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The Soil Bacterial Communities of South African Fynbos Riparian Ecosystems Invaded by Australian Acacia Species

机译:澳大利亚相思树种入侵的南非Fynbos河岸生态系统的土壤细菌群落

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摘要

Riparian ecosystem along rivers and streams are characterised by lateral and longitudinal ecological gradients and, as a result, harbour unique biodiversity. Riparian ecosystems in the fynbos of the Western Cape, South Africa, are characterised by seasonal dynamics, with summer droughts followed by high flows during winter. The unique hydrology and geomorphology of riparian ecosystems play an important role in shaping these ecosystems. The riparian vegetation in the Western Cape has, however, largely been degraded due to the invasion of non-indigenous plants, in particular Acacia mearnsii, A. saligna and A. dealbata. This study investigated the effect of hydrology and invasion on the bacterial communities associated with fynbos riparian ecosystems. Bacterial communities were characterised with automated ribosomal intergenic spacer analysis (ARISA) and 454 16S rDNA pyrosequencing. Chemical and physical properties of soil within sites were also determined and correlated with community data. Sectioning across the lateral zones revealed significant differences in community composition, and the specific bacterial taxa influenced. Results also showed that the bacterial community structure could be linked to Acacia invasion. The presence of invasive Acacia was correlated with specific bacterial phyla. However, high similarity between cleared and pristine sites suggests that the effect of Acacia on the soil bacterial community structure may not be permanent. This study demonstrates how soil bacterial communities are influenced by hydrological gradients associated with riparian ecosystems and the impact of Acacia invasion on these communities.
机译:沿河和河流的沿岸生态系统的特征是横向和纵向的生态梯度,因此具有独特的生物多样性。南非西开普省的小灌丛中的河岸生态系统具有季节性动态特征,夏季干旱,冬季高流量。河岸生态系统独特的水文和地貌在塑造这些生态系统中起着重要作用。然而,西开普省的河岸植被由于非本地植物的入侵而大大退化,特别是相思木,刺槐和脱皮拟南芥。这项研究调查了水文和入侵对与Fynbos河岸生态系统相关的细菌群落的影响。通过自动核糖体基因间间隔区分析(ARISA)和454 16S rDNA焦磷酸测序来表征细菌群落。还确定了场地内土壤的化学和物理性质,并将其与社区数据相关联。横切侧向区域显示出群落组成的显着差异,并且特定细菌类群受到影响。结果还表明,细菌群落结构可能与相思入侵有关。入侵相思的存在与特定细菌门相关。但是,清除位点和原始位点之间的高度相似性表明,相思树对土壤细菌群落结构的影响可能不是永久的。这项研究表明,土壤细菌群落如何受到与河岸生态系统相关的水文梯度的影响以及相思入侵对这些群落的影响。

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