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The significance of refuge heterogeneity for lowland stream caddisfly larvae to escape from drift

机译:避难所异质性对于低地流虫幼虫逃脱漂移的意义

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摘要

The process of macroinvertebrate drift in freshwater lowland streams is characterized by dislodgement, drift distance and subsequent return to the bottom. Refuges are important to all drift phases, since they may help larvae to avoid dislodgement and to escape from drift, even more so if the refuge structure is complex and heterogeneous. The aim of the present study was therefore to determine the influence of refuge heterogeneity on the ability of caddisfly larvae to return to the bottom from drift and to avoid secondary dislodgement. To this purpose a series of indoor flume experiments were undertaken, testing six Limnephilidae (Trichoptera) species, that occur on a gradient from lotic to lentic environments. Bed morphology (plain, refuges with or without leaf patches) and flow velocity (low (0.1 m/s), intermediate (0.3 m/s) and high (0.5 m/s) were manipulated. We showed that all species were favoured by refuges and that especially for species on the lentic end of the gradient (L. lunatus, L. rhombicus and A. nervosa), the ability to escape from drift and to avoid secondary dislodgement was increased. Moreover, we showed that all species spent more time in refuges than in open channel parts and more time in heterogeneous refuges (leaf patches) than in bare refuges, the latter being especially the case for larvae of the lotic species. For lentic species, not well adapted to high flow velocity, refuges are thus crucial to escape from drift, while for the lotic species, better adapted to high flow velocity, the structure of the refuge becomes increasingly important. It is concluded that refuges may play a crucial role in restoring and maintaining biodiversity in widened, channelized and flashy lowland streams.
机译:淡水低地河流中大型无脊椎动物的漂移过程的特征是流离失所,漂移距离以及随后返回到底部。避难对所有漂泊阶段都很重要,因为它们可以帮助幼虫避免移动并逃脱漂流,如果避难所结构复杂且异质,则更是如此。因此,本研究的目的是确定避难所异质性对蝇幼虫从漂流返回底部并避免继发性迁移的能力的影响。为此目的,进行了一系列室内水槽实验,测试了六种lot蝶科(Trichoptera),它们在从吸虫环境到透镜环境的梯度上发生。操纵了床的形态(平原,有或没有叶斑块的避难所)和流速(低(0.1 / m / s),中间(0.3 m / s)和高(0.5 m / s)。避难所,特别是对于在梯度的透镜末端的物种(L. lunatus,L。rhombicus和A. nervosa),其逃避漂移和避免继发性迁移的能力有所提高,此外,我们还表明,所有物种都花了更多的钱在避难所中的时间要比在明渠部分要长,而在异类避难所(叶斑块)中要比在裸露避难所中要花更多的时间,后者对于吸虫种类的幼虫尤其如此。因此,对于逃避漂流至关重要,而对于更适应高流速的吸水物种而言,避难所的结构变得越来越重要。结论是,避难所可能在恢复和维持拓宽,沟渠化和泛滥的生物多样性方面发挥关键作用。低地溪流。

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