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糯稻品种蜡质基因单核苷酸多态性的鉴定及其在水稻驯化过程中的进化意义

Identification of SNPs in the waxy gene among glutinous rice cultivars and their evolutionary significance during the domestication process of rice.

作者信息

Yamanaka Shinsuke, Nakamura Ikuo, Watanabe Kazuo N, Sato Yo-Ichiro

机构信息

Gene Research Center, Institute of Biological Sciences, University of Tsukuba, Tennodai 1-1-1, 305-8572 Tsukuba, Japan.

出版信息

Theor Appl Genet. 2004 May;108(7):1200-4. doi: 10.1007/s00122-003-1564-x. Epub 2004 Jan 22.

Abstract

Common non-waxy ( Wx) rice cultivars contain two different alleles at the waxy locus, designated Wx(a) and Wx(b), which encode different levels of granule-bound starch synthases and are hence involved in the control of endosperm amylose content. The Wx(a) allele was predominant in non-waxy indica cultivars, whereas the Wx(b) allele was common to the non-waxy japonica variety. Recently, some of the molecular mechanisms underlying the differentiation of Wx(a) from Wx(b) have been characterized. One structural difference between these two alleles was shown to be due to alternative splicing caused by a single-base substitution (AG GT to AG TT) at a donor site of the first intron within the Wx gene. In the case of waxy ( wx) rice, it was not possible to distinguish whether the each wx allele was derived from Wx(a) or Wx(b) alleles by phenotypic analysis. However, we succeeded in developing a derived cleaved amplified polymorphic sequence (dCAPS) marker for the detection of the one-base splicing mutation without the need for sequencing. A mismatch primer was used to generate a restriction site in the Wx(a) allele (AGGT) but not in the Wx(b) allele (AGTT). Three hundred fifty-three waxy rice strains that are widely found in Asia were then employed for analysis using this dCAPS marker. Our findings suggested that waxy rice strains have both Wx(a)- and Wx(b)-derived alleles, but that the Wx(b)-derived allele was predominant, and its distribution was independent of indica- japonica differentiation. The wild relatives of cultivated rice all possessed the AGGT allele. It was concluded that the waxy mutations, and the corresponding rice cultivation, originated from japonica during the evolution and domestication process of rice and was preferentially selected by most Asian peoples.

摘要

常见的非糯性(Wx)水稻品种在蜡质基因座上含有两个不同的等位基因,分别命名为Wx(a)和Wx(b),它们编码不同水平的颗粒结合淀粉合成酶,因此参与胚乳直链淀粉含量的控制。Wx(a)等位基因在非糯性籼稻品种中占主导地位,而Wx(b)等位基因在非糯性粳稻品种中较为常见。最近,已经阐明了Wx(a)与Wx(b)分化的一些分子机制。这两个等位基因之间的一个结构差异被证明是由于Wx基因第一个内含子供体位点的单碱基替换(AG GT变为AG TT)导致的可变剪接。对于糯性(wx)水稻,通过表型分析无法区分每个wx等位基因是源自Wx(a)还是Wx(b)等位基因。然而,我们成功开发了一种衍生的酶切扩增多态性序列(dCAPS)标记,用于检测单碱基剪接突变,无需测序。使用错配引物在Wx(a)等位基因(AGGT)中产生一个限制性位点,但在Wx(b)等位基因(AGTT)中不产生。然后使用这个dCAPS标记对在亚洲广泛发现的353个糯稻品系进行分析。我们的研究结果表明,糯稻品系同时具有源自Wx(a)和Wx(b)的等位基因,但源自Wx(b)的等位基因占主导地位,其分布与籼粳分化无关。栽培稻的野生近缘种都拥有AGGT等位基因。得出的结论是,糯性突变以及相应的水稻栽培在水稻的进化和驯化过程中起源于粳稻,并被大多数亚洲人优先选择。

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