Molecular phylogenetics of the Umbelopsis genus—identification of new species and evaluation of their oil application value

Author:

Hou Donghai123ORCID,Tang Dexiang123ORCID,Wang Yao12,Zhu Juye12,Luo Run123,Liu Zuoheng12,Lu Yingling123,Sun Tao123,Ma Yanhong4,Zhang Yuyao4,Yu Hong123ORCID

Affiliation:

1. Yunnan Herbal Laboratory, College of Ecology and Environmental Sciences, Yunnan University , Kunming 650504 , China

2. The International Joint Research Center for Sustainable Utilization of Cordyceps Bioresources in China and Southeast Asia, Yunnan University , Kunming, Yunnan 650504 , China

3. School of Life Science, Yunnan University , Kunming, Yunnan 650504 , China

4. Kunming Institute for Food and Drug Control , Kunming 650034 , China

Abstract

Abstract Aims The aim of this study was to reconstruct the evolutionary framework of the genus Umbelopsis by using modern taxonomic strategies and evaluating the quality of oil and prospective uses of three distinct species. Methods and results Three species of Umbelopsis were identified based on morphological characteristics and phylogenetic evidence obtained from three genes (ITS, LSU, and ACT). A new species of Umbelopsis was described and illustrated, and subsequently named U. ophiocordycipiticola. The characteristics of U. ophiocordycipiticola exhibited sporangia with a diameter ranging from 8 to 17 µm. and sporangiospores that were oval to ellipsoidal in shape, irregularly angular, with dimensions of ∼1.9–2.9 × 1.7–3.0 µm. Gas chromatography and mass spectrometry (GC–MS) were used to examine the composition of fatty acids. Notably, U. ophiocordycipiticola showed a significantly higher oil content of 50.89% in dry cell weight (DCW) compared to U. vinacea and U. ramanniana. The mean proportion of polyunsaturated fatty acids (PUFAs) in U. ophiocordycipiticola was 32.38%, and the maximum levels of γ-linolenic acid (GLA), arachidonic acid (ARA), eicosapentaenoic acid (EPA), and docosahexaenoic acid (DHA) in U. ophiocordycipiticola were found to be 14.51, 0.24, 0.54, and 0.53%, respectively. The biodiesel quality from all three species complied with applicable standards set by the American Association for Testing and Materials (ASTM 6751) and the Brazilian National Petroleum Agency (ANP 255). Conclusions The establishment of a novel species, U. ophiocordycipiticola, was strongly supported by morphological and molecular evidence. Umbelopsis ophiocordycipiticola exhibited a high-value PUFA content. Additionally, three Umbelopsis species demonstrated good quality for biodiesel production.

Funder

National Natural Science Foundation of China

College of Ecology and Environmental Sciences

Yunnan University

Publisher

Oxford University Press (OUP)

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