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通过生态本体论框架探索酿酒酵母的生态。

Exploring Saccharomycotina Yeast Ecology Through an Ecological Ontology Framework.

机构信息

Department of Biological Sciences, Vanderbilt University, Nashville, Tennessee, USA.

Evolutionary Studies Initiative, Vanderbilt University, Nashville, Tennessee, USA.

出版信息

Yeast. 2024 Oct;41(10):615-628. doi: 10.1002/yea.3981. Epub 2024 Sep 18.

Abstract

Yeasts in the subphylum Saccharomycotina are found across the globe in disparate ecosystems. A major aim of yeast research is to understand the diversity and evolution of ecological traits, such as carbon metabolic breadth, insect association, and cactophily. This includes studying aspects of ecological traits like genetic architecture or association with other phenotypic traits. Genomic resources in the Saccharomycotina have grown rapidly. Ecological data, however, are still limited for many species, especially those only known from species descriptions where usually only a limited number of strains are studied. Moreover, ecological information is recorded in natural language format limiting high throughput computational analysis. To address these limitations, we developed an ontological framework for the analysis of yeast ecology. A total of 1,088 yeast strains were added to the Ontology of Yeast Environments (OYE) and analyzed in a machine-learning framework to connect genotype to ecology. This framework is flexible and can be extended to additional isolates, species, or environmental sequencing data. Widespread adoption of OYE would greatly aid the study of macroecology in the Saccharomycotina subphylum.

摘要

子囊菌亚门下的酵母分布在全球各地的不同生态系统中。酵母研究的一个主要目标是了解生态特征的多样性和进化,如碳代谢广度、昆虫共生和仙人掌偏好。这包括研究生态特征的遗传结构或与其他表型特征的关联等方面。子囊菌的基因组资源发展迅速。然而,许多物种的生态数据仍然有限,特别是那些仅从物种描述中得知的物种,这些物种通常只研究了有限数量的菌株。此外,生态信息以自然语言格式记录,限制了高通量计算分析。为了解决这些限制,我们开发了一个用于酵母生态学分析的本体框架。总共将 1088 株酵母菌株添加到酵母环境本体 (OYE) 中,并在机器学习框架中进行了分析,以将基因型与生态联系起来。该框架具有灵活性,可以扩展到其他分离株、物种或环境测序数据。广泛采用 OYE 将极大地帮助子囊菌亚门的宏观生态学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9e5/11522959/e6de60e512a1/nihms-2031488-f0001.jpg

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