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单细胞转录组和色素生物化学分析揭示了紫色海参具有高营养价值和药用价值的潜力。

Single-Cell Transcriptome and Pigment Biochemistry Analysis Reveals the Potential for the High Nutritional and Medicinal Value of Purple Sea Cucumbers.

机构信息

CAS Key Laboratory of Marine Ecology and Environmental Sciences, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China.

CAS Engineering Laboratory for Marine Ranching, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China.

出版信息

Int J Mol Sci. 2023 Jul 30;24(15):12213. doi: 10.3390/ijms241512213.

Abstract

The sea cucumber has important nutritional and medicinal value. Unfortunately, we know little of the source of active chemicals in this animal, but the plentiful pigments of these animals are thought to function in intriguing ways for translation into clinical and food chemistry usage. Here, we found key cell groups with the gene activity predicted for the color morphology of sea cucumber body using single-cell RNA-seq. We refer to these cell populations as melanocytes and quinocytes, which are responsible for the synthesis of melanin and quinone pigments, respectively. We integrated analysis of pigment biochemistry with the transcript profiles to illuminate the molecular mechanisms regulating distinct pigment formation in echinoderms. In concert with the correlated pigment analysis from each color morph, this study expands our understanding of medically important pigment production, as well as the genetic mechanisms for color morphs, and provides deep datasets for exploring advancements in the fields of bioactives and nutraceuticals.

摘要

海参具有重要的营养和药用价值。遗憾的是,我们对这种动物体内活性化学物质的来源知之甚少,但人们认为这些动物丰富的色素以有趣的方式作用于临床和食品化学用途。在这里,我们使用单细胞 RNA-seq 找到了具有预测海参体色基因活性的关键细胞群。我们将这些细胞群体称为黑色素细胞和醌细胞,它们分别负责黑色素和醌类色素的合成。我们将色素生物化学与转录谱的综合分析结合起来,阐明了调节棘皮动物不同色素形成的分子机制。与每种颜色形态的相关色素分析相协调,这项研究扩展了我们对医学上重要色素生成以及颜色形态遗传机制的理解,并为探索生物活性物质和营养保健品领域的进展提供了深入的数据集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c35/10419132/0c44d0958dc2/ijms-24-12213-g001.jpg

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