Genetic Control of a Transition from Black to Straw-White Seed Hull in Rice Domestication

Author:

Zhu Bo-Feng1,Si Lizhen1,Wang Zixuan1,Jingjie Zhu Yan Zhou1,Shangguan Yingying1,Lu Danfeng1,Fan Danlin1,Li Canyang1,Lin Hongxuan1,Qian Qian1,Sang Tao1,Zhou Bo1,Minobe Yuzo1,Han Bin1

Affiliation:

1. National Center for Gene Research and Institute of Plant Physiology and Ecology (B.-F.Z., L.S., Y.Z., J.Z., Y.S., D.L., D.F., C.L., B.H.) and State Key Laboratory of Plant Molecular Genetics and Institute of Plant Physiology and Ecology (H.L.), Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200233, China; Plant Genome Center, Ibaraki 305–0856, Japan (Z.W., Y.M.

Abstract

Abstract The genetic mechanism involved in a transition from the black-colored seed hull of the ancestral wild rice (Oryza rufipogon and Oryza nivara) to the straw-white seed hull of cultivated rice (Oryza sativa) during grain ripening remains unknown. We report that the black hull of O. rufipogon was controlled by the Black hull4 (Bh4) gene, which was fine-mapped to an 8.8-kb region on rice chromosome 4 using a cross between O. rufipogon W1943 (black hull) and O. sativa indica cv Guangluai 4 (straw-white hull). Bh4 encodes an amino acid transporter. A 22-bp deletion within exon 3 of the bh4 variant disrupted the Bh4 function, leading to the straw-white hull in cultivated rice. Transgenic study indicated that Bh4 could restore the black pigment on hulls in cv Guangluai 4 and Kasalath. Bh4 sequence alignment of all taxa with the outgroup Oryza barthii showed that the wild rice maintained comparable levels of nucleotide diversity that were about 70 times higher than those in the cultivated rice. The results from the maximum likelihood Hudson-Kreitman-Aguade test suggested that the significant reduction in nucleotide diversity in rice cultivars could be caused by artificial selection. We propose that the straw-white hull was selected as an important visual phenotype of nonshattered grains during rice domestication.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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