The Phylogeography of Deciduous Tree Ulmus macrocarpa (Ulmaceae) in Northern China

Author:

Ye Hang1ORCID,Wang Yiling2,Liu Hengzhao1,Lei Dingfan1,Li Haochen1,Gao Zhimei1,Feng Xiaolong2,Han Mian2,Qie Qiyang2,Zhou Huijuan3

Affiliation:

1. Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education, College of Life Sciences, Northwest University, Xi’an 710069, China

2. School of Life Sciences, Shanxi Normal University, Taiyuan 030031, China

3. Xi’an Botanical Garden of Shaanxi Province (Institute of Botany of Shaanxi Province), Xi’an 710061, China

Abstract

Disentangling how climate oscillations and geographical events significantly influence plants’ genetic architecture and demographic history is a central topic in phytogeography. The deciduous ancient tree species Ulmus macrocarpa is primarily distributed throughout Northern China and has timber and horticultural value. In the current study, we studied the phylogenic architecture and demographical history of U. macrocarpa using chloroplast DNA with ecological niche modeling. The results indicated that the populations’ genetic differentiation coefficient (NST) value was significantly greater than the haplotype frequency (GST) (p < 0.05), suggesting that U. macrocarpa had a clear phylogeographical structure. Phylogenetic inference showed that the putative chloroplast haplotypes could be divided into three groups, in which the group Ⅰ was considered to be ancestral. Despite significant genetic differentiation among these groups, gene flow was detected. The common ancestor of all haplotypes was inferred to originate in the middle–late Miocene, followed by the haplotype overwhelming diversification that occurred in the Quaternary. Combined with demography pattern and ecological niche modeling, we speculated that the surrounding areas of Shanxi and Inner Mongolia were potential refugia for U. macrocarpa during the glacial period in Northern China. Our results illuminated the demography pattern of U. macrocarpa and provided clues and references for further population genetics investigations of precious tree species distributed in Northern China.

Funder

National Natural Science Foundation of China

Research Project of Shanxi Scholarship Council

Natural Science Foundation of Shanxi Province of China

Innovation Project of Postgraduate Education of Shanxi Province

postgraduate innovation project of Shanxi Normal University

Science and Technology Program of Shaanxi Academy of Science

Shaanxi Forestry Science and Technology Innovation Key Project

Qinling Hundred Talents Project of Shaanxi Academy of Science

Publisher

MDPI AG

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