Plant Adaptation and Phosphorus Limitation in Tropical Forests: A Theoretical and Empirical Assessment

IF 3.4 2区 环境科学与生态学 Q2 ECOLOGY
Ryota Aoyagi, Nobuo Imai, Benjamin L. Turner, Kanehiro Kitayama
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Abstract

Ecosystem dynamics are shaped by plant adaptation to environmental stress, yet the conditions under which this occurs remain poorly understood. We developed a theoretical framework to predict how strategies used by tropical trees to cope with low-phosphorus (P) availability (that is, traits related to P uptake, and use) influence growth under P limitation. We then tested this framework against data on tree species in Borneo and a meta-analysis of results from pantropical nutrient addition experiments. Our theoretical framework predicts that plant traits associated with low-P environments, including enhanced P allocation to leaves, efficient P resorption, and root phosphatase activity, alleviate the negative effects of P scarcity more strongly for “inefficiently” growing plants, represented by large trees and old-growth forests, compared with saplings or secondary forests. In agreement with this prediction, changes in traits related to low-P environments increased the potential relative growth rate of large trees more than small trees in Borneo. Finally, theoretical expectation was supported by a meta-analysis which revealed stronger P limitation in saplings and secondary forests than in old-growth forests. Together, these findings provide a novel framework to interpret the relationship between resource constraints and plant performance and reinforce the importance of accounting for plant adaption to predict ecosystem responses to P limitation in tropical forests.

Abstract Image

热带森林中的植物适应性和磷限制:理论与实证评估
生态系统的动态是由植物对环境压力的适应性决定的,但人们对发生这种情况的条件仍然知之甚少。我们建立了一个理论框架来预测热带树木应对低磷可用性的策略(即与磷吸收和利用相关的性状)如何影响磷限制下的生长。然后,我们用婆罗洲树种的数据和泛热带营养添加实验结果的荟萃分析对这一框架进行了测试。我们的理论框架预测,与低钾环境相关的植物性状,包括增强叶片的钾分配、高效的钾吸收和根部磷酸酶活性,对 "低效 "生长的植物(以大树和古老森林为代表)来说,与树苗或次生林相比,能更有力地缓解钾短缺的负面影响。与这一预测一致的是,在婆罗洲,与低磷环境相关的性状变化提高了大树的潜在相对生长率,而不是小树。最后,荟萃分析表明,树苗和次生林中的P限制比原始森林中的更强,这也支持了理论预期。总之,这些发现为解释资源限制与植物表现之间的关系提供了一个新的框架,并加强了考虑植物适应性以预测热带森林生态系统对 P 限制反应的重要性。
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来源期刊
Ecosystems
Ecosystems 环境科学-生态学
CiteScore
8.20
自引率
2.70%
发文量
71
审稿时长
1.7 months
期刊介绍: The study and management of ecosystems represent the most dynamic field of contemporary ecology. Ecosystem research bridges fundamental ecology and environmental ecology and environmental problem-solving, and spans boundaries of scale, discipline and perspective. Ecosystems features a distinguished team of editors-in-chief and an outstanding international editorial board, and is seen worldwide as a vital home for publishing significant research as well as editorials, mini-reviews and special features.
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