱和父母线的低异丙菌杂交(7a×Cb 26)。鉴定了20%(15米和5种水稻)基因,其具有90%与高粱同源的同源性。玉米基因ZMHG13,ZMHG16和ZMHG19在引导阶段期间在高杂交杂种的雄性父母(RS 673)上表现出了多于四倍,这在开花阶段开始减少。同样,水稻基因OSHG1和OSHG12记录>?2.5倍的增加。然而,这些基因在低杂交杂种的植物的相同阶段期间记录的基因小于两倍。值得注意的是,在高分子杂交中表现出更高的表达的基因中是蛋白质编码的那些,已知在植物中杂种优势的表现中起重要作用。

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