Broadening the genetic diversity underpinning seed quality and yield related traits in mustard rape and oilseed rape
Broadening the genetic diversity underpinning seed quality and yield related traits in mustard rape and oilseed rape
批准号:
BB/L011751/1
负责人:
Ian Bancroft
金额:
$68.19万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2014
资助国家:
英国
项目状态:
已结题
起止时间:
2014 至 --
中文摘要
植物油是人类饮食的重要组成部分,提供必需的脂肪酸。在全球产量仅次于大豆的最重要的油料作物中,油菜是一种重要的作物。它们主要是甘蓝型油菜(油菜;在英国广泛种植)和芥菜(芥菜,在印度广泛种植)。两者都是最近形成的异源四倍体(在甘蓝型油菜中包含A和C基因组,在芥菜中包含A和B基因组),因此都受到多倍体和育种材料缺乏遗传多样性的影响。拓宽作物的遗传基础和识别支持性状变异的基因是这两个物种的重要目标。除了是重要的作物外,十字花科植物还是一个很好的系统,用于研究多倍体后的二倍化过程中基因组的进化和性状的数量控制。所有三个二倍体白菜基因组(A、B和C)都已测序(B和C基因组的测序尚未公布,但根据合作协议可用)。基于Illumina转录组测序的强大新技术已被开发并应用于甘蓝型油菜,使其能够发展出详细的基于基因的基因组框架,并具有跨多样性面板将性状变异与基因序列变异和基因表达变异相关联的能力。在拟议的研究中,我们旨在了解对芥菜和油菜商业化生产至关重要的一系列初始性状数量变异的基本遗传基础。为此,我们将:(1)建立芥菜型油菜基因组资源,以匹配IB小组已经开发的甘蓝型油菜基因组资源;(2)分析B基因组相对于A和C基因组的进化;(3)为芥菜型油菜多样性小组和扩大的甘蓝型油菜小组建立功能基因;(4)确定作物改良的候选基因和等位基因;(5)促进与育种行业的知识交流,以促进作物改良。与B基因组相对应的转录组将利用从B.ngra获得的Illumina mRNAseq数据组装成Unigene集。将对芥菜DH作图群体进行叶片转录组测序,并与对应于A和B基因组的单基因相结合,用于构建详细的SNP连锁图谱。该连锁图谱将被用来将A和B基因组的基因组序列支架组织成假分子,这些假分子将被用来定义芥菜A和B基因组中单基因的假设顺序。将分析甘蓝型油菜A、B和C基因组的进化历史,如在二倍体物种和异源四倍体芥菜和甘蓝型油菜中观察到的,因为它们来自共同的祖先。将对甘蓝型油菜多样性小组和甘蓝型油菜多样性小组的附加品系进行叶片转录组测序,并对各个小组的SNP变异进行评分,并对所有材料的转录本进行量化。多样性小组将在适当的环境中分析性状的变异,优先与印度和英国的育种和农业行业磋商,并用于联合转录组分析。预计这些性状将包括在英国分析的种子组成性状(油、蛋白质、硫代葡萄糖苷、芥酸、亚麻酸、生育酚的含量)以及在印度分析的对各种生物和非生物胁迫的抗性。关于性状变异的遗传基础和有益等位基因的标记的知识将被产生并提供给作物。
英文摘要
Vegetable oils are an important part of the human diet, providing essential fatty acids. Amongst the most important oilseed crops, second in global production only to soybean, are the oilseed Brassica crops. These are principally the species B. napus (oilseed rape; cultivated widely in the UK) and B. juncea (mustard rape; cultivated widely in India). Both are recently-formed allotetraploids (containing the Brassica A and C genomes in the case of B. napus and the A and B genomes in the case of B. juncea), so both suffer from the complications arising from polyploidy and a lack of genetic diversity in breeding material. Broadening the genetic bases of the crops and identifying the genes underpinning trait variation are important objectives in both species.In addition to being important crops, the Brassica species represent an excellent system in which to study the evolution of genomes and the quantitative control of traits during the "diploidisation" process following polyploidy. All three diploid Brassica genomes (A, B and C) have been sequenced (those of B and C genomes are unpublished, but available under collaboration agreements). Powerful new technologies, based on Illumina transcriptome sequencing have been developed and applied to B. napus, enabling the development of a detailed gene-based genomic framework and the capability of associating, across diversity panels, trait variation with both gene sequence variation and gene expression variation.In the proposed research, we aim to understand the principle genetic bases underpinning quantitative variation of an initial set of traits of importance for the commercial production of both mustard rape and oilseed rape. In doing this, we will: (1) establish genomic resources for B. juncea to match those already developed by the group of IB for B. napus, (2) analyse the evolution of the B genome relative to those of the A and C genomes, (3) establish functional genotypes for a B. juncea diversity panel and an expanded B. napus panel, (4) identify candidate genes and alleles for crop improvement and (5) promote knowledge exchange with the breeding industries to facilitate crop improvement.The proposed research builds upon ongoing activities of the applicants, involves the sharing of genetic resources and includes a strong training element. The transcriptome corresponding to the B genome will be assembled to form a unigene set using Illumina mRNAseq data obtained from B. nigra. Leaf transcriptome sequencing will be undertaken for a B. juncea DH mapping population and used, in combination with unigenes corresponding to the A and B genomes for the construction of a detailed SNP linkage map. The linkage map will be used to organise genome sequence scaffolds of the A and B genomes into pseudomolecules that will be used to define hypothetical orders of unigenes in the A and B genomes of B. juncea. The evolutionary histories of the Brassica A, B and C genomes will be analysed, as observed in the diploid species and the allotetraploids B. juncea and B. napus, since their divergence from a common ancestor. Leaf transcriptome sequencing will be undertaken for a B. juncea diversity panel and additional lines of a B. napus diversity panel, SNP variation will be scored across the respective panels and transcripts quantified across all accessions. The diversity panels will be analysed, in suitable environments, for the variation of traits prioritised in consultation with the breeding and farming industries in India and the UK and used for Associative Transcriptomics analysis. The traits are anticipated to include seed composition traits analysed in the UK (content of oil, protein, glucosinolates, erucic acid, linolenic acid, tocopherols) and resistance to various biotic and abiotic stresses analysed in India. Knowledge of the genetic bases for trait variation and markers for beneficial alleles will be generated and made available for crops.
期刊论文(3)
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会议论文
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批准号:BB/S004823/1
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项目类别:Research Grant
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资助金额:$40.72万
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财政年份:2019
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负责人:Ian Bancroft
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依托单位:
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负责人:Ian Bancroft
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依托单位:
Commercialising thermo-stable rapeseed oil for the bio-lubricants industry
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批准号:BB/M028534/1
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项目类别:Research Grant
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资助金额:$40.81万
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财政年份:2015
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负责人:Ian Bancroft
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依托单位:
BBSRC Renewable Industrial Products from Rapeseed (RIPR) Programme
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批准号:BB/L002124/1
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项目类别:Research Grant
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资助金额:$400.32万
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财政年份:2014
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负责人:Ian Bancroft
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依托单位:
13 ERA-CAPS Evolution of genomes: structure-function relationships in the polyploid crop species Brassica napus
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批准号:BB/L027844/1
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项目类别:Research Grant
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资助金额:$84.62万
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财政年份:2014
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负责人:Ian Bancroft
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依托单位:
Reducing the carbon footprint of the lubricants industry by the substitution of mineral oil with rapeseed oil (RM062/LK0843)
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批准号:BB/F015798/2
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项目类别:Research Grant
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资助金额:$13.25万
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财政年份:2013
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负责人:Ian Bancroft
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Optimization of wheat and oilseed rape straw co-products for bio-alcohol production
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批准号:BB/H004351/1
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项目类别:Research Grant
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财政年份:2009
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负责人:Ian Bancroft
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依托单位:
Reducing the carbon footprint of the lubricants industry by the substitution of mineral oil with rapeseed oil (RM062/LK0843)
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批准号:BB/F015798/1
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财政年份:2008
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批准号:BB/E017363/1
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资助金额:$114.72万
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财政年份:2007
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依托单位:
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