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产油异养甲藻(Crypthecodiniaceae)。

Oleaginous Heterotrophic Dinoflagellates-Crypthecodiniaceae.

机构信息

Division of Life Science, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.

State Key Laboratory of Molecular Neuroscience, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.

出版信息

Mar Drugs. 2023 Feb 28;21(3):162. doi: 10.3390/md21030162.

Abstract

The heterotrophic is a major model for dinoflagellate cell biology, and a major industrial producer of docosahexaenoic acid, a key nutraceutical and added pharmaceutical compound. Despite these factors, the family Crypthecodiniaceae is not fully described, which is partly attributable to their degenerative thecal plates, as well as the lack of ribotype-referred morphological description in many taxons. We report here significant genetic distances and phylogenetic cladding that support inter-specific variations within the Crypthecodiniaceae. We describe sp. nov. Kwok, Law and Wong, that have different genome sizes, ribotypes, and amplification fragment length polymorphism profiles when compared to the . The interspecific ribotypes were supported by distinctive truncation-insertion at the ITS regions that were conserved at intraspecific level. The long genetic distances between Crypthecodiniaceae and other dinoflagellate orders support the separation of the group, which includes related taxons with high oil content and degenerative thecal plates, to be ratified to the order level. The current study provides the basis for future specific demarcation-differentiation, which is an important facet in food safety, biosecurity, sustainable agriculture feeds, and biotechnology licensing of new oleaginous models.

摘要

异养型是甲藻细胞生物学的主要模式,也是二十二碳六烯酸(一种关键的营养保健品和添加药物化合物)的主要工业生产菌。尽管存在这些因素,但 Crypthecodiniaceae 科并未得到充分描述,部分原因是其板片退化,以及许多分类群缺乏基于核糖体类型的形态描述。我们在此报告了显著的遗传距离和系统发育聚类,支持 Crypthecodiniaceae 内的种间变异。我们描述了 sp. nov. Kwok, Law and Wong,与 相比,它们具有不同的基因组大小、核糖体类型和扩增片段长度多态性谱。种间核糖体类型由 ITS 区域的独特截断-插入得到支持,这些区域在种内水平上是保守的。Crypthecodiniaceae 与其他甲藻目之间的长遗传距离支持该组的分离,其中包括具有高油含量和退化板片的相关分类群,应提升到目级水平。本研究为未来的特定划分-分化提供了基础,这是食品安全、生物安全、可持续农业饲料和新油脂模型生物技术许可的一个重要方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b217/10055936/f67d1933cd72/marinedrugs-21-00162-g001.jpg

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