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辐射松微卫星的发生与遗传

Occurrence and inheritance of microsatellites in Pinus radiata.

作者信息

Smith D, Devey M E

机构信息

Commonwealth Scientific and Industrial Research Organisation, Division of Forestry, Australian Capital Territory.

出版信息

Genome. 1994 Dec;37(6):977-83. doi: 10.1139/g94-138.

Abstract

Microsatellites are an important class of DNA marker because of their abundance and length hypervariability. As part of a project mapping the Pinus radiata genome, we have characterized some of the microsatellites in this species. Southern blots were screened with oligonucleotide probes [(CA)10, (GA)10, (GAA)9, (CAA)8, (CAC)5, (GACA)4] to assess their abundance. CA and GA were the most abundant microsatellites, while GAA was least abundant. A genomic library in lambda ZAP, covering 9 x 10(4) kb, was screened with a combined poly(CA) + poly(GA) probe and yielded 120 positives, approximately one CA or GA microsatellite every 750 kb of the P. radiata genome. It was found that 25% of the positives were embedded within highly repetitive DNA. Four of the five subclones sequenced contained compound microsatellites, with TA predominating as the additional repeat. Segregation analysis of PCR products for two microsatellites, PR4.6 and PR9.3, in 96 progeny of a controlled outcross verified simple Mendelian inheritance. Both loci are highly polymorphic with Polymorphism Information Content values of 0.63 and 0.70 for PR4.6 and PR9.3, respectively. These results indicate that microsatellites are abundant in a conifer genome and can be valuable markers for pine mapping, fingerprinting, and population genetic studies.

摘要

微卫星是一类重要的DNA标记,因其丰富性和长度高变异性。作为辐射松基因组图谱绘制项目的一部分,我们对该物种的一些微卫星进行了特征分析。用寡核苷酸探针[(CA)10、(GA)10、(GAA)9、(CAA)8、(CAC)5、(GACA)4]对Southern印迹进行筛选,以评估它们的丰度。CA和GA是最丰富的微卫星,而GAA最不丰富。用聚(CA)+聚(GA)组合探针筛选了一个覆盖9×10⁴ kb的λZAP基因组文库,得到120个阳性克隆,辐射松基因组每750 kb大约有一个CA或GA微卫星。发现25%的阳性克隆嵌入高度重复DNA中。测序的五个亚克隆中有四个包含复合微卫星,其中TA作为额外重复序列占主导。对两个微卫星PR4.6和PR9.3的PCR产物在96个控制杂交后代中的分离分析验证了简单的孟德尔遗传。两个位点都具有高度多态性,PR4.6和PR9.3的多态信息含量值分别为0.63和0.70。这些结果表明微卫星在针叶树基因组中丰富,并且可以成为松树图谱绘制、指纹识别和群体遗传学研究中有价值的标记。

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