Genetic diversity and population structure of Cinnamomum balansae Lecomte inferred by microsatellites

Author:

Cui Bei1,Vu Dinh Duy23,Vu Dinh Giap4,Bui Thi Tuyet Xuan56,Rahman Siddiq Ur7,Pham Mai Phuong3,Nguyen Minh Tam8,Nguyen Van Sinh56,Shah Syed Noor Muhammad9,Tran Viet Ha10

Affiliation:

1. Key Comprehensive Laboratory of Forestry, College of Forestry, Northwest A & F University , Yang Ling 712100 , China

2. Graduate University of Science and Technology (GUST), Vietnam Academy of Science and Technology (VAST) , 18 Hoang Quoc Viet , Cau Giay, Hanoi , Vietnam

3. Institute of Tropical Ecology, Vietnam – Russia Tropical Centre, 63 Nguyen Van Huyen , Cau Giay , Hanoi , Vietnam

4. Department of Chemical Technology – Environment, HaUI Institute of Technology, Hanoi University of Industry (HaUI) , 298 Cau Dien , Bac Tu Liem , Hanoi , Vietnam

5. Department of Plant Ecology, Institute of Ecology and Biological Resource, VAST, 18 Hoang Quoc Viet , Cau Giay , Hanoi , Vietnam

6. Graduate University of Science and Technology, VAST, 18 Hoang Quoc Viet , Cau Giay , Hanoi , Vietnam

7. Department of Computer Science & Bioinformatics, Khushal Khan Khattak University, Karak , Khyber Pakhtunkhwa , 27200 , Pakistan

8. Department of Experimental Taxonomy and Genetic Diversity, Vietnam National Museum of Nature, VAST , 18 Hoang Quoc Viet , Cau Giay , Hanoi , Vietnam

9. Department of Horticulture, Faculty of Agriculture, Gomal University , Dera Ismail Khan, 29220 , Pakistan

10. Faculty of Silviculture, Vietnam National University of Forestry , Xuan Mai , Chuong My , Hanoi , Vietnam

Abstract

Abstract Cinnamomum balansae Lecomte (Lauraceae), an economically important forest tree, is distributed in the tropical forests of central and northern Vietnam, which has been threatened in recent decades due to the destruction of its habitat and over-exploitation. The genetic diversity and population structure of the species have not been fully evaluated. We used a set of 15 microsatellites to analyze 161 adult trees from 9 different populations, representing the geographical distribution of C. balansae. Ninety-two different alleles were identified. Here our results showed a low genetic diversity level with an average H o = 0.246 and H e = 0.262, and a high level of genetic differentiation (F ST = 0.601). The bottleneck tests indicated evidence of a reduction in the population size of the two populations (TC and CP). Additionally, all three clustering methods (Bayesian analysis, principal coordinate analysis, and Neighbor-joining tree) were identified in the two genetic groups. The Mantel test showed a significant positive correlation between genetic distance and geographic distance (R 2 = 0.7331). This study will provide a platform for the conservation of C. balansae both in ex-situ and in-situ plans.

Publisher

Walter de Gruyter GmbH

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Neuroscience

Reference56 articles.

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