Counter-Gradient Variation Of Reproductive Effort In A Widely Distributed Temperate Oak Quercus Petraea

FUNCTIONAL ECOLOGY(2021)

引用 4|浏览10
暂无评分
摘要
1. The genetic and phenotypic variability of life-history traits determines the demographic attributes of tree populations and, thus, their responses to anthropogenic climate change. Growth-and survival-related traits have been widely studied in forest ecology, but little is known about the determinism of reproductive traits.2. Using an elevation gradient experiment in the Pyrenees, we assessed the degree to which variations in reproductive effort along climatic gradients are environmentally or genetically driven, by comparing oak populations (Quercus petraea) growing under field and common garden conditions.3. In situ monitoring revealed a decline in reproductive effort with increasing elevation and decreasing temperature. In common garden conditions, significant genetic differentiation was observed between provenances for reproduction and growth: trees from cold environments (high elevations) grew more slowly, and produced larger acorns in larger numbers. Our observations show that genetic and phenotypic clines for reproductive traits have opposite signs (counter-gradient) along the environmental gradient as opposed to growth, for which genetic variation parallels phenotypic variation (co-gradient).4. The counter-gradient found here for reproductive effort reveals that genetic variation partly counteracts the phenotypic effect of temperature, moderating the change in reproductive effort according to temperature. We consider the possible contribution to this counter-gradient in reproductive effort as an evolutionary trade-off between reproduction and growth.
更多
查看译文
关键词
counter-gradient, elevation gradient, local adaptation, Quercus petraea, reproduction
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要