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Unraveling cis and trans regulatory evolution during cotton domestication

Ying BaoSchool of Life Sciences, Qufu Normal University, 273165, Qufu, Shandong Province, China. [email protected]Guanjing HuDepartment of Ecology, Evolution and Organismal Biology, Iowa State University, Ames, IA, 50011, USACorrinne E. GroverDepartment of Ecology, Evolution and Organismal Biology, Iowa State University, Ames, IA, 50011, USAJustin L. ConoverDepartment of Ecology, Evolution and Organismal Biology, Iowa State University, Ames, IA, 50011, USADaojun YuanDepartment of Ecology, Evolution and Organismal Biology, Iowa State University, Ames, IA, 50011, USAJonathan F. WendelDepartment of Ecology, Evolution and Organismal Biology, Iowa State University, Ames, IA, 50011, USA. [email protected]
2019en
ABI

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Abstract Cis and trans regulatory divergence underlies phenotypic and evolutionary diversification. Relatively little is understood about the complexity of regulatory evolution accompanying crop domestication, particularly for polyploid plants. Here, we compare the fiber transcriptomes between wild and domesticated cotton ( Gossypium hirsutum ) and their reciprocal F 1 hybrids, revealing genome-wide (~15%) and often compensatory cis and trans regulatory changes under divergence and domestication. The high level of trans evolution (54%–64%) observed is likely enabled by genomic redundancy following polyploidy. Our results reveal that regulatory variation is significantly associated with sequence evolution, inheritance of parental expression patterns, co-expression gene network properties, and genomic loci responsible for domestication traits. With respect to regulatory evolution, the two subgenomes of allotetraploid cotton are often uncoupled. Overall, our work underscores the complexity of regulatory evolution during fiber domestication and may facilitate new approaches for improving cotton and other polyploid plants.

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