The last primary forests of the Tertiary relict Glyptostrobus pensilis contain the highest genetic diversity

Author:

Wu Xingtong1,Ruhsam Markus2,Wen Yafeng1,Thomas Philip I2,Worth James R P3,Lin Xueying1,Wang Minqiu1,Li Xinyu1,Chen Lu1,Lamxay Vichith4,Le Canh Nam5,Coffman Gretchen6

Affiliation:

1. College of Landscape Architecture, Central South University of Forestry and Technology, No.498,South of Shaoshan Road, Changsha, Hunan 410004, China

2. Royal Botanic Garden Edinburgh, 20A Inverleith Row, Edinburgh EH3 5LR, Scotland

3. Forestry and Forest Products Research Institute, 1 Matsunosato Tsukuba, Ibaraki 305-8687, Japan

4. Faculty of Science, Department of Biology, National University of Lao PDR, Dongdok Campus PO Box 7322 Vientiane, Lao PDR

5. Forest Science Institute of Central Highland and South of Central Viet Nam,09 Hung Vuong, Dalat, Lam Dong 670000, Vietnam

6. Harney Science Center, University of San Francisco, 2130 Fulton Street, CA 94117, USA

Abstract

AbstractGlyptostrobus pensilis (Staunt.) Koch is a relict species in the Cupressaceae that previously had a global distribution but is now restricted to Southern China and two disjunct populations along the Annamite ranges in Laos and Vietnam. Using nuclear and chloroplast microsatellite markers (cpSSR and nSSR, respectively), we investigated the genetic diversity and divergence within and between 14 populations representing the entire range. Nuclear EST-SSR markers revealed low genetic diversity (He = 0.272) within populations and strong genetic differentiation (FST = 0.452) among populations. Populations in Laos, which represent the last primary forests of G. pensilis, contain the highest genetic diversity and are of particular conservation importance. The geographic cpSSR variation is consistent with the results from the nSSR analysis. Prolonged geographical isolation is likely to be the main reason for regional genetic patterns. Climatic changes during the Holocene, coupled with anthropogenic impacts, have further reduced its distribution and population size. The clear genetic structure suggests that at least, two refugia existed at different latitudes in Southeast Asia. Preserving and expanding its remaining habitat and increasing population sizes are likely to be the most important measures for the conservation of this species.

Funder

Forestry industry standard project of China

Royal Botanic Garden Edinburgh

Scottish Government’s Rural and Environment Science and Analytical Services Division

Publisher

Oxford University Press (OUP)

Subject

Forestry

Reference99 articles.

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4. Combining molecular and fossil data to infer demographic history of Quercus cerris: insights on European eastern glacial refugia;Bagnoli;J. Biogeogr.,2016

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