中国梨两个新的自交不亲和等位基因(s -等位基因)的分子鉴定。

植物生理与分子生物学学报 Pub Date : 2007-02-01
Xiao-Feng Tan, Lin Zhang, Ta-Na Wuyun, De-Yi Yuan, Yu-Fen Cao, Ao-Fang Jiang, Wen-Jie Liang, Yan-Ling Zeng
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引用次数: 0

摘要

自交不亲和是开花植物种内重要的生殖屏障。为鉴定中国梨(Pyrus pyrifolia、P. bretschneideri、P. ussuriensis和P. sinkiangenis等)的s等位基因,采用s - rnase特异性PCR扩增、序列分析和田间传粉试验,以梨(P. bretschneideri)的两个栽培品种‘Jingxiang’和‘Esu’为材料。从两个品种中鉴定出两个新的S-RNase基因。序列长度分别为1122 bp和1058 bp,编码为S37-RNase (GenBank登录号)。DQ839238)和S38-RNase (GenBank登录号:DQ839239)。通过与东方梨s1 ~ s36等位基因的氨基酸序列比较,可以看出,这两个新s等位基因都有其保守区C1和C2,但它们的高变区(HV)与其他s等位基因有很大不同。S37与S38的氨基酸序列相似性较高(96%),与S15的相似性最高(98%),与S32的相似性最低(63%)。两个s等位基因的内含子长度分别为786 bp和723 bp,与S15的内含子长度(777 bp)相似。最后,确定‘金香’和‘Esu’的s基因型分别为S34S37和S15S38。
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Molecular identification of two new self-incompatible alleles (S-alleles) in Chinese pear (Pyrus bretschneideri).

Self-incompatibility (SI) is an important intraspecific reproductive barrier in flowering plants. To identify the S-alleles of Chinese pear species (Pyrus pyrifolia, P. bretschneideri, P. ussuriensis and P. sinkiangenis etc.), S-RNase-specific PCR amplification, sequence analyses and field pollination tests were performed using two cultivars 'Jingxiang' and 'Esu' of P. bretschneideri as materials. Two new S-RNase genes were identified from the two cultivars. They were 1,122 bp and 1,058 bp in length, and designated as S37-RNase (GenBank accession no. DQ839238) and S38-RNase (GenBank accession no. DQ839239). By comparison of their deduced amino acid sequences with those of S1-to S36-alleles of Oriental pear, it can be seen that both the two new S-alleles had their conserved regions C1 and C2, but their hypervariable regions (HV) were quite different from those of the others. S37 showed a higher similarity (96%) to S38 in the amino acid sequences deduced from them, whereas both of them displayed the highest similarity (98%) to S15 and the lowest (63%) to S32. The two S-alleles had introns of 786 bp and 723 bp, respectively, similar in size to that of S15 (777 bp). Finally, the S-genotypes of 'Jinxiang' and 'Esu' were unambiguously determined as S34S37 and S15S38, respectively.

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