首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Salinization effects on coastal ecosystems: a terrestrial model ecosystem approach
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Salinization effects on coastal ecosystems: a terrestrial model ecosystem approach

机译:对沿海生态系统的盐渍化影响:一种陆地模型生态系统方法

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In coastal areas, intrusion/irrigation with seawater can threaten biodiversity along with crop yields, and the leaching of salts from areas affected by these processes can increase the salinity of water bodies nearby. The aims of this study were to evaluate the effects of salinization on coastal soil ecosystems due to saline intrusion/irrigation. Terrestrial model ecosystems were used to simulate two soil salinization scenarios: (i) seawater intrusion and irrigation with distilled water and (ii) seawater intrusion and irrigation with saline water. Three sampling periods were established: T0-after acclimation period; T1-salinization effects; and T2-populations' recovery. In each sampling period, the abundance of nematodes, enchytraeids, springtails, mites and earthworms, and plant biomass were measured. Immediate negative effects on enchytraeid abundance were detected, especially at the higher level of saltwater via intrusion+ irrigation. Eight weeks after the cessation of saline irrigation, the abundance of enchytraeids fully recovered, and some delayed effects were observed in earthworm abundance and plant biomass, especially at the higher soil conductivity level. The observed low capacity of soil to retain salts suggests that, particularly at high soil conductivities, nearby freshwater bodies can also be endangered. Under saline conditions similar to the ones assayed, survival of some soil communities can be threatened, leading to the loss of biodiversity.
机译:在沿海地区,海水的入侵/灌溉可能会威胁生物多样性以及作物产量,并由这些过程影响的区域的盐浸出可以增加附近水体的盐度。本研究的目的是由于盐水侵入/灌溉,评估盐渍化对沿海土壤生态系统的影响。陆地模型生态系统用于模拟两种土壤盐渍化情景:(i)海水入侵和用蒸馏水灌溉和(ii)海水侵入和盐水灌溉。建立了三个采样期:T0-追加期限; T1-盐渍化效应;和T2人口的康复。在每个采样期间,测量线虫,eNChytraeids,春季扣,螨虫和蚯蚓和植物生物质的丰度。检测到对EnchytraeidID丰度的立即产生负面影响,特别是通过侵入+灌溉在较高水平的盐水中。在盐水灌溉停止后八周,在​​蚯蚓丰度和植物生物质中观察到完全恢复的浓度的浓度和一些延迟效应,特别是在较高的土壤电导率下。观察到的土壤的低容量保持盐表明,特别是在高土壤导体下,附近的淡水体也可以濒危。在类似于测定的盐水条件下,一些土壤社区的生存可以受到威胁,导致生物多样性的丧失。

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