生物
航程(航空)
生态学
系统地理学
环境生态位模型
遗传结构
驯化
近似贝叶斯计算
按距离隔离
物种分布
气候变化
基因流
人口
遗传变异
进化生物学
生态位
系统发育树
栖息地
基因
复合材料
人口学
社会学
生物化学
材料科学
作者
Amandine Cornille,Tatiana Giraud,Céline Bellard,Aurélien Tellier,Bruno Le Cam,MARINUS J. M. SMULDERS,Jörg R. G. Kleinschmit,Isabel Roldán-Ruíz,Pierre Gladieux
摘要
Understanding the way in which the climatic oscillations of the Quaternary Period have shaped the distribution and genetic structure of extant tree species provides insight into the processes driving species diversification, distribution and survival. Deciphering the genetic consequences of past climatic change is also critical for the conservation and sustainable management of forest and tree genetic resources, a timely endeavour as the Earth heads into a period of fast climate change. We used a combination of genetic data and ecological niche models to investigate the historical patterns of biogeographic range expansion of a wild fruit tree, the European crabapple (Malus sylvestris), a wild contributor to the domesticated apple. Both climatic predictions for the last glacial maximum and analyses of microsatellite variation indicated that M. sylvestris experienced range contraction and fragmentation. Bayesian clustering analyses revealed a clear pattern of genetic structure, with one genetic cluster spanning a large area in Western Europe and two other genetic clusters with a more limited distribution range in Eastern Europe, one around the Carpathian Mountains and the other restricted to the Balkan Peninsula. Approximate Bayesian computation appeared to be a powerful technique for inferring the history of these clusters, supporting a scenario of simultaneous differentiation of three separate glacial refugia. Admixture between these three populations was found in their suture zones. A weak isolation by distance pattern was detected within each population, indicating a high extent of historical gene flow for the European crabapple.
科研通智能强力驱动
Strongly Powered by AbleSci AI