Kapheim Karen M, Jones Beryl M, Pan Hailin, Li Cai, Harpur Brock A, Kent Clement F, Zayed Amro, Ioannidis Panagiotis, Waterhouse Robert M, Kingwell Callum, Stolle Eckart, Avalos Arián, Zhang Guojie, McMillan W Owen, Wcislo William T
Department of Biology, Utah State University, Logan, UT 84322;
Smithsonian Tropical Research Institute, 0843-03092 Panama City, Republic of Panama.
Proc Natl Acad Sci U S A. 2020 Jun 16;117(24):13615-13625. doi: 10.1073/pnas.2000344117. Epub 2020 May 29.
Developmental plasticity generates phenotypic variation, but how it contributes to evolutionary change is unclear. Phenotypes of individuals in caste-based (eusocial) societies are particularly sensitive to developmental processes, and the evolutionary origins of eusociality may be rooted in developmental plasticity of ancestral forms. We used an integrative genomics approach to evaluate the relationships among developmental plasticity, molecular evolution, and social behavior in a bee species () that expresses flexible sociality, and thus provides a window into the factors that may have been important at the evolutionary origins of eusociality. We find that differences in social behavior are derived from genes that also regulate sex differentiation and metamorphosis. Positive selection on social traits is influenced by the function of these genes in development. We further identify evidence that social polyphenisms may become encoded in the genome via genetic changes in regulatory regions, specifically in transcription factor binding sites. Taken together, our results provide evidence that developmental plasticity provides the substrate for evolutionary novelty and shapes the selective landscape for molecular evolution in a major evolutionary innovation: Eusociality.
发育可塑性会产生表型变异,但它如何促进进化变化尚不清楚。基于等级制度(群居)的社会中个体的表型对发育过程尤为敏感,群居性的进化起源可能根植于祖先形态的发育可塑性。我们采用了一种综合基因组学方法来评估一种表现出灵活社会性的蜜蜂物种()的发育可塑性、分子进化和社会行为之间的关系,从而为群居性进化起源中可能重要的因素提供了一个窗口。我们发现社会行为的差异源自那些也调控性别分化和变态发育的基因。对社会性状的正选择受到这些基因在发育过程中功能的影响。我们进一步发现证据表明,社会多型性可能通过调控区域的基因变化,特别是转录因子结合位点的基因变化,而被编码到基因组中。综上所述,我们的结果提供了证据,证明发育可塑性为进化新奇性提供了基础,并塑造了一项重大进化创新——群居性中分子进化的选择格局。