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首页> 外文期刊>The Journal of Ecology >Community assembly along a soil depth gradient: contrasting patterns of plant trait convergence and divergence in a Mediterranean rangeland.
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Community assembly along a soil depth gradient: contrasting patterns of plant trait convergence and divergence in a Mediterranean rangeland.

机译:沿土壤深度梯度的社区聚集:地中海牧场中植物性状趋同和趋异的对比模式。

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摘要

Understanding how environmental factors drive plant community assembly remains a major challenge in community ecology. The strength of different assembly processes along environmental gradients, such as environmental filtering and functional niche differentiation, can be quantified by analysing trait distributions in communities. While environmental filtering affects species occurrence among communities, functional divergence or convergence is strongly related to species abundances within communities, which few studies have taken into account. We examine the trait-mediated effect of these two processes along a stress-resource gradient. We measured species abundances and the distributions of eight traits related to vegetative and regenerative phases in plant communities along a gradient of soil depth and resource availability in Mediterranean rangelands. We quantified environmental filtering, defined as a local restriction of trait range, and trait divergence, based on abundance-weighted trait variance, using a two-step approach with specifically designed null models. Communities presented a clear functional response to the soil gradient, as evidenced by strong trends in community-weighted trait means. We detected environmental filtering of different traits at both ends of the gradient, suggesting that, contrary to widespread expectations, trait filtering may not necessarily be the result of abiotic filtering under harsh conditions but could likely also result from biotic interactions in productive habitats. We found marked shifts in trait abundance distributions within communities along the gradient. Vegetative traits (e.g. leaf dry matter content) diverged on shallow soils, reflecting the coexistence of distinct water- and nutrient-use strategies in these constrained habitats and converged with increasing soil resource availability. By contrast, regenerative traits (e.g. seed mass) tended to diverge towards deeper soils, while plant reproductive heights diverged all along the gradient. Synthesis: Our study highlights how the combination of abundance data with traits capturing different functional niches is critical to the detection of complex functional responses of plant communities to environmental gradients. We demonstrate that patterns of trait divergence and filtering are strongly contingent on both trait and environment such that there can be no expectation of a simple trend of increasing or decreasing functional divergence along a gradient of resource availability.
机译:了解环境因素如何驱动植物群落的组装仍然是群落生态学的主要挑战。通过分析社区中的性状分布,可以量化沿环境梯度的不同组装过程的强度,例如环境过滤和功能性生态位分化。尽管环境过滤会影响社区中物种的发生,但功能上的差异或趋同与社区内物种的丰富度密切相关,而很少有研究考虑在内。我们研究了这两个过程的性状介导的影响,沿着压力资源梯度。我们沿着土壤深度和地中海牧场资源可获得性的梯度,测量了植物群落中物种丰富度以及与营养和再生阶段有关的八个性状的分布。我们使用经过专门设计的空模型的两步方法,基于丰度加权的特征方差,对环境过滤进行了量化,定义为特征范围的局部限制和特征差异。社区对土壤梯度表现出明显的功能响应,社区加权特征手段的强劲趋势证明了这一点。我们在梯度的两端检测到了不同性状的环境过滤,这表明,与普遍预期相反,性状过滤不一定是恶劣条件下非生物过滤的结果,而很可能也是生产性生境中生物相互作用的结果。我们发现社区内的特征丰富度分布沿梯度明显变化。浅层土壤上的营养性状(例如叶片干物质含量)发散,反映出在这些受限制的生境中不同的水和养分利用策略并存,并且随着土壤资源的可用性增加而趋于一致。相比之下,再生性状(例如种子质量)趋向于向更深的土壤发散,而植物的生殖高度则沿整个梯度发散。综合:我们的研究强调了丰度数据与捕获不同功能生态位的性状的组合对于检测植物群落对环境梯度的复杂功能响应如何至关重要。我们证明,特征差异和筛选的模式在特征和环境上都具有很强的条件,因此无法期望简单的趋势会沿着资源可用性的梯度增加或减少功能差异。

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