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Molecular evolution of rice S_5~n and functional comparison among different sequences 被引量:2

Molecular evolution of rice S_5~n and functional comparison among different sequences
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摘要 The wide compatibility gene, S 5 n , can overcome embryo sac sterility between indica and japonica subspecies of rice. Therefore, it is very important to characterize the features of the S 5 n sequence to reveal the origin and evolution of S 5 n . In this paper, 26 cultivated rice haplotypes and 22 wild rice accessions harboring S 5 n were used to sequence S 5 n . The results showed that 15 genotypes among the 48 materials were fully consistent with control cultivar 02428 (CK). The other 33 accessions had different degrees of variation in the S 5 n sequence. Variations in the coding region mainly occurred in the second exon and eight materials showed a 10-bp deletion at 1710–1719 bp, including wild (O. nivara) and cultivated rice, such as IRW501 and Yuetai B. S 5 n sequences were not biased and evolved neutrally. The 48 materials could be divided into 4 categories using a phylogenetic tree of the amino acid sequences. Most of the wild rice clustered together, and the cultivated rice clustered into another group. Eight cultivated rice and O. nivara (wild rice) clustered in another group, which were found to lack 10 consecutive bases in exon 2. Eight rice varieties with high numbers of differences in their S 5 n coding regions were crossed with testers (typically indica and japonica) to produced test cross F 1 populations. The F 1 s were examined for their ability to overcome indica-japonica hybrid sterility. The result showed that the embryo sac fertility of S 5 n -containing hybrids increased significantly compared with control hybrids, but there were no differences among the materials with divergent sequences, indirectly proving that S 5 n is a non-functional gene. The wide compatibility gene, S5^n, can overcome embryo sac sterility between indica and japonica subspecies of rice. Therefore, it is very important to characterize the features of the S5^n sequence to reveal the origin and evolution of S5^n. In this paper, 26 cultivated rice haplotypes and 22 wild rice accessions harboring S5^n were used to sequence S5^n. The results showed that 15 genotypes among the 48 materials were fully consistent with control cultivar 02428 (CK). The other 33 accessions had different degrees of variation in the S5^n sequence. Variations in the coding region mainly occurred in the second exon and eight materials showed a 10-bp deletion at 1710-1719 bp, including wild (O. nivara) and cultivated rice, such as IRW501 and Yuetai B. S5^n sequences were not biased and evolved neutrally. The 48 materials could be divided into 4 categories using a phylogenetic tree of the amino acid sequences. Most of the wild rice clustered together, and the cultivated rice clustered into another group. Eight cultivated rice and O. nivara (wild rice) clustered in another group, which were found to lack 10 consecutive bases in exon 2. Eight rice varieties with high numbers of differences in their S5^n coding regions were crossed with testers (typically indica and japonica) to produced test cross F1 populations. The FlS were examined for their ability to overcome indica-japonica hybrid sterility. The result showed that the embryo sac fertility of S5^n-containing hybrids increased significantly compared with control hybrids, but there were no differences among the materials with divergent sequences, indirectly proving that S5^n is a non-functional gene.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2011年第19期2016-2024,共9页
基金 supported by the National Natural Science Foundation of China (30971756) National Natural Science Foundation of China-Joint Fund with Guangdong (U0631003)
关键词 氨基酸序列 水稻品种 分子进化 功能比较 杂种不育 广亲和基因 第二外显子 第2外显子 rice (Oryza sativa L.), hybrid sterility, Ssn, wide compatibility gene, O. ruvfipogon, O. nivara
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