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Capacity Building for Crop Improvement in Sweetpotato: Insights from Wild Populations

Capacity Building for Crop Improvement in Sweetpotato: Insights from Wild Populations
甘薯作物改良的能力建设:来自野生种群的见解
批准号:
BB/T001445/1
负责人:
Robert Scotland
金额:
$57.17万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --

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中文摘要
翻译
在经历重大环境动荡和人口增长的世界中,人们普遍预测,在可预见的未来,粮食安全将是一个令人关切的主要领域。提高作物的抗逆性是一个活跃的研究领域,因为科学家的目标是利用更少的资源在更少的土地上增加粮食产量。科学家和植物育种者的部分工具箱是利用作物的野生近缘物种将新特性引入作物,以培育出更强、更具弹性的品种。这种方法在香蕉、大麦、豆类、木薯、鹰嘴豆、玉米、生菜、燕麦、土豆、水稻、甘蔗、向日葵、西红柿和小麦等作物上取得了成功。野生近亲对这种方法的使用缺乏了解的一种重要的全球粮食作物是甘薯(Ipomoea Batatas)。然而,最近发表的研究在理解甘薯与与其关系最密切的物种之间的系统发育关系方面取得了重大进展。目的1:描述甘薯的野生形态,并定义一套形态描述符使甘薯育种者将其与栽培甘薯和其他感兴趣的材料区分开来。目标2:组装高质量的野生甘薯基因组。这将使我们能够与已有的通菜属其他物种的基因组进行比较基因组研究。这些比较研究对于了解作物物种的进化以及多倍化如何影响其基因组至关重要。此外,它还将为六倍体甘薯品种的基因组组装提供高质量的参考。目标3:记录野生甘薯种群内和野生甘薯种群之间的表型变异,涵盖其整个分布。这将为了解野生甘薯、作物和所有其他野生亲缘关系之间的性状分布提供一个全面的比较框架。目标4:确定野生甘薯的遗传变异。我们将对厄瓜多尔不同野生甘薯种群的96个样本进行全基因组测序,考虑到目标3中确定的地理和表型差异。这一分析将使我们不仅能够量化野生甘薯与栽培甘薯相比的遗传变异,还将评估甘薯驯化背后的遗传过程,并调查‘驯化基因’的适应性进化。目标5:在甘薯适应栽培的过程中识别正选择基因。植物驯化通常与选择适合栽培的野生植物的特定特征有关。我们将通过比较野生甘薯和几个甘薯品种来寻找这一选择的特征。这种类型的姐妹血统比较将使我们能够识别同义和非同义替换的差异,并确定多态是由于正向选择还是中性漂移。此外,这些信息将使我们能够详细地了解在作物进化过程中与野生形式相比重要的适应性突变。目标6:阐明甘薯的起源、多倍体和驯化途径,以及驯化在可食用贮藏根的起源和进化中所起的作用。
英文摘要
In a world experiencing major environmental upheaval and population growth it is widely predicted that food security will be a major area of concern for the foreseable future. Increasing the resilience of crops is an area of active research, as scientists aim to increase food production on less land using fewer resources. Part of the toolbox of scientists and plant breeders are the use wild relative species of the crop to introduce new traits into crops to produce enhanced and more resilient varieties. Such approaches have worked successfully in some crops such as banana, barley, beans, cassava, chickpeas, maize, lettuce, oats, potato, rice, sugarcane, sunflowers, tomatoes and wheat. One important global food crop for which there has been insufficient understanding of wild relatives for the use of this approach, is the sweetpotato (Ipomoea batatas). However, recent published research has made significant progress in understanding the phylogenetic relationships between sweetpotato and the species most closely related to it. Objective 1: Describe the wild form of the sweetpotato and define a set of morphological descriptors that allow sweetpotato breeders to distinguish it from cultivated Ipomoea batatas and from other materials of interest to them.Objective 2: Assemble a high-quality genome of wild sweetpotato. This will allow us to conduct comparative genomic studies with the already available genomes of other species of Ipomoea. These comparative studies are essential to understand the evolution of the crop species and how polyploidization affected its genome. In addition, it will constitute a high-quality reference for assembling the genome of the hexaploid cultivar.Objective 3: Document phenotypic variation within and between wild sweetpotato populations, across its entire distribution. This will provide a comprehensive comparative framework for understanding the distribution of traits between the wild form, the crop and all other wild relatives.Objective 4: Determine genetic variation in wild sweetpotato. We will conduct whole genome sequencing of 96 samples from different populations of wild sweetpotato across Ecuador, taking into account geographical and phenotypic variation as identified in Objective 3. This analysis will allow us to not only quantify genetic variation in the wild form of the sweetpotato compared to the cultivated form, but also to assess the genetic processes underlying sweetpotato domestication and to investigate adaptive evolution of 'domestication genes'.Objective 5: Identify genes under positive selection during the adaptation of sweetpotato to cultivation. Plant domestication is often associated with selection of specific traits in the wild plants that make them suitable for cultivation. We will look for a signature of this selection by comparison between the wild form and several sweetpotato cultivars. This type of sister-lineage comparison will allow us to identify differences in synonymous and non-synonymous substitutions and to determine whether polymorphism is due to positive selection or neutral drift. Further, this information will allow us to understand in detail the adaptive mutations that were important during the evolution of the crop compared to its wild form.Objective 6: Clarify the origin, route to polyploidy and domestication of the sweetpotato and what role domestication had in the origin and evolution of the edible storage root.
期刊论文(10)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1242/bio.059181
发表时间: 2022-02-15
期刊: Biology open
影响因子: 2.4
作者: [Carruthers T, Scotland RW]
通讯作者: Scotland RW
Evolutionary Biology: A New Phylogenetic Framework for an Iconic Plant Radiation.
进化生物学:标志性植物辐射的新系统发育框架。
DOI: 10.1016/j.cub.2020.10.022
发表时间: 2020
期刊: CB
影响因子: --
作者: [Carruthers T]
通讯作者: Carruthers T
Heuristics, species, and the analysis of systematic data.
启发法、物种和系统数据分析。
DOI: 10.1016/j.tplants.2022.03.013
发表时间: 2022
期刊: Trends in plant science
影响因子: 20.5
作者: [Wells T]
通讯作者: Wells T
Rebuttal to "(2786) Proposal to change the conserved type of Ipomoea , nom. cons. (Convolvulaceae)"
反驳“(2786) 更改 Ipomoea 保守类型的提案,名义 cons.(旋花科)”
DOI: 10.1002/tax.12976
发表时间: 2023
期刊: TAXON
影响因子: 3.4
作者: [Muñoz-Rodríguez P]
通讯作者: Muñoz-Rodríguez P
7
    国内基金
    海外基金
    基于支链淀粉building blocks构建优质BE突变酶定向修饰淀粉调控机制的研究
    • 批准号:
      31771933
    • 项目类别:
      面上项目
    • 资助金额:
      60.0万元
    • 批准年份:
      2017
    • 负责人:
      郭丽
    • 依托单位: