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繁殖限制和种子大小-数量权衡关系,影响森林优势度和未来恢复。

Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery.

机构信息

Nicholas School of the Environment, Duke University, Durham, NC, 27708, USA.

Department of Geography, University of Colorado Boulder, Boulder, CO, 80309, USA.

出版信息

Nat Commun. 2022 May 2;13(1):2381. doi: 10.1038/s41467-022-30037-9.

Abstract

The relationships that control seed production in trees are fundamental to understanding the evolution of forest species and their capacity to recover from increasing losses to drought, fire, and harvest. A synthesis of fecundity data from 714 species worldwide allowed us to examine hypotheses that are central to quantifying reproduction, a foundation for assessing fitness in forest trees. Four major findings emerged. First, seed production is not constrained by a strict trade-off between seed size and numbers. Instead, seed numbers vary over ten orders of magnitude, with species that invest in large seeds producing more seeds than expected from the 1:1 trade-off. Second, gymnosperms have lower seed production than angiosperms, potentially due to their extra investments in protective woody cones. Third, nutrient-demanding species, indicated by high foliar phosphorus concentrations, have low seed production. Finally, sensitivity of individual species to soil fertility varies widely, limiting the response of community seed production to fertility gradients. In combination, these findings can inform models of forest response that need to incorporate reproductive potential.

摘要

控制树木种子生产的关系对于理解森林物种的进化及其从干旱、火灾和收获损失中恢复的能力至关重要。对来自全球 714 个物种的繁殖力数据进行综合分析,使我们能够检验对定量繁殖具有核心意义的假设,而繁殖力是评估森林树木适应性的基础。研究主要有四个发现。首先,种子生产不受种子大小和数量之间严格权衡的限制。相反,种子数量的变化幅度可达十个数量级,与 1:1 权衡相比,投资于大种子的物种产生的种子数量更多。其次,裸子植物的种子产量低于被子植物,这可能是由于它们在保护性木质球果上的额外投资。第三,高叶片磷浓度指示的养分需求较高的物种,种子产量较低。最后,个别物种对土壤肥力的敏感性差异很大,限制了群落种子生产对肥力梯度的响应。总的来说,这些发现可以为需要纳入生殖潜力的森林响应模型提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4081/9061860/6803219986ba/41467_2022_30037_Fig1_HTML.jpg

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