Different Evolutionary Trends of Galloanseres: Mitogenomics Analysis

Author:

Zhou Shengyang1,Wang Xibao1ORCID,Wang Lidong1ORCID,Gao Xiaodong1,Lyu Tianshu1,Xia Tian1ORCID,Shi Lupeng1,Dong Yuehuan1,Mei Xuesong1,Zhang Zhihao1,Zhang Honghai1

Affiliation:

1. College of Life Sciences, Qufu Normal University, Jingxuan West Street No. 57, Qufu 273165, China

Abstract

The two existing clades of Galloanseres, orders Galliformes (landfowl) and Anseriformes (waterfowl), exhibit dramatically different evolutionary trends. Mitochondria serve as primary sites for energy production in organisms, and numerous studies have revealed their role in biological evolution and ecological adaptation. We assembled the complete mitogenome sequences of two species of the genus Aythya within Anseriformes: Aythya baeri and Aythya marila. A phylogenetic tree was constructed for 142 species within Galloanseres, and their divergence times were inferred. The divergence between Galliformes and Anseriformes occurred ~79.62 million years ago (Mya), followed by rapid evolution and diversification after the Middle Miocene (~13.82 Mya). The analysis of selective pressure indicated that the mitochondrial protein-coding genes (PCGs) of Galloanseres species have predominantly undergone purifying selection. The free-ratio model revealed that the evolutionary rates of COX1 and COX3 were lower than those of the other PCGs, whereas ND2 and ND6 had faster evolutionary rates. The CmC model also indicated that most PCGs in Anseriformes exhibited stronger selective constraints. Our study suggests that the distinct evolutionary trends and energy requirements of Galliformes and Anseriformes drive different evolutionary patterns in the mitogenome.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shandong Province

Postdoctoral Fellowship Program of CPSF

Publisher

MDPI AG

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