Mutation accumulation opposes polymorphism: supergenes and the curious case of balanced lethals.

IF 4.5 2区 管理学 Q1 BUSINESS
Emma L Berdan, Alexandre Blanckaert, Roger K Butlin, Thomas Flatt, Tanja Slotte, Ben Wielstra
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引用次数: 0

Abstract

Supergenes offer spectacular examples of long-term balancing selection in nature, but their origin and maintenance remain a mystery. Reduced recombination between arrangements, a critical aspect of many supergenes, protects adaptive multi-trait phenotypes but can lead to mutation accumulation. Mutation accumulation can stabilize the system through the emergence of associative overdominance (AOD), destabilize the system, or lead to new evolutionary outcomes. One outcome is the formation of maladaptive balanced lethal systems, where only heterozygotes remain viable and reproduce. We investigated the conditions under which these different outcomes occur, assuming a scenario of introgression after divergence. We found that AOD aided the invasion of a new supergene arrangement and the establishment of a polymorphism. However, this polymorphism was easily destabilized by further mutation accumulation, which was often asymmetric, disrupting the quasi-equilibrium state. Mechanisms that accelerated degeneration tended to amplify asymmetric mutation accumulation between the supergene arrangements and vice-versa. As the evolution of balanced lethal systems requires symmetric degeneration of both arrangements, this leaves only restricted conditions for their evolution, namely small population sizes and low rates of gene conversion. The dichotomy between the persistence of polymorphism and degeneration of supergene arrangements likely underlies the rarity of balanced lethal systems in nature. This article is part of the theme issue 'Genomic architecture of supergenes: causes and evolutionary consequences'.

突变积累与多态性对立:超级基因与平衡致死基因的奇特案例。
超级基因是自然界中长期平衡选择的杰出范例,但其起源和维持仍是一个谜。减少排列间的重组是许多超级基因的一个重要方面,它可以保护适应性多性状表型,但也可能导致突变积累。突变积累可以通过出现关联优势(AOD)来稳定系统,也可以破坏系统的稳定,或导致新的进化结果。其中一种结果是形成适应不良的平衡致死系统,在这种系统中,只有杂合子才能保持存活和繁殖。我们研究了在什么条件下会出现这些不同的结果,并假定了分化后的引种情况。我们发现,AOD 有助于新的超级基因排列的入侵和多态性的建立。然而,这种多态性很容易被进一步的突变积累所破坏,而突变积累往往是不对称的,从而破坏了准平衡状态。加速退化的机制往往会扩大超级基因排列之间的非对称突变积累,反之亦然。由于平衡致死系统的进化需要两种排列的对称退化,这就为其进化留下了有限的条件,即种群规模小和基因转换率低。多态性的持续存在与超级基因排列的退化之间的对立可能是平衡致死系统在自然界中罕见的原因。本文是 "超级基因的基因组结构:成因与进化后果 "专题的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
10.20
自引率
16.40%
发文量
94
期刊介绍: The International Journal of Entrepreneurial Behavior & Research (IJEBR) has a unique focus on publishing original research related to the human and social dynamics of entrepreneurship, and entrepreneurial management in small and growing organizations. The journal has an international perspective on entrepreneurship and publishes conceptual papers and empirical studies which bring together issues of interest to academic researchers and educators, policy-makers and practitioners worldwide.The editorial team encourages high-quality submissions which advance the study of human and behavioural dimensions of entrepreneurship and smaller organizations. Examples of topics which illustrate the scope of the journal are provided below. Topicality Nascent entrepreneurship and new venture creation Management development and learning in smaller businesses Enterprise and entrepreneurship education, learning and careers Entrepreneurial psychology and cognition Management and transition in smaller, growing and family-owned enterprises Corporate entrepreneurship and venturing Entrepreneurial teams, management and organizations Social, sustainable and informal entrepreneurship National and international policy, historical and cultural studies in entrepreneurship Gender, minority and ethnic entrepreneurship Innovative research methods and theoretical development in entrepreneurship Resourcing and managing innovation in entrepreneurial ventures.
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