A tripartite genetic conflict system controls hybrid sterility in rice
Xiaodong He, Zhigang Zhao, Kun Shao, Xiaowen Yu, Ying Zhu, Ying Zhu, Jintao Tang, Jing Li 等 51 位
Nanjing Agricultural University South China Botanical Garden South China Agricultural University Yunnan Academy of Agricultural Sciences
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摘要与影响
Interspecific Asian–African hybrid rice could substantially boost yield but is limited by severe hybrid sterility. We identify RHS3 as a major quantitative trait locus controlling this trait. RHS3 encodes a tripartite toxin–antidote system composed of MAO, DUN, and JIA, in which MAO acts as a toxin that aborts gametes by disrupting mitochondrial function, whereas DUN and JIA function as antidotes that neutralize MAO toxicity, conferring a transmission advantage to the African allele. We demonstrate that detoxification relies on selective autophagy through formation of a tripartite JIA–DUN–MAO protein complex. We infer the de novo origin of RHS3 in the AA-genome rice lineage, illustrating a role for genetic conflict in speciation and suggesting strategies to harness heterosis between Asian and African rice.
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