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Development of a multilocus-based approach for sponge (phylum Porifera) identification: refinement and limitations

机译:开发一种基于多点的海绵(Phylum Porifera)识别方法:改进和限制

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For sponges (phylum Porifera), there is no reliable molecular protocol available for species identification. To address this gap, we developed a multilocus-based Sponge Identification Protocol (SIP) validated by a sample of 37 sponge species belonging to 10 orders from South Australia. The universal barcode COI mtDNA, 28S rRNA gene (D3–D5), and the nuclear ITS1-5.8S-ITS2 region were evaluated for their suitability and capacity for sponge identification. The highest Bit Score was applied to infer the identity. The reliability of SIP was validated by phylogenetic analysis. The 28S rRNA gene and COI mtDNA performed better than the ITS region in classifying sponges at various taxonomic levels. A major limitation is that the databases are not well populated and possess low diversity, making it difficult to conduct the molecular identification protocol. The identification is also impacted by the accuracy of the morphological classification of the sponges whose sequences have been submitted to the database. Re-examination of the morphological identification further demonstrated and improved the reliability of sponge identification by SIP. Integrated with morphological identification, the multilocus-based SIP offers an improved protocol for more reliable and effective sponge identification, by coupling the accuracy of different DNA markers.
机译:对于海绵(Phylum Porifera),没有可用于物种鉴定的可靠分子方案。为了解决这一差距,我们开发了由属于南澳大利亚10个订单的37个海绵物种样本验证的基于多层的海绵识别协议(SIP)。普通条形码COI MTDNA,28S rRNA基因(D3-D5)和核ita1-5.8S-ITS2区域被评估了它们的适用性和产能的海绵鉴定。最高比特评分用于推断身份。通过系统发育分析验证了SIP的可靠性。 28S rRNA基因和COI MTDNA在各种分类水平的分类海绵中比其区域更好地进行。主要限制是数据库填充不足并且具有低多样性,使得难以进行分子识别方案。该识别也受到其序列已提交给数据库的轮廓的形态学分类的准确性。重新检查形态识别进一步证明并改善了SIP鉴定的可靠性。通过形态鉴定集成,基于多点的SIP通过耦合不同DNA标记的准确性,提供更改进的方案,用于更可靠和有效的海绵鉴定。

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