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著者 Chen,J., Ding,J., Ouyang,Y., Du,H., Yang,J., Cheng,K., Zhao,J., Qiu,S., Zhang,X., Yao,J., Liu,K., Wang,L., Xu,C., Li,X., Xue,Y., Xia,M., Ji,Q., Lu,J., Xu,M. and Zhang,Q.
タイトル A triallelic system of S5 is a major regulator of the reproductive barrier and compatibility of indica-japonica hybrids in rice
Abstract:
Hybrid sterility is a major form of postzygotic reproductive isolation. Although reproductive isolation has been a key issue in evolutionary biology for many decades in a wide range of organisms, only very recently a few genes for reproductive isolation were identified. The Asian cultivated rice (Oryza sativa L.) is divided into two subspecies, indica and japonica. Hybrids between indica and japonica varieties are usually highly sterile. A special group of rice germplasm, referred to as wide-compatibility varieties, is able to produce highly fertile hybrids when crossed to both indica and japonica. In this study, we cloned S5, a major locus for indica-japonica hybrid sterility and wide compatibility, using a map-based cloning approach. We show that S5 encodes an aspartic protease conditioning embryo-sac fertility. The indica (S5-i) and japonica (S5-j) alleles differ by two nucleotides. The wide compatibility gene (S5-n) has a large deletion in the N terminus of the predicted S5 protein, causing subcellular mislocalization of the protein, and thus is presumably nonfunctional. This triallelic system has a profound implication in the evolution and artificial breeding of cultivated rice. Genetic differentiation between indica and japonica would have been enforced because of the reproductive barrier caused by S5-i and S5-j, and species coherence would have been maintained by gene flow enabled by the wide compatibility gene.
掲載誌 Proc. Natl. Acad. Sci. U.S.A.
Country China
刊数 105(32)
ページ 11436-11441
発刊年 2008
PubMed ID 18678896
PubMed Central ID -
DOI 10.1073/pnas.0804761105
URL -
関連情報
遺伝子 S5
INSD EU889293 EU889294 EU889295
系統 野生イネ
コアコレクション
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突然変異系統(遺伝研 Collection) -
種子不稔系統 -
致死変異体系統 -
組織別発生段階
- 突然変異系統(遺伝子)
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栽培イネ品種(遺伝研 Collection) -
組織別発生段階 -
/rice/oryzabase