The genomic landscape and the effect of linked selection during the repeated domestication of grain amaranth
The genomic landscape and the effect of linked selection during the repeated domestication of grain amaranth
批准号:
447506147
负责人:
Professor Dr. Markus Stetter
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:
中文摘要
植物种群不断适应环境。适应的来源是突变和重组。虽然点突变的适应性效应已被广泛研究,但重组的作用和基因组景观受到的关注较少。然而,最近的例子已经表明重组和染色质可及性对于适应性表型的重要性。染色质的可及性和重组率可以在适应过程中改变。因此,这些因素不仅影响适应性,而且可能通过选择来塑造自身。在种群基因组水平上,适应性塑造了整个基因组的多样性模式。由于连锁不平衡,不仅直接受选择影响的位点显示出减少的多样性,而且连锁的中性位点也显示出减少的多样性。连锁选择的范围是未知的,影响了对观察到的遗传多样性的解释。染色质可及性可以作为基因组功能部分的替代,以评估连锁选择的强度作为与开放染色质距离的函数。作物驯化是一种非常适合植物适应的模式,因为选定的性状是已知的,适应种群的祖先通常是已知的,并且仍然可用。籽粒苋已经从单一祖先独立驯化了三次,为研究作物驯化过程中重组和染色质可及性的重要性以及连锁选择的后果提供了理想的研究系统。我们将为这三种籽粒苋及其野生祖先构建独立的遗传图谱,以评估驯化过程中重组率的变化,大规模重组。这将为所有四个物种产生高质量的遗传图谱,并使我们能够绘制适应相关的表型。此外,我们将构建跨物种和组织的独立染色质可及性图,以深入了解开放染色质的稳定性。预计重组和染色质景观在驯化过程中发生变化,并可能在作物物种之间产生分歧。结合新产生的数据开放染色质作为代理的功能空间的基因组和物种特异性重组图与人口规模的遗传多样性估计,我们将研究连锁选择的模式在四个苋菜物种和驯化过程中的变化。我们将研究这些模式是否趋同发展,或者尽管它们有共同的祖先,但籽粒苋物种之间的信号是否不同。我们的研究结果将为基因组景观和作物进化之间的相互作用提供新的见解。
英文摘要
Plant populations constantly adapt to their environment. The sources for adaptation are mutations and recombination. While the adaptive effect of point mutations has been extensively studied, the role of recombination and the genomic landscape have received less attention. Yet, recent examples have shown the importance of recombination and chromatin accessibility for adaptive phenotypes. Chromatin accessibility and recombination rates can be altered during adaptation. Hence these factors not only influence adaptation but might themselves be shaped by selection.On the population genomic level, adaptation shapes the diversity pattern across the genome. As a result of linkage disequilibrium, not only sites directly affected by selection show reduced diversity, but also linked neutral sites. The extend of linked selection is vastly unknown and affects the interpretation of observed genetic diversity.Chromatin accessibility can be employed as proxy for the functional part of the genome, to evaluate the strength of linked selection as a function of the distance from open chromatin. Crop domestication is a well-suited model for plant adaptation, because selected traits are known, and the ancestors of the adapted populations are often known and still available. Grain amaranth has been domesticated three times independently from a single ancestor and provides an ideal study system to study the importance of recombination and chromatin accessibility during crop domestication, and the consequences on linked selection.In this project, we will construct independent genetic maps for each of the three grain amaranth species and their wild ancestor to evaluate the change in recombination rates during domestication and to identify large scale rearrangements. This will yield high quality genetic maps for all four species and allow us to map adaptation related phenotypes. Furthermore, we will construct independent chromatin accessibility maps across species and tissues to gain insights into the stability of open chromatin. It is expected that recombination and chromatin landscapes are altered during domestication and potentially diverged between crop species. Combining the newly generated data of open chromatin as proxy for functional space in the genome and species-specific recombination maps with population scale genetic diversity estimates, we will study the patterns of linked selection in the four amaranth species and their change during domestication. We will study if these patterns evolve convergently or if the signals differ between grain amaranth species, despite their common ancestry. Our results will give new insights into the interplay between the genomic landscape and crop evolution.
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会议论文
Domestication as a process: modeling demography and selection in maize using ancient DNA
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批准号:389693117
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项目类别:Research Fellowships
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资助金额:$0.0万
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财政年份:2017
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负责人:Professor Dr. Markus Stetter
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依托单位:
The genetic control of morphological and ionomic adaptation during the colonisation of India by grain amaranth
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批准号:445916695
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:--
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负责人:Professor Dr. Markus Stetter
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依托单位:
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