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引用本文:王茜,安利佳,杨君,苏乔,王宏伟,康晓慧.蜈蚣藻和管形藻的RAPD分析.海洋与湖沼,2000,31(5):506-510.
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蜈蚣藻和管形藻的RAPD分析
王茜1, 安利佳1, 杨君1, 苏乔1, 王宏伟1, 康晓慧2
1.大连理工大学生物工程系 大连116012;2.大连医科大学丹东分院 丹东118002
摘要:
于1997年9月在大连石庙海区分株采集蜈蚣藻、管形藻和舌状蜈蚣藻,采用RAPD技术在分子水平上对属于红藻门的两种藻类—蜈蚣藻和管形藻进行了分析。所试60个引物中,有21个经扩增得到了120个多态片段。应用PHYLIP软件,按照UPGMA和Neighbor-Joining(N-J)法分别构建聚类图。分析结果表明,RAPD多态性提示蜈蚣藻和管形藻差异较大,应为两个不同的属。
关键词:  蜈蚣藻  管形藻  分类  RAPD
DOI:10.11693/hyhz200005008008
分类号:
基金项目:辽宁省优秀青年科研人才培养基金资助项目,963005号
附件
RAPD ANALYSIS OF GRATELOUPIA FILICINA AND SINOYUBIMORPHA PORRACEA
WANG Qian1, AN Li-jia1, YANG Jun1, SU Qiao1, WANG Hong-wei1, KANG Xiao-hui2
1.Department of Biological Engineering, Dalian University of Technology, Dalian116012;2.Dalian Medical University Dandong Branch, Dandong118002
Abstract:
Randomly amplified polymorphic DNA (RAPD) was used to study Grateloupia filicina and Sinoyubimorpha porracea (Rhodophyta), in terms of the molecular systematics. Amplification with 60 random primers was made under predetermined optimal reaction (samples were first heated at 95°C for 10 min., and followed by 45 cycles of 60 sec at 94°C, 100 sec at 36°C, and 160 sec at 72°C, then held at 72°C for 10 min after 45 cycles). 21of the 60 random primers tested were positive, generating a total of 120 prominent amplification products. The amplified fragments were scored as present (1) or absent (0) for each DNA sample and an index of degree of band sharing (S) was calculated by using Nei and Li’s matching coefficient method. The value of (1–S) was used to evaluate genetic distances between species. The dendrograms were built based on UPG-MA and Neighbor-Joining analysis of genetic distance matrix data. The result suggests that RAPD is useful in distinguishing G. filicina from S. porracea and that G. filicina and S. porracea may belong to different genera.
Key words:  Grateloupia filicina, Sinoyubimorpha porracea, Classification, RAPD
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