持续处于暖冷期避难所的种群的适应性进化差异:来自欧洲阿尔卑斯山外围的候选例子

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2022-11-19 DOI:10.1007/s00035-022-00291-0
Joachim W. Kadereit
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引用次数: 1

摘要

生物对第四纪气候振荡的主要反应是迁徙。考虑到高山植物,冰川期向低海拔冷期避难所迁移,间冰期和全新世向高海拔地区再迁移。本综述探讨了再迁徙物种后缘种群在冷期避难所地区持续进化的可能性。在这里,它们将面临越来越温暖的条件和来自其他物种的强烈竞争,这些物种将重新迁移到寒冷阶段的避难所。对于欧洲阿尔卑斯山的植物群,我确定了13个物种或亚种对,其中一个分类单元可能代表持久的后边缘种群的进化衍生物,而另一个则代表追踪其生态位并重新迁移到高海拔地区的种群。如果得到进一步分析的证实,这些分类单元对将表明第四纪间冰期和全新世的适应性进化分化是可能的,并且很可能会持续一个或几个更长的冰川期。
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Adaptive evolutionary divergence of populations persisting in warming cold-stage refugia: candidate examples from the periphery of the European Alps

The major response of organisms to the climatic oscillations of the Quaternary was migration. Considering alpine plants, migration into low elevation cold-stage refugia took place in glacial periods, and re-migration into high elevation areas in interglacial periods and the Holocene. The present review examines the possibility that populations at the rear edge of re-migrating species persisted and evolved in the area of cold-stage refugia. Here, they would be faced with increasingly warm conditions and strong competition from other species re-migrating into the cold-stage refugial area. For the flora of the European Alps, I identified 13 species or subspecies pairs in which one taxon of a pair may represent an evolutionary derivative of persisting rear-edge populations, whereas the other represents populations which tracked their niche and re-migrated into high elevation areas. If confirmed by further analyses, these taxon pairs would illustrate that adaptive evolutionary divergence in Quaternary interglacials and the Holocene is possible, and most likely can persist through one or several much longer glacial periods.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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