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Genetic diversity of pepper(Capsicum spp.) germplasm resources in China reflects selection for cultivar types and spatial distribution 被引量:7
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作者 ZHANG Xiao-min ZHANG Zheng-hai +6 位作者 GU Xiao-zhen MAO Sheng-li LI Xi-xiang Joel Chadceuf Al ain Palloix WANG Li-hao ZHANG Bao-xi 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第9期1991-2001,共11页
Pepper(Capsicum spp.) is an important vegetable crop in the world. Now the pepper in China contributes one-third of the world's peppers production. Genetic diversity of the pepper germplasm of China is expected int... Pepper(Capsicum spp.) is an important vegetable crop in the world. Now the pepper in China contributes one-third of the world's peppers production. Genetic diversity of the pepper germplasm of China is expected interesting to know. To explore the structure of genetic diversity in Chinese pepper germplasm resources and possible relationship with cultivar types or geographic origin, we sampled and compared 372 Gen Bank pepper accessions(local cultivars and landraces) from 31 provinces, autonomous regions and municipalities of China and 31 additional accessions from other countries. These accessions were genotyped using 28 simple sequence repeat(SSR) markers spanning the entire pepper genome. We then investigated the genetic structure of the sampled collection using model-based analysis in STRUCTURE v2.3.4 and examined genetic relationships by the unweighted pair-group method of mathematical averages(UPGMA) in MEGA. In addition to geographic origin, we evaluated eight plant and fruit traits. In total, 363 alleles were amplified using the 28 SSR primers. Gene diversity, polymorphism information content and heterozygosity of the 28 SSR loci were estimated as 0.09–0.92, 0.08–0.92 and 0.01–0.34, respectively. The UPGMA cluster analysis clearly distinguished Capsicum annuum L. from other cultivated pepper species. Population structure analysis of the 368 C. annuum accessions uncovered three genetic groups which also corresponded to distinct cultivar types with respect to the plant and fruit descriptors. The genetic structure was also related to the geographic origin of the landraces. Overall results indicate that genetic diversity of Chinese pepper landraces were structured by migration of genotypes followed by human selection for cultivar types in agreement with consumption modes and adaptation to the highly diversified agro-climatic conditions. 展开更多
关键词 Capsicum spp.germplasm collection genetic diversity population structure microsatellite
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Subpopulation genetic structure of a plant panmictic population of Castanea sequinii as revealed by microsatellite markers
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作者 WANG Ying KANG Ming HUANG Hongwen 《Frontiers in Biology》 CSCD 2007年第2期187-195,共9页
Castanea squinii Dode,an endemic tree widely distributed in China,plays an important role both in chestnut breeding and forest ecosystem function.The spatial genetic structure within and among populations is an import... Castanea squinii Dode,an endemic tree widely distributed in China,plays an important role both in chestnut breeding and forest ecosystem function.The spatial genetic structure within and among populations is an important part of the evolutionary and ecological genetic dynamics of natural populations,and can provide insights into effective conservation of genetic resources.In the present study,the spatial genetic structure of a panmictic natural population of C.sequinii in the Dabie Mountain region was investigated using microsatellite markers.Nine prescreened microsatellite loci generated 29-33 alleles each,and were used for spatial autocorrelation analysis.Based on Moran’s I coefficient,a panmictic population of C.sequinii in the Dabie Mountain region was found to be lacking a spatial genetic structure.These results suggest that a high pollen-mediated gene flow among subpopulations counteract genetic drift and/or genetic differentiation and plays an important role in maintaining a random and panmictic population structure in C.sequinii populations.Further,a spatial genetic structure was detected in each subpopulation’s scale(0.228 km),with all three subpopulations showing significant fine-scale structure.The genetic variation was found to be nonrandomly distributed within 61 m in each subpopulation(Moran’s I positive values).Although Moran’s I values varied among the different subpopulations,Moran’s I in all the three subpopulations reached the expected values with an increase in distances,suggesting a generally patchy distribution in the subpopula-tions.The fine-scale structure seems to reflect restricted seed dispersal and microenvironment selection in C.sequinii.These results have important implications for understanding the evolutionary history and ecological process of the natural population of C.sequinii and provide baseline data for formulating a conservation strategy of Castanea species. 展开更多
关键词 castanea sequinii genetic diversity genetic structure microsatellite panmictic population spatial autocorrelation
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北京板栗种群的遗传多样性与进化历史研究
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作者 何志 董锦熠 刘勇波 《植物遗传资源学报》 CAS CSCD 北大核心 2023年第5期1461-1471,共11页
野生种群是重要的种质资源,了解本地野生种群和栽培种群之间的遗传多样性和群体演化有助于野生种群的科学保护和可持续利用。本研究基于北京板栗自然与栽培分布区,采集5个栽培种群和1个野生种群共93份种质的叶片,并采集湖北宜昌1个种群... 野生种群是重要的种质资源,了解本地野生种群和栽培种群之间的遗传多样性和群体演化有助于野生种群的科学保护和可持续利用。本研究基于北京板栗自然与栽培分布区,采集5个栽培种群和1个野生种群共93份种质的叶片,并采集湖北宜昌1个种群(作为外群)共16份种质的叶片,筛选16对微卫星SSR引物分析板栗种群的遗传多样性和进化历史。结果表明北京板栗种群的遗传多样性相对较高,其中红螺寺野生板栗种群的遗传多样性高于其他种群。板栗各种群之间有明显的遗传分化(Fst=0.232),基因交流频率较低(Nm=0.547)。分子生物学方差分析(AMOVA)分析表明板栗种群内的遗传变异(57.70%)大于群体之间(42.30%)。群体遗传结构分析显示,宜昌板栗种群明显区别于北京板栗种群,北京板栗分为两组,红螺寺野生种群单独为一组,明代板栗园古树种群和其他栽培种群聚为一组,说明北京栽培板栗可能来自于明代板栗园古树种群。非加权组平均法聚类分析(UPGMA)、主坐标分析(PCoA)和主成分分析(PCA)结果均支持群体遗传结构结果。Treemix分析结果显示从宜昌种群到北京种群发生过历史基因交流,说明板栗从华中地区向北迁移的路线。种群历史结果表明,北京种群在大约8.3万年前从宜昌种群种分化出来,北京本地野生种和栽培种的分化时间大约在3.2万年前。本研究结果支持板栗由华中向北迁移的假说,栽培种的驯化降低了北京板栗种质资源的遗传多样性,北京板栗野生种和栽培古树保留了高的遗传多样性,应该优先得到保护。 展开更多
关键词 板栗 微卫星 遗传多样性 野生种群
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中国板栗自然居群微卫星(SSR)遗传多样性 被引量:38
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作者 田华 康明 +2 位作者 李丽 姚小洪 黄宏文 《生物多样性》 CAS CSCD 北大核心 2009年第3期296-302,共7页
采用8对微卫星分子标记对中国板栗(Castanea mollissima)的28个自然居群进行了遗传多样性与遗传结构分析。在849个个体上扩增得到128个等位基因,每位点平均等位基因数(A)为16。中国板栗居群的平均预期杂合度(HE)为0.678,平均观察杂合度(... 采用8对微卫星分子标记对中国板栗(Castanea mollissima)的28个自然居群进行了遗传多样性与遗传结构分析。在849个个体上扩增得到128个等位基因,每位点平均等位基因数(A)为16。中国板栗居群的平均预期杂合度(HE)为0.678,平均观察杂合度(HO)为0.590。华中地区的中国板栗居群遗传多样性最高(A=8.112,HE=0.705,HO=0.618),其次为西北地区和华东地区,而西南地区遗传多样性最低(A=6.611,HE=0.640,HO=0.559)。基于无限等位基因模型(IAM)和基于逐步突变模型(SMM)的遗传分化系数分别为FST=0.120和RST=0.208。分子方差分析(AMOVA)结果表明中国板栗野生居群的遗传变异主要存在于居群内(87.16%)。Mantel检测揭示遗传距离与地理距离之间无显著相关性,表明基因流不是主导中国板栗居群遗传结构的关键因素。华中地区(尤其是神农架及其周边地区)是中国板栗遗传多样性的现代分布中心,因而应该得到优先保护,同时该区域的野生板栗居群可优先作为栽培板栗遗传育种的材料和基因库。 展开更多
关键词 castanea mollissima 种质资源 微卫星 遗传多样性 居群遗传结构
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栗属中国特有种居群的遗传多样性及地域差异 被引量:86
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作者 郎萍 黄宏文 《Acta Botanica Sinica》 CSCD 1999年第6期651-657,共7页
采用超薄平板聚丙烯酰胺等电聚焦技术对栗属(Castanea(Tourn.)L.)3个中国特有种即中国板栗(C.molisimaBL.)、茅栗(C.seguiniDode.)和锥栗(C.henryi(Skan)Rehd... 采用超薄平板聚丙烯酰胺等电聚焦技术对栗属(Castanea(Tourn.)L.)3个中国特有种即中国板栗(C.molisimaBL.)、茅栗(C.seguiniDode.)和锥栗(C.henryi(Skan)Rehd.etWils.)的30个居群,12个酶系统的20个位点进行了遗传多样性与遗传结构分析。结果表明:中国板栗在种和居群水平都具有较茅栗、锥栗高的遗传多样性(P分别为90.0%和84.7%,He分别为0.311和0.295),尤以长江流域居群表现显著,揭示了长江流域的神农架及周边地区为中国板栗的遗传多样性中心。Nei的遗传一致度测量结果显示中国板栗和茅栗的亲缘关系最近,并且地理距离和遗传距离有一定的相关性。中国板栗、茅栗和锥栗的遗传分化程度逐渐增大,Gst分别为7.5%、10.9%和22.1%;基因流(Nm)分别为3.20、2.05和0.88。研究结果为探明栗属起源、系统进化及制定保育策略提供了科学依据。 展开更多
关键词 中国板栗 茅栗 锥栗 居群 遗传多样性 遗传结构
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