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Interactions between climate and soil shape tree community assembly and above-ground woody biomass of tropical dry forests

机译:气候与土壤形状树社区组装与地面木质生物质的相互作用

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The resilience or sensitivity of seasonally dry tropical forests (SDTF) to climate change remains an important issue because of their biodiversity and ecosystem services provision. Understand the underlying ecological processes of SDTF is crucial for the development of conservation and management strategies. We tested the hypotheses that SDTF tree species richness, above-ground woody biomass (AGWB), species and phylogenetic compositions are related to climate, soil and their interactions. We sampled 16 old-growth forest sites (313 plots) of SDTF within a 290 km latitudinal gradient. The sites are located in the transition zone between Caatinga and Cerrado biogeographic domains, and are near from Atlantic domain (similar to 100 km). In each site we collected data on vegetation (trees with diameter at breast height >= 3 cm) and soil, and obtained climate data from WorldClim. Almost all vegetation attributes were significantly related to climate and soil. Soil texture mediated the effects of precipitation for tree species richness, AGWB and phylogenetic composition. Tree species richness decreases with annual precipitation but increases under less seasonal conditions; water availability leads to increases in AGWB and drives changes in both taxonomic and phylogenetic composition in these environments. Our findings indicate that tree species richness, above-ground woody biomass, taxonomic and phylogenetic composition of SDTFs are, in general, vulnerable to drought events even from local to regional scales and show the importance of local-scale aspects to understand SDTF diversity and ecosystem functioning; and provide useful information for conservation and management strategies.
机译:由于其生物多样性和生态系统服务提供,季节性干燥热带森林(SDTF)对气候变化的弹性或敏感性仍然是一个重要问题。了解SDTF的潜在生态过程对于开发保护和管理战略至关重要。我们测试了SDTF树种类丰富性,地上木质生物质(AGWB),物种和系统发育组合物的假设与气候,土壤及其相互作用有关。在290公里的梯度梯度范围内,我们在SDTF中采样了16个旧的旧森林网站(313块)。该网站位于Caatinga和Cerrado生物地理域之间的过渡区,并靠近大西洋域(类似于100公里)。在每个网站中,我们在植被(乳房高度> = 3厘米处的直径树木)和土壤中收集数据,并从WorldClim获得了气候数据。几乎所有植被属性都与气候和土壤有关。土壤纹理介导降水对树种丰富,AGWB和系统发育组合物的影响。树种丰富性随着年降水减少,但在较少的季节性条件下增加;水可用性导致AGWB的增加,并且这些环境中分类学和系统发育组合物的变化。我们的调查结果表明,甚至从地方尺度到区域规模,易受干旱事件的树木,地上的木质生物质,水分类和系统发育组成,甚至易受干旱事件的群体,并表明了本地规模方面的重要性,以了解SDTF多样性和生态系统的重要性功能;并提供保护和管理战略的有用信息。

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