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首页> 外文期刊>Progress in Oceanography >Epibenthic sled versus giant box corer - Comparison of sampling gears for tanaidacean species richness assessment in the abyssal benthic ecosystem
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Epibenthic sled versus giant box corer - Comparison of sampling gears for tanaidacean species richness assessment in the abyssal benthic ecosystem

机译:上肢雪橇与巨型箱式挖土机-在深海底栖生态系统中用于捕蝇草物种丰富度评估的采样装置比较

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摘要

Species richness is an important biodiversity measure that strongly relies on the sampling gear used. We have compared the efficiency of two types of sampling gears (camera-epibenthic sled - C-EBS and giant box corer - BC) for species richness assessment of Tanaidacea in the abyssal plain of the region of the Kuril-Kamchatka Trench. In terms of species richness small, benthic, brooding tanaidaceans are amongst the most highly underestimated groups of the deep-sea macrofauna and can be treated as a model group for such a study. Large numbers of singletons and doubletons (25% of species in BC, 24% of species in C-EBS) together with steep species accumulation curves suggest substantial undersampling. The total number of species and the number of unique species collected by each gear was higher in the C-EBS (77 and 44 species respectively) than in the BC (46 and 11 species respectively) but those differences seem to be low taking into account the total sampled area (5.75 m(2) of seafloor for BC, and 53,709 m(2) for C-EBS). Thirty-three species were collected with both gears. Therefore, efficiency of the point sampler (BC) was very high. The comparison of replicability (2 replicate stations per site) showed that only 13-60% (BC) and 22-58% (C-EBS) of species recorded at any given site can be found in both replicates, suggesting a highly patchy distribution of abyssal tanaidaceans. On the other hand many species were recorded in more than ten samples (both in BC and C-EBS). Our results indicate important gear-specific problems suggesting that it would be difficult to say if observed patterns (e.g., the level of patchiness or rarity of a particular species) are true or caused by sampling artefacts.
机译:物种丰富度是一项重要的生物多样性衡量指标,在很大程度上取决于所使用的采样工具。我们比较了两种类型的采样装置(相机上表皮雪橇-C-EBS和巨型箱芯-BC)在千岛堪察加海沟地区的深海平原进行物种多样性评估的效率。就物种丰富度而言,小型,底栖,孵化的金枪鱼是深海大型动物群中被低估的群体,可以作为此类研究的模型组。大量的单例和双例(BC中25%的物种,C-EBS中24%的物种)以及陡峭的物种积累曲线表明采样严重不足。 C-EBS(分别为77和44种)的物种总数和每个齿轮收集的独特物种的数量比BC(分别为46和11种)更高,但考虑到这些差异似乎很小总采样面积(BC的海底面积为5.75 m(2),C-EBS的为53709 m(2))。使用两个齿轮收集了33种。因此,点采样器(BC)的效率非常高。可复制性的比较(每个站点2个复制站)表明,在任何给定站点中记录的物种中,只有13-60%(BC)和22-58%(C-EBS)可以在两个重复中找到,这表明分布高度不规则深渊的tanaidaceans。另一方面,在十多个样本中记录了许多物种(在BC和C-EBS中均如此)。我们的结果表明重要的齿轮问题,这表明很难说观察到的模式(例如特定物种的斑块程度或稀有程度)是真实的还是由人工制品引起的。

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