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首页> 外文期刊>Estuarine Coastal and Shelf Science >Limited relationships between mangrove forest structure and hydro-edaphic conditions in subtropical Queensland, Australia
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Limited relationships between mangrove forest structure and hydro-edaphic conditions in subtropical Queensland, Australia

机译:澳大利亚亚热带昆士兰州红树林林结构与水力助剂条件的有限关系

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Mangroves are important ecosystems of the global subtropical zone providing a wide range of ecosystem services. They are sensitive to human disturbances and climate change. However, regional assessments of species composition, forest structure and soil characteristics, and knowledge of the environmental factors that contribute to regional variation in their characteristics are limited. We surveyed mangrove communities at seven island locations along 450 km of the sandy south-east Queensland coast. We found no latitudinal trends in richness of common species or their abundance, likely due to shared climatic conditions across our study range, however there was considerable variation in forest structure among and within the seven sites. Over all sites, analysis of soil characteristics identified four hydro-edaphic environmental categories differing in soil water content, dry bulk density, organic matter and porewater salinity, which also varied spatially among and within sites. There were few strong relationships among forest structure and hydro-edaphic categories, although relatively small trees and high stem densities tended to be associated with soils having high soil water content, high levels of soil organic matter and low bulk density, while forests with largest trees and lowest stem densities tended to be associated with soils with intermediate characteristics, indicative of regular inundation and drainage. The two most common species (Avicennia marina and Rhizophora stylosa) had very broad distributions over the four hydro-edaphic categories, although A. marina tended to be more strongly associated with soils with high water content where R. stylosa had a lower probability of occurrence. Bruguiera gymnorrhiza had high fidelity to locations with low porewater salinity influenced by groundwater. We conclude that hydrological conditions are key determinants of mangrove soil characteristics, but less important in determining forest structure in the subtropics. Our study provides a baseline from which future change in mangrove soils and forest structure can be detected.
机译:红树林是全球亚热带地区的重要生态系统,提供广泛的生态系统服务。它们对人类的骚乱和气候变化很敏感。然而,物种组成,森林结构和土壤特征的区域评估以及对其特征各种区域变异有助于区域变异的环境因素的知识。我们沿着距离南北昆士兰海岸450公里的七岛地区的七岛地区调查了红树林。我们发现普通物种的丰富度或其丰富的纬度趋势,可能由于我们研究范围的共同气候条件,然而,七个地点内的森林结构存在相当大的变化。在所有网站上,土壤特征分析确定了土壤水含量,干燥堆积密度,有机物和沉淀物不同的四种水辅助环境类别,其在空间和位点内也各不相同。森林结构和水力发用类别中有很大的关系,尽管相对较小的树木和高茎密度往往与土壤含水量高,土壤有机质高水平和低散装密度有关,但森林具有最大的树木最低的茎密度往往与具有中间特征的土壤相关,指示普通淹没和排水。两种最常见的物种(Avicennia Marina和Rhizophora Stylosa)的分布非常广泛,虽然A. Marina往往与具有高水含量的土壤相关,其中R. Stylosa的发生概率较低。 Bruguiera Gymnorrhiza对受地下水影响低沉积物盐度的位置高保真。我们得出结论,水文条件是红树林土壤特征的关键决定因素,但在确定亚热带中的森林结构方面不太重要。我们的研究提供了一种基线,可以检测到美洲红树土壤和森林结构的未来变化。

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