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Inherent variation of functional traits in winter and summer leaves of Mediterranean seasonal dimorphic species: evidence of a ‘within leaf cohort’ spectrum

机译:地中海季节性双态物种冬夏叶片功能性状的内在变化:叶群内光谱的证据

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摘要

The covariation pattern among leaf functional traits involved in resource acquisition has been successfully provided by the leaf economic spectrum (LES). Nevertheless, some aspects such as how the leaf trait variation sources affect LES predictions are still little investigated. Accordingly, the aim of this paper was to test whether leaf trait variations within different leaf cohorts could alter LES. Improving this knowledge can extend the potential of trait-based approaches in simulating future climate effects on ecosystems. A database on leaf morphological and physiological traits from different leaf cohorts of Cistus spp. was built by collecting data from literature. These species are seasonal dimorphic shrubs with two well-defined leaf cohorts during a year: summer leaves (SL) and winter leaves (WL). Traits included: leaf mass area (LMA), leaf thickness (LT), leaf tissue density (LTD), net photosynthetic rate on area (Aa) and mass (Am) base, nitrogen content on area (Na) and mass (Nm) base. The obtained patterns were analysed by standardized major axis regression and then compared with the global spectrum of evergreens and deciduous species. Climatic variable effect on leaf traits was also tested. Winter leaves and SL showed a great inherent variability for all the considered traits. Nevertheless, some relationships differed in terms of slopes or intercepts between SL and WL and between leaf cohorts and the global spectrum of evergreens and deciduous. Moreover, climatic variables differently affected leaf traits in SL and WL. The results show the existence of a ‘within leaf cohort’ spectrum, providing the first evidence on the role of leaf cohorts as LES source of variation. In fact, WL showed a high return strategy as they tended to maximize, in a short time, resource acquisition with a lower dry mass investment, while SL were characterized by a low return strategy.
机译:叶片经济谱(LES)已成功地提供了参与资源获取的叶片功能性状之间的协变模式。尽管如此,诸如叶片性状变异来源如何影响LES预测的某些方面仍很少研究。因此,本文的目的是测试不同叶群内的叶片性状变化是否可以改变LES。改善这些知识可以扩展基于特征的方法在模拟未来气候对生态系统的影响方面的潜力。 Cistus spp的不同叶片群体的叶片形态和生理特性数据库。是通过收集文献数据建立的。这些物种是季节性双态灌木,一年中有两个定义明确的叶群:夏叶(SL)和冬叶(WL)。性状包括:叶片质量面积(LMA),叶片厚度(LT),叶片组织密度(LTD),面积(Aa)和质量(Am)的净光合速率,面积(Na)和质量(Nm)的氮含量基础。通过标准化的主轴回归分析获得的模式,然后与常绿和落叶树种的全球光谱进行比较。还测试了气候变化对叶片性状的影响。冬叶和SL对所有考虑的性状均表现出极大的内在变异性。然而,在SL和WL之间,叶群与常绿和落叶全球光谱之间的斜率或截距方面,某些关系有所不同。此外,气候变量对SL和WL叶片性状的影响不同。结果表明存在“叶群内”光谱,为叶群作为LES变异源的作用提供了第一个证据。实际上,WL表现出高回报策略,因为它们倾向于在短时间内最大化资源获取,而干物质投资较低,而SL则具有低回报策略。

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