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基于扩增片段长度多态性(AFLP)的太平洋牡蛎(Crassostrea gigas Thunberg)遗传连锁图谱。

AFLP-based genetic linkage maps of the pacific oyster Crassostrea gigas Thunberg.

作者信息

Li Li, Guo Ximing

机构信息

Haskin Shellfish Research Laboratory, Institute of Coastal and Marine Sciences, Rutgers University, 6959 Miller Avenue, Port Norris, NJ 08349, USA.

出版信息

Mar Biotechnol (NY). 2004 Jan-Feb;6(1):26-36. doi: 10.1007/s10126-003-0001-0. Epub 2003 Oct 20.

Abstract

Amplified fragment length polymorphisms (AFLPs) were used for genome mapping in the Pacific oyster Crassostrea gigas Thunberg. Seventeen selected primer combinations produced 1106 peaks, of which 384 (34.7%) were polymorphic in a backcross family. Among the polymorphic markers, 349 were segregating through either the female or the male parent. Chi -square analysis indicated that 255 (73.1%) of the markers segregated in a Mendelian ratio, and 94 (26.9%) showed significant ( P < 0.05) segregation distortion. Separate genetic linkage maps were constructed for the female and male parents. The female framework map consisted of 119 markers in 11 linkage groups, spanning 1030.7 cM, with an average interval of 9.5 cM per marker. The male map contained 96 markers in 10 linkage groups, covering 758.4 cM, with 8.8 cM per marker. The estimated genome length of the Pacific oyster was 1258 cM for the female and 933 cM for the male, and the observed coverage was 82.0% for the female map and 81.3% for the male map. Most distorted markers were deficient for homozygotes and closely linked to each other on the genetic map, suggesting the presence of major recessive deleterious genes in the Pacific oyster.

摘要

扩增片段长度多态性(AFLP)被用于太平洋牡蛎(Crassostrea gigas Thunberg)的基因组图谱构建。17个选定的引物组合产生了1106个峰,其中384个(34.7%)在一个回交家系中具有多态性。在多态性标记中,349个通过雌性或雄性亲本进行分离。卡方分析表明,255个(73.1%)标记以孟德尔比例分离,94个(26.9%)显示出显著(P < 0.05)的分离畸变。分别为雌性和雄性亲本构建了遗传连锁图谱。雌性框架图谱由11个连锁群中的119个标记组成,跨度为1030.7 cM,每个标记的平均间隔为9.5 cM。雄性图谱包含10个连锁群中的96个标记,覆盖758.4 cM,每个标记为8.8 cM。太平洋牡蛎的估计基因组长度雌性为1258 cM,雄性为933 cM,雌性图谱的观察覆盖率为82.0%,雄性图谱为81.3%。大多数畸变标记纯合子缺失,并且在遗传图谱上彼此紧密连锁,这表明太平洋牡蛎中存在主要的隐性有害基因。

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