Intraspecific differentiation of Lindera obtusiloba as revealed by comparative plastomic and evolutionary analyses

Author:

Tian Xiangyu1ORCID,Guo Jia2,Song Yu34,Yu Qunfei5,Liu Chao6,Fu Zhixi7,Shi Yuhua2,Shao Yizhen1,Yuan Zhiliang1

Affiliation:

1. College of Life Sciences Henan Agricultural University Zhengzhou Henan China

2. School of Life Sciences Zhengzhou University Zhengzhou Henan China

3. Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection (Ministry of Education) Guangxi Normal University Guilin Guangxi China

4. Guangxi Key Laboratory of Landscape Resources Conservation and Sustainable Utilization in Lijiang River Basin Guangxi Normal University Guilin Guangxi China

5. Center for Integrative Conservation, Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences Mengla Yunnan China

6. College of Biological Resource and Food Engineering Qujing Normal University Qujing Yunnan China

7. College of Life Sciences Sichuan Normal University Chengdu China

Abstract

AbstractLindera obtusiloba Blume is the northernmost tree species in the family Lauraceae, and it is a key species in understanding the evolutionary history of this family. The species of L. obtusiloba in East Asia has diverged into the Northern and Southern populations, which are geographically separated by an arid belt. Though the morphological differences between populations have been observed and well documented, intraspecific variations at the plastomic level have not been systematically investigated to date. Here, ten chloroplast genomes of L. obtusiloba individuals were sequenced and analyzed along with three publicly available plastomes. Comparative plastomic analysis suggests that both the Northern and the Southern populations share similar overall structure, gene order, and GC content in their plastomes although the size of the plasome and the level of intraspecific variability do vary between the two populations. The Northern have relatively larger plastomes while the Southern population possesses higher intraspecific variability, which could be attributed to the complexity of the geological environments in the South. Phylogenomic analyses also support the split of the Northern and Southern clades among L. obtusiloba individuals. However, there is no obvious species boundary between var. obtusiloba and var. heterophylla in the Southern population, indicating that gene flow could still occur between these two varieties, and this could be used as a good example of reticulate evolution. It is also found that a few photosynthesis‐related genes are under positive selection, which is mainly related to the geological and environmental differences between the Northern and the Southern regions. Our results provide a reference for phylogenetic analysis within species and suggest that phylogenomic analyses with a sufficient number of nuclear and chloroplast genomic target loci from widely distributed individuals could provide a deeper understanding of the population evolution of the widespread species.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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