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2
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本文引用的文献

1
A Synthesis of Game Theory and Quantitative Genetic Models of Social Evolution.博弈论与社会进化的数量遗传模型综合
J Hered. 2022 Feb 17;113(1):109-119. doi: 10.1093/jhered/esab064.
2
Stride-level analysis of mouse open field behavior using deep-learning-based pose estimation.基于深度学习的姿势估计算法对小鼠旷场行为进行步伐水平分析。
Cell Rep. 2022 Jan 11;38(2):110231. doi: 10.1016/j.celrep.2021.110231.
3
Mitochondria as environments for the nuclear genome in Drosophila: mitonuclear G×G×E.果蝇中核基因组的线粒体环境: 线粒体-核基因组-环境互作。
J Hered. 2022 Feb 17;113(1):37-47. doi: 10.1093/jhered/esab066.
4
Phenotypic Assortment Changes the Landscape of Selection.表型分类改变了选择的格局。
J Hered. 2022 Feb 17;113(1):91-101. doi: 10.1093/jhered/esab062.
5
Maternal-Offspring Interactions: Reciprocally Coevolving Social Environments.母婴互动:互惠进化的社会环境。
J Hered. 2022 Feb 17;113(1):54-60. doi: 10.1093/jhered/esab044.
6
Social Selection and the Evolution of Maladaptation.社会选择与适应不良的进化
J Hered. 2022 Feb 17;113(1):61-68. doi: 10.1093/jhered/esab061.
7
When is Offspring Viability Fitness a Measure of Paternal Fitness and When is it not?后代生存力适合度何时是父代生存力适合度的衡量标准,何时又不是?
J Hered. 2022 Feb 17;113(1):48-53. doi: 10.1093/jhered/esab055.
8
The Indirect Genetic Effect Interaction Coefficient ψ: Theoretically Essential and Empirically Neglected.间接遗传效应交互作用系数 ψ:理论上必不可少但经验上被忽视。
J Hered. 2022 Feb 17;113(1):79-90. doi: 10.1093/jhered/esab056.
9
Social Effects on Annual Fitness in Red Squirrels.红松鼠年度适应能力的社会影响。
J Hered. 2022 Feb 17;113(1):69-78. doi: 10.1093/jhered/esab051.
10
The Collective Behavior of Ant Groups Depends on Group Genotypic Composition.蚁群的集体行为取决于群体的基因型组成。
J Hered. 2022 Feb 17;113(1):102-108. doi: 10.1093/jhered/esab045.

间接遗传效应:跨学科视角下的实证研究综述。

Indirect Genetic Effects: A Cross-disciplinary Perspective on Empirical Studies.

机构信息

Centre for Genomic Regulation (CRG), The Barcelona Institute of Science and Technology, Barcelona, Spain.

the Universitat Pompeu Fabra (UPF), Barcelona,Spain.

出版信息

J Hered. 2022 Feb 17;113(1):1-15. doi: 10.1093/jhered/esab059.

DOI:10.1093/jhered/esab059
PMID:34643239
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8851665/
Abstract

Indirect genetic effects (IGE) occur when an individual's phenotype is influenced by genetic variation in conspecifics. Opportunities for IGE are ubiquitous, and, when present, IGE have profound implications for behavioral, evolutionary, agricultural, and biomedical genetics. Despite their importance, the empirical study of IGE lags behind the development of theory. In large part, this lag can be attributed to the fact that measuring IGE, and deconvoluting them from the direct genetic effects of an individual's own genotype, is subject to many potential pitfalls. In this Perspective, we describe current challenges that empiricists across all disciplines will encounter in measuring and understanding IGE. Using ideas and examples spanning evolutionary, agricultural, and biomedical genetics, we also describe potential solutions to these challenges, focusing on opportunities provided by recent advances in genomic, monitoring, and phenotyping technologies. We hope that this cross-disciplinary assessment will advance the goal of understanding the pervasive effects of conspecific interactions in biology.

摘要

当个体的表型受到同种个体遗传变异的影响时,就会产生间接遗传效应(IGE)。IGE 的机会无处不在,而且,当存在时,IGE 对行为、进化、农业和生物医学遗传学具有深远的影响。尽管它们很重要,但 IGE 的实证研究落后于理论的发展。在很大程度上,这种滞后可以归因于这样一个事实,即测量 IGE 并将其与个体自身基因型的直接遗传效应区分开来,存在许多潜在的陷阱。在本观点中,我们描述了所有学科的经验主义者在测量和理解 IGE 时将遇到的当前挑战。我们使用跨越进化、农业和生物医学遗传学的思想和例子,还描述了这些挑战的潜在解决方案,重点关注基因组学、监测和表型分析技术的最新进展所提供的机会。我们希望这种跨学科的评估将推进理解生物中同种相互作用普遍影响的目标。