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大片单倍型块是入侵杂草豚草快速适应的基础。

Large haploblocks underlie rapid adaptation in the invasive weed Ambrosia artemisiifolia.

机构信息

School of Biological Sciences, Monash University, Melbourne, Victoria, Australia.

Department of Natural History, NTNU University Museum, Norwegian University of Science and Technology (NTNU), Trondheim, Norway.

出版信息

Nat Commun. 2023 Mar 27;14(1):1717. doi: 10.1038/s41467-023-37303-4.

Abstract

Adaptation is the central feature and leading explanation for the evolutionary diversification of life. Adaptation is also notoriously difficult to study in nature, owing to its complexity and logistically prohibitive timescale. Here, we leverage extensive contemporary and historical collections of Ambrosia artemisiifolia-an aggressively invasive weed and primary cause of pollen-induced hayfever-to track the phenotypic and genetic causes of recent local adaptation across its native and invasive ranges in North America and Europe, respectively. Large haploblocks-indicative of chromosomal inversions-contain a disproportionate share (26%) of genomic regions conferring parallel adaptation to local climates between ranges, are associated with rapidly adapting traits, and exhibit dramatic frequency shifts over space and time. These results highlight the importance of large-effect standing variants in rapid adaptation, which have been critical to A. artemisiifolia's global spread across vast climatic gradients.

摘要

适应是生命进化多样化的核心特征和主要解释。由于其复杂性和在时间和空间上的巨大挑战性,适应也很难在自然界中进行研究。在这里,我们利用广泛的 Ambrosia artemisiifolia 的当代和历史收藏 - 一种具有侵略性的入侵杂草,也是花粉引起干草热的主要原因 - 分别追踪其在北美的本土和入侵范围以及在欧洲的表型和遗传原因。大型单倍体块 - 表明染色体倒位 - 包含不成比例的基因组区域(26%),这些区域赋予了对范围之间局部气候的平行适应,与快速适应的特征相关,并在空间和时间上表现出剧烈的频率变化。这些结果强调了大效等位基因在快速适应中的重要性,这对于 A. artemisiifolia 在广阔的气候梯度上的全球传播至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf09/10042993/36353e386944/41467_2023_37303_Fig1_HTML.jpg

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