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哈利蒙-萨拉克山疾病诱捕项目——发布印度尼西亚物种最丰富的DNA条形码库。

The Mt Halimun-Salak Malaise Trap project - releasing the most species rich DNA Barcode library for Indonesia.

作者信息

Cancian de Araujo Bruno, Schmidt Stefan, Schmidt Olga, von Rintelen Thomas, Ubaidillah Rosichon, Balke Michael

机构信息

SNSB-Zoologische Staatssammlung München, Munich, Germany SNSB-Zoologische Staatssammlung München Munich Germany.

Museum für Naturkunde, Leibniz-Institut für Evolutions- und Biodiversitätsforschung, Berlin, Germany Museum für Naturkunde, Leibniz-Institut für Evolutions- und Biodiversitätsforschung Berlin Germany.

出版信息

Biodivers Data J. 2018 Dec 19(6):e29927. doi: 10.3897/BDJ.6.e29927. eCollection 2018.

Abstract

The Indonesian archipelago features an extraordinarily rich biota. However, the actual taxonomic inventory of the archipelago remains highly incomplete and there is hardly any significant taxonomic activity that utilises recent technological advances. The IndoBioSys project was established as a biodiversity information system aiming at, amongst other goals, creating inventories of the Indonesian entomofauna using DNA barcoding. Here, we release the first large scale assessment of the megadiverse insect groups that occur in the Mount Halimun-Salak National Park, one of the largest tropical rain-forest ecosystem in West Java, with a focus on Hymenoptera, Coleoptera, Diptera and Lepidoptera collected with Malaise traps. From September 2015 until April 2016, 34 Malaise traps were placed in different localities in the south-eastern part of the Halimun-Salak National Park. A total of 4,531 specimens were processed for DNA barcoding and in total, 2,382 individuals produced barcode compliant records, representing 1,195 exclusive BINs or putative species in 98 insect families. A total of 1,149 BINs were new to BOLD. Of 1,195 BINs detected, 804 BINs were singletons and more than 90% of the BINs incorporated less than five specimens. The astonishing heterogeneity of BINs, as high as 1.1 exclusive BIN per specimen of Diptera successfully processed, shows that the cost/benefit relationship of the discovery of new species in those areas is very low. In four genera of Chalcidoidea, a superfamily of the Hymenoptera, the number of discovered species was higher than the number of species known from Indonesia, suggesting that our samples contain many species that are new to science. Those numbers shows how fast molecular pipelines contribute substantially to the objective inventorying of the fauna giving us a good picture of how potentially diverse tropical areas might be.

摘要

印度尼西亚群岛拥有极为丰富的生物群。然而,该群岛实际的分类学名录仍极不完整,几乎没有任何利用最新技术进展的重要分类学活动。IndoBioSys项目作为一个生物多样性信息系统而设立,其目标之一是利用DNA条形码技术创建印度尼西亚昆虫区系的名录。在此,我们发布了对哈利蒙 - 沙拉克山国家公园(西爪哇最大的热带雨林生态系统之一)中出现的高度多样化昆虫类群的首次大规模评估,重点关注通过马氏网诱捕收集的膜翅目、鞘翅目、双翅目和鳞翅目昆虫。从2015年9月至2016年4月,在哈利蒙 - 沙拉克国家公园东南部的不同地点放置了34个马氏网。总共对4531个标本进行了DNA条形码分析,总计有2382个个体产生了符合条形码标准的记录,代表98个昆虫科中的1195个独特的BINs或假定物种。共有1149个BINs在BOLD系统中是新的。在检测到的1195个BINs中,有804个BINs是单例,超过90%的BINs包含的标本少于5个。双翅目成功处理的每个标本中高达1.1个独特BINs的惊人BINs异质性表明,在这些地区发现新物种的成本效益关系非常低。在膜翅目的一个超科小蜂总科的四个属中,发现的物种数量高于印度尼西亚已知的物种数量,这表明我们的样本包含许多科学界未知的物种。这些数字显示了分子方法如何迅速为动物区系的客观编目做出重大贡献,让我们很好地了解热带地区可能具有的潜在多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1902/6306476/f761da6eae94/bdj-06-e29927-g001.jpg

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