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Comparative Genomics in Perennial Ryegrass (Lolium perenne L.): Identification and Characterisation of an Orthologue for the Rice Plant Architecture-Controlling Gene OsABCG5

机译:多年生黑麦草(黑麦草)中的比较基因组学:水稻植物结构控制基因OsABCG5的直向同源物的鉴定和表征。

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摘要

Perennial ryegrass is an important pasture grass in temperate regions. As a forage biomass-generating species, plant architecture-related characters provide key objectives for breeding improvement. In silico comparative genomics analysis predicted colocation between a previously identified QTL for plant type (erect versus prostrate growth) and the ortholocus of the rice OsABCG5 gene (LpABCG5), as well as related QTLs in other Poaceae species. Sequencing of an LpABCG5-containing BAC clone identified presence of a paralogue (LpABCG6) in the vicinity of the LpABCG5 locus, in addition to three other gene-like sequences. Comparative genomics involving five other 5 grass species (rice, Brachypodium, sorghum, maize, and foxtail millet) revealed conserved microsynteny in the ABCG5 ortholocus-flanking region. Gene expression profiling and phylogenetic analysis suggested that the two paralogues are functionally distinct. Fourteen additional ABCG5 gene family members, which may interact with the LpABCG5 gene, were identified through sequencing of transcriptomes from perennial ryegrass leaf, anther, and pistils. A larger-scale phylogenetic analysis of the ABCG gene family suggested conservation between major branches of the Poaceae family. This study identified the LpABCG5 gene as a candidate for the plant type determinant, suggesting that manipulation of gene expression may provide valuable phenotypes for perennial ryegrass breeding.
机译:多年生黑麦草是温带地区重要的牧草。作为草食生物质产生物种,与植物结构相关的特征为改良育种提供了关键目标。在计算机分析中,比较基因组学分析预测到先前确定的植物类型QTL(直立生长与pro实生长)与水稻OsABCG5基因的直链酵母(LpABCG5)以及其他禾本科物种的相关QTL之间将共存。含有LpABCG5的BAC克隆的测序确定了在LpABCG5基因座附近,除了三个其他类似基因的序列外,还存在旁系同源物(LpABCG6)。比较基因组学涉及其他5种5种草种(大米,水芹,高粱,玉米和谷子),在ABCG5直链侧翼区域守恒着微同调。基因表达谱和系统发育分析表明,这两个旁系同源物在功能上是不同的。通过对多年生黑麦草叶,花药和雌蕊的转录组进行测序,鉴定了可能与LpABCG5基因相互作用的另外14个ABCG5基因家族成员。 ABCG基因家族的大规模系统进化分析表明,禾本科的主要分支之间存在保守性。这项研究确定了LpABCG5基因是植物类型决定簇的候选基因,这表明操纵基因表达可能为多年生黑麦草育种提供有价值的表型。

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