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An investigation of genotype-phenotype association in a festulolium forage grass population containing genome-spanning Festuca pratensis chromosome segments in a Lolium perenne background

机译:多年生黑麦草背景中含基因组跨界大麦草(Festuca pratensis)染色体片段的牧草饲草种群中的基因型-表型关联研究

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摘要

Alien chromosome introgression is used for the transfer of beneficial traits in plant breeding. For temperate forage grasses, much of the work in this context has focused on species within the ryegrasses (Lolium spp.) and the closely related fescues (Festuca spp.) particularly with a view to combining high forage quality with reliability and enhanced environmental services. We have analysed a L. perenne (perennial ryegrass) population containing the majority of a F. pratensis (meadow fescue) genome as introgressed chromosome segments to identify a) marker-trait associations for nutrient use and abiotic stress response across the family, and b) to assess the effects of introgression of F. pratensis genomic regions on phenotype. Using container-based assays and a system of flowing solution culture, we looked at phenotype responses, including root growth, to nitrogen and phosphorus status in the growing medium and abiotic stresses within this festulolium family. A number of significant marker/trait associations were identified across the family for root biomass on chromosomes 2, 3 and 5 and for heading date on chromosome 2. Of particular interest was a region on chromosome 2 associated with increased root biomass in phosphorus-limited conditions derived from one of the L. perenne parents. A genotype containing F. pratensis chromosome 4 as a monosomic introgression showed increased tiller number, shoot and root growth and genotypes with F. pratensis chromosome segment introgressions at different ends of chromosome 4 exhibited differential phenotypes across a variety of test conditions. There was also a general negative correlation between the extent of the F. pratensis genome that had been introgressed and root-related trait performances. We conclude that 1) the identification of alleles affecting root growth has potential application in forage grass breeding and, 2) F. pratensis introgressions can enhance quantitative traits, however, introgression can also have more general negative effects.
机译:外来染色体基因渗入用于植物育种中有益性状的转移。对于温带饲草,在此背景下,许多工作都集中在黑麦草(黑麦草)和密切相关的羊茅(Festuca spp。)内的物种,尤其是为了将高饲草质量与可靠性和增强的环境服务相结合。我们分析了含有大部分F.pratensis(草甸羊茅)基因组作为渗入染色体片段的多年生黑麦草(L. perenne)(多年生黑麦草)种群,以确定a)整个家庭中营养物利用和非生物胁迫响应的标记性状关联,以及b )以评估南美白对虾基因组区域基因渗入对表型的影响。使用基于容器的测定法和流动溶液培养系统,我们研究了表型响应,包括根系生长,对生长中的培养基中氮和磷的状态以及该胎草家庭中的非生物胁迫的响应。在整个家族中,对于染色体2、3和5上的根生物量以及染色体2上的抽穗期,发现了许多重要的标记/性状关联。特别令人感兴趣的是,在磷受限条件下,染色体2上与根生物量增加相关的区域源自L. perenne父母之一。包含F. pratensis染色体4作为单基因体渗入的基因型显示分till数,芽和根生长增加,且在4种染色体的不同末端具有F. pratensis染色体区段渗入的基因型在各种测试条件下均表现出不同的表型。在已渗入的南美白对虾基因组范围和与根相关的性状表现之间也普遍存在负相关。我们得出的结论是:1)确定影响根系生长的等位基因在草料育种中具有潜在的应用,以及2) F pratensis 的基因渗入可以增强数量性状,但是,基因渗入也可以具有更普遍的负面影响。

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