Effect of population size on genetic variation levels in Capparis spinosa (Capparaceae) detected by RAPDs

Q3 Agricultural and Biological Sciences Eurasian Journal of Biosciences Pub Date : 2012-07-01 DOI:10.5053/EJOBIOS.2012.6.0.8
H. Nosrati, M. Feizi, M. Mazinani, A. R. Haghighi
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引用次数: 20

Abstract

Background: The population size of plants affects on population genetic variation. Materials and Methods: We studied the impact of population size on genetic variation in populations of Capparis spinosa (caper, Capparaceae) using RAPDs in East Azerbaijan (Iran). Withinpopulation genetic diversity was estimated based on Nei's and Shannon's diversity using Popgen, and genetic similarity among the populations was studied from a UPGMA dendrogram based the matrix of Nei's distances obtained through SHAN. Difference in the level genetic variation between small-sized and large-sized populations was tested using Mann-Whitney U test, and correlation between geographical and genetic distances among populations was examined by Pearson test (SPSS, 11.3). Total genetic variation was partitioned into within and among populations based on AMOVA using Arlequin. Results: The polymorphism levels of RAPDs bands among the populations ranged from 48.8% to 81.4%, and within-population Nei's diversity varied from 0.1667 to 0.2630. Genetic variation in smallsized populations (0.1667 to 0.1809) was significantly lower than the variations in large-sized populations (0.2158 -0.2630) (N= 7, P 0.674, Pearson correlation test). Conclusions: Population size has a dramatic impact on its genetic diversity. The results revealed that fragmentation of caper population in the study region has most likely occurred recently. The low genetic diversity revealed within caper populations indicates high risk of extinction and suggests that urgent conservation action is needed to recover diversity in these populations.
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群体大小对辣椒科辣椒遗传变异水平的影响
背景:植物群体大小影响群体遗传变异。材料与方法:利用rapd研究了产自伊朗东部阿塞拜疆地区的Capparis spinosa (caper, Capparaceae)油菜群体大小对遗传变异的影响。利用Popgen基于Nei’s和Shannon’s多样性估计了种群内的遗传多样性,并基于通过SHAN获得的Nei’s距离矩阵,利用UPGMA树图研究了种群间的遗传相似性。采用Mann-Whitney U检验检验小种群与大种群间遗传变异水平的差异,采用Pearson检验检验种群间地理距离与遗传距离的相关性(SPSS, 11.3)。利用Arlequin进行AMOVA分析,将总遗传变异划分为群体内和群体间。结果:群体间rapd条带多态性水平在48.8% ~ 81.4%之间,群体内Nei’s多样性在0.1667 ~ 0.2630之间。小群体遗传变异(0.1667 ~ 0.1809)显著低于大群体遗传变异(0.2158 ~ 0.2630)(N= 7, P = 0.674, Pearson相关检验)。结论:种群大小对其遗传多样性有显著影响。结果表明,研究区刺山柑种群破碎化极有可能是近期发生的。刺山柑居群遗传多样性较低,存在灭绝风险,需要采取紧急保护措施恢复其多样性。
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来源期刊
Eurasian Journal of Biosciences
Eurasian Journal of Biosciences Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.20
自引率
0.00%
发文量
0
期刊介绍: EurAsian Journal of BioSciences (Abbrev. Eurasia J Biosci or EJOBIOS) is an international, refereed electronic journal. It publishes the results of original research in the field of biological sciences restricted tomorphology, physiology, genetics, taxonomy, ecology and biogeography of both prokaryotic and eucaryotic organisms. The journal encourages submission of manuscripts dealing with plant biology, animal biology, plant physiology, microbiology, hydrobiology, ecology and environmental science, ethnobiology, biodiversity and conservation biology. EurAsian Journal of BioSciences publishes original articles in the following areas: -Agriculture, Fisheries & Food -Anatomy & Morphology -Behavioural Sciences -Biology, Biochemistry and Biotechnology -Biophysics -Biology Education -Cellular Biology and Anatomical Sciences -Ecology, Evolution & Environment -Entomology -Forestry -General Biology -Genetics & Heredity -Life Sciences - Other topics -Microbiology and Immunology -Molecular Biology -Mycology -Palaeontology -Parasitology -Pharmacology & Pharmacy -Physiology and Related Sciences -Plant Sciences -Toxicology -Veterinary Sciences -Virology -Zoology
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