Novel molecular resources for single-specimen barcoding of enigmatic crustacean y-larvae

IF 1.8 2区 生物学 Q3 EVOLUTIONARY BIOLOGY
Niklas Dreyer, Jørgen Olesen, Mark J. Grygier, Danny Eibye-Jacobsen, Alexandra S. Savchenko, Yoshihisa Fujita, Gregory A. Kolbasov, Ryuji J. Machida, Benny K. K. Chan, Ferran Palero
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引用次数: 0

Abstract

Despite discovery more than 100 years ago and documented global occurrence from shallow waters to the deep sea, the life cycle of the enigmatic crustacean y-larvae isincompletely understood and adult forms remain unknown. To date, only 2 of the 17 formally described species, all based on larval stages, have been investigated using an integrative taxonomic approach. This approach provided descriptions of the morphology of the naupliar and cyprid stages, and made use of exuvial voucher material and DNA barcodes. To improve our knowledge about the evolutionary history and ecological importance of y-larvae, we developed a novel protocol that maximises the amount of morpho-ecological and molecular data that can be harvested from single larval specimens. This includes single-specimen DNA barcoding and daily imaging of y-nauplii reared in culture dishes, mounting of the last naupliar exuviae on a slide as a reference voucher, live imaging of the y-cyprid instar that follows, and fixation, DNA extraction, amplification and sequencing of the y-cyprid specimen. Through development and testing of a suite of new primers for both nuclear and mitochondrial protein-coding and ribosomal genes, we showcase how new sequence data can be used to estimate the phylogeny of Facetotecta. We expect that our novel procedure will help to unravel the complex systematics of y-larvae and show how these fascinating larval forms have evolved. Moreover, we posit that our protocols should work on larval specimens from a diverse array of moulting marine invertebrate taxa.

用于对神秘甲壳类 y 型幼体进行单样本条形编码的新型分子资源
尽管早在 100 多年前就发现了这种甲壳类动物,并记录了从浅水到深海的全球分布情况,但人们对这种神秘甲壳类动物的生命周期仍一无所知,其成虫形态也仍不为人所知。迄今为止,在 17 个正式描述的物种中,只有 2 个物种(均以幼虫阶段为基础)采用综合分类方法进行了研究。这种方法提供了对初生幼体和幼体阶段形态的描述,并利用了冲积层凭证材料和 DNA 条形码。为了更好地了解 y 型幼体的进化史和生态重要性,我们开发了一种新的方案,可以从单个幼体标本中获取最大数量的形态生态学和分子数据。这包括对在培养皿中饲养的幼体进行单个标本DNA条形码编码和每日成像,将最后一个幼体的外植体安装在载玻片上作为参考凭证,对随后的幼体蜕皮期进行实时成像,以及对幼体标本进行固定、DNA提取、扩增和测序。通过开发和测试一套针对核和线粒体蛋白编码基因和核糖体基因的新引物,我们展示了如何利用新的序列数据来估算 Facetotecta 的系统发育。我们希望我们的新程序将有助于揭示 Y 型幼虫复杂的系统学,并展示这些迷人的幼虫是如何进化的。此外,我们认为我们的方法应该适用于各种蜕皮海洋无脊椎动物类群的幼体标本。
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来源期刊
Invertebrate Systematics
Invertebrate Systematics 生物-动物学
CiteScore
4.30
自引率
9.10%
发文量
35
审稿时长
>12 weeks
期刊介绍: Invertebrate Systematics (formerly known as Invertebrate Taxonomy) is an international journal publishing original and significant contributions on the systematics, phylogeny and biogeography of all invertebrate taxa. Articles in the journal provide comprehensive treatments of clearly defined taxonomic groups, often emphasising their biodiversity patterns and/or biological aspects. The journal also includes contributions on the systematics of selected species that are of particular conservation, economic, medical or veterinary importance. Invertebrate Systematics is a vital resource globally for scientists, students, conservation biologists, environmental consultants and government policy advisors who are interested in terrestrial, freshwater and marine systems. Invertebrate Systematics is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.
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