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Biodiversity and relationships of Urochloa grasses for application in sustainable tropical forage systems

Biodiversity and relationships of Urochloa grasses for application in sustainable tropical forage systems
尾草草的生物多样性和关系在可持续热带饲料系统中的应用
批准号:
2608572
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2021
资助国家:
英国
项目状态:
未结题
起止时间:
2021 至 --

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中文摘要
翻译
世界上一半以上的农业用地是牧场,但热带饲料植物很少受到关注。它们之间的关系和生物多样性知之甚少。非洲草的Urophila(Brachiaria)组被带到南美洲作为饲料,现在驯化的饲料作物对小农的可持续动物生产很重要。在这个界限分明的博士项目中,我们可以回答有关野生非洲Urophila物种与栽培二倍体和多倍体的关系,驯化过程,生物多样性,种质资源(饲料作物及其野生亲属)以及物种形成过程中遗传瓶颈的发生的关键问题。以往的研究表明,乌氏单胞菌、乌氏单胞菌、乌氏单胞菌伏生U. ruziziensis和U.湿生菌形成一个复杂的起源不明的多倍体系列。在全球挑战研究基金(GCRF NERC/BBSRC)项目(涉及三个监督小组成员)中的工作已经显示了多倍体的基因组构成,但我们需要将我们的工作扩展到未研究的相关野生物种,并确定哪些物种提供了供体二倍体基因组。目前还没有尝试重建尾轮虫属的系统发育,这项工作将建立一个基于DNA和形态学的框架,并结合地理、生态和环境数据,以便在气候变化、土地使用压力和生物多样性丧失的条件下,利用遗传资源进行可持续育种。在过去的200年里,基尤的草分类学家建立了非洲草的分类系统,而基尤植物标本馆是唯一的综合参考收藏。该项目将把这些物种放在进化的背景下,在植物多样性研究和作物科学之间架起一座桥梁,并为可持续农业开发更好的饲料作物做出贡献。它将利用莱斯特大学开发的遗传标记系统和基因组特异性序列,沿着种质收集。结果将导致生物多样性和基因组组成的加入,以及定义的系统发育和分类界限的Urophila物种的测量。
英文摘要
More than half of the world's agricultural land is grazing land, but tropical fodder plants receive little attention. Their relationships and biodiversity are poorly understood. The Urochloa (Brachiaria) group of African grasses were brought to South America as forages and the now domesticated forage crops are important for sustainable animal production by smallholders. Within this well-demarcated PhD project we can answer critical questions about the relationships of wild African Urochloa species to the cultivated diploids and polyploids, the processes of domestication, their biodiversity, germplasm resources (in forage crops and their wild relatives), and the occurrence of genetic bottlenecks during speciation. Previous work has shown that Urochloa brizantha, U. decumbens, U. ruziziensis and U. humidicola form a complex polyploid series of uncertain origins. Work within a Global Challenges Research Fund (GCRF NERC/BBSRC) project (involving the three supervisory team members) has shown genome constitutions of polyploids, but we need to expand our work to unstudied related wild species, and define which species have provided donor diploid genomes. No phylogenetic reconstruction of Urochloa has been attempted, and the work will build a framework based on DNA and morphology, integrated with geographical, ecological and environmental data, allowing exploitation of genetic resources in breeding for sustainability now and under conditions of climate change, land-use pressures and biodiversity loss. Over the last 200 years grass taxonomists at Kew have built the classification system for African grasses, and the Kew herbarium is the only comprehensive reference collection. This project will place these species in an evolutionary context, build a bridge between plant diversity research and crop science, and contribute towards developing better forage crops for sustainable agriculture. It will exploit genetic marker systems and genome-specific sequences developed at the University of Leicester, along with germplasm collections. The results will lead to measurement of biodiversity and genome compositions in the accessions, as well as defining phylogeny and taxonomic boundaries of the Urochloa species.
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