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评估样本采集方法和 DNA metabarcoding 对鉴定食蜜蝙蝠利用植物多样性的效果。

Evaluating the efficacy of sample collection approaches and DNA metabarcoding for identifying the diversity of plants utilized by nectivorous bats.

机构信息

a Center for Conservation and Sustainable Development, Missouri Botanical Garden, 4344 Shaw Blvd., St. Louis, MO 63110, USA.

b Department of Biology, Saint Louis University, 1008 Spring Ave., St. Louis, MO 63110, USA.

出版信息

Genome. 2019 Jan;62(1):19-29. doi: 10.1139/gen-2018-0102. Epub 2018 Nov 27.

Abstract

In this study, we evaluated the efficacy of sample collection approaches and DNA metabarcoding to identify plants utilized by nectivorous bats. Samples included guano collected from beneath bat roosts and pollen-swabs from bat fur, both of which were subjected to DNA metabarcoding and visual identification of pollen (microscopy) to measure plant diversity. Our objectives were to determine whether DNA metabarcoding could detect likely food plants of nectivorous bats, whether sample types would produce different estimates of plant diversity, and to compare results of DNA metabarcoding to visual identification. Visual identification found that 99% of pollen was from Agave, which is thought to be the bats' main food source. The dominant taxon found by metabarcoding was also Agavoideae, but a broader diversity of plant species was also detected, many of which are likely "by-catch" from the broader environment. Metabarcoding outcomes differed between sample types, likely because pollen-swabs measured the plant species visited by bats and guano samples measured all items consumed in the bat's diet, even those that were not pollen or nectar. Overall, metabarcoding is a powerful, high-throughput tool to understand bat ecology and species interactions, but careful analysis of results is necessary to derive accurate ecological conclusions.

摘要

在这项研究中,我们评估了样本采集方法和 DNA 代谢组学在鉴定食蜜蝙蝠所利用植物方面的效果。样本包括从蝙蝠栖息地下方采集的粪便和从蝙蝠皮毛上采集的花粉拭子,这两种样本都进行了 DNA 代谢组学分析和花粉的可视化鉴定(显微镜观察),以测量植物多样性。我们的目标是确定 DNA 代谢组学是否可以检测到食蜜蝙蝠可能的食物植物,样本类型是否会产生不同的植物多样性估计,以及比较 DNA 代谢组学和可视化鉴定的结果。可视化鉴定发现,99%的花粉来自龙舌兰属植物,这被认为是蝙蝠的主要食物来源。代谢组学发现的主要分类群也是龙舌兰科,但也检测到了更广泛的植物物种多样性,其中许多可能是来自更广泛环境的“附带捕获物”。代谢组学结果在样本类型之间存在差异,这可能是因为花粉拭子测量了蝙蝠访问的植物物种,而粪便样本则测量了蝙蝠饮食中消耗的所有物品,甚至包括那些不是花粉或花蜜的物品。总的来说,代谢组学是一种强大的、高通量的工具,可以帮助我们了解蝙蝠的生态学和物种相互作用,但需要对结果进行仔细分析,才能得出准确的生态结论。

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