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一种来自世界性被囊动物的假定脊索动物荧光素表明了跨门生物发光进化的趋同。

A putative chordate luciferase from a cosmopolitan tunicate indicates convergent bioluminescence evolution across phyla.

机构信息

Sackler Institute for Comparative Genomics, American Museum of Natural History, New York, NY, 10024, USA.

Department of Biology, St. Francis College, Brooklyn, NY, USA.

出版信息

Sci Rep. 2020 Oct 20;10(1):17724. doi: 10.1038/s41598-020-73446-w.

Abstract

Pyrosomes are tunicates in the phylum Chordata, which also contains vertebrates. Their gigantic blooms play important ecological and biogeochemical roles in oceans. Pyrosoma, meaning "fire-body", derives from their brilliant bioluminescence. The biochemistry of this light production is unknown, but has been hypothesized to be bacterial in origin. We found that mixing coelenterazine-a eukaryote-specific luciferin-with Pyrosoma atlanticum homogenate produced light. To identify the bioluminescent machinery, we sequenced P. atlanticum transcriptomes and found a sequence match to a cnidarian luciferase (RLuc). We expressed this novel luciferase (PyroLuc) and, combined with coelenterazine, it produced light. A similar gene was recently predicted from a bioluminescent brittle star, indicating that RLuc-like luciferases may have evolved convergently from homologous dehalogenases across phyla (Cnidaria, Echinodermata, and Chordata). This report indicates that a widespread gene may be able to functionally converge, resulting in bioluminescence across animal phyla, and describes and characterizes the first putative chordate luciferase.

摘要

水螅体是脊索动物门中的被囊动物,其门内还包含脊椎动物。它们巨大的繁殖体在海洋中发挥着重要的生态和生物地球化学作用。Pyrosoma 一词意为“火体”,源自其绚丽的生物发光。这种发光的生物化学机制尚不清楚,但据推测起源于细菌。我们发现,将腔肠动物特异性荧光素 coelenterazine-a 与大西洋水螅体匀浆混合可产生光。为了鉴定生物发光机制,我们对大西洋水螅体的转录组进行了测序,发现了与刺胞动物荧光素酶(RLuc)相匹配的序列。我们表达了这种新型荧光素酶(PyroLuc),并与 coelenterazine 结合使用,它产生了光。最近从一种发光的脆星鱼中预测到了一个类似的基因,这表明 RLuc 样荧光素酶可能在门间通过同源脱卤酶从同源脱卤酶进化而来(刺胞动物、棘皮动物和脊索动物)。本报告表明,一个广泛存在的基因可能能够在功能上趋同,从而导致动物门之间的生物发光,并描述和表征了第一个假定的脊索动物荧光素酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf00/7576829/0d7de5c43587/41598_2020_73446_Fig1_HTML.jpg

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