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From the Cover: A triallelic system of S5 is a major regulator of the reproductive barrier and compatibility of indica–japonica hybrids in rice

机译:从封面开始:S5的三倍体系统是水稻rice粳杂交种的生殖屏障和相容性的主要调节剂

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摘要

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.
机译:杂种不育是合子后生殖分离的主要形式。尽管几十年来,生殖隔离一直是进化生物学在许多生物中的关键问题,但直到最近才发现了少数用于生殖隔离的基因。亚洲栽培稻(Oryza sativa L.)分为两个亚种:in稻和粳稻。 d稻和粳稻品种之间的杂种通常是高度不育的。一类特殊的水稻种质,被称为广泛兼容品种,当与crossed稻和粳稻杂交时能够产生高度可育的杂种。在这项研究中,我们使用基于图的克隆方法克隆了S5,这是for粳杂交和不育和广泛相容性的主要基因座。我们表明,S5编码天冬氨酸蛋白酶调节胚囊的繁殖力。 in(S5-i)和粳稻(S5-j)等位基因相差两个核苷酸。广泛相容性基因(S5-n)在预测的S5蛋白的N末端具有较大的缺失,导致该蛋白的亚细胞错位,因此推测是无功能的。这种三性系统对栽培稻的进化和人工育种具有深远的意义。由于 S5 -i和 S5 -j造成的繁殖障碍,in稻和 japonica 之间的遗传分化将得到加强,物种连贯性将得到加强。广泛相容性基因使基因流动得以维持。

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