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Candidate gene-based association genetics analysis of herbage quality traits in perennial ryegrass (Lolium perenne L.)

机译:基于候选基因的多年生黑麦草(Lolium perenne L.)牧草品质性状的关联遗传分析

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Due to the complex genetic architecture of perennial ryegrass, based on an obligate outbreeding reproductive habit, association-mapping approaches to genetic dissection offer the potential for effective identification of genetic marker-trait linkages.Associations with genes for agronomic characters, such as components of herbage nutritive quality, may then be utilised for accelerated cultivar improvement using advanced molecular breeding practices. The objective of the present study was to evaluatethe presence of such associations for a broad range of candidate genes involved in pathways of cell wall biosynthesis and carbohydrate metabolism. An association-mapping panel composed from a broad range of non-domesticated and varietal sources was assembled and assessed for genome-wide sequence polymorphism. Removal of significant population structure obtained a diverse meta-population (220 genotypes) suitable for association studies. The meta-population was established with replication as a spaced-plant field trial. All plants were genotyped with a cohort of candidate gene-derived single nucleotide polymorphism (SNP) markers. Herbage samples were harvested at both vegetative and reproductive stages and were measured for a range of herbage quality traits using near infrared reflectance spectroscopy. Significant associations were identified for -50% of the genes, accounting for small but significant components of phenotypic variance. The identities of genes with associated SNPs were largely consistentwith detailed knowledge of ryegrass biology, and they are interpreted in terms of known biochemical and physiological processes. Magnitudes of effect of observed marker-trait gene association were small, indicating that future activities should focus ongenome-wide association studies in order to identify the majority of causal mutations for complex traits such as forage quality.
机译:由于多年生黑麦草具有复杂的遗传结构,基于专性的近交繁殖习性,因此采用关联映射方法进行遗传解剖可有效鉴定遗传标记-性状联系。与农艺性状基因的关联,例如草本成分营养质量,然后可以使用先进的分子育种实践来加速品种改良。本研究的目的是评估与细胞壁生物合成和碳水化合物代谢途径有关的广泛候选基因的这种关联的存在。组装了由广泛的非驯养和品种来源组成的关联映射面板,并评估了全基因组序列多态性。去除重要的种群结构获得了适合于关联研究的多样化的亚种群(220个基因型)。通过间隔植物田间试验,建立了具有复制的元种群。所有植物均采用候选基因衍生的单核苷酸多态性(SNP)标记进行基因分型。在营养期和生殖期均采集草本样品,并使用近红外反射光谱法测量一系列草本品质性状。确定了-50%的基因的显着关联,占表型变异的很小但很重要的组成部分。具有相关SNP的基因的身份在很大程度上与黑麦草生物学的详细知识一致,并且根据已知的生化和生理过程对其进行解释。观察到的标记-性状基因关联的影响程度很小,表明未来的活动应集中在全基因组范围的关联研究上,以便为复杂性状(如饲草质量)确定大多数因果突变。

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