alexa Phylogeography of the Bamboo Locust Ceracris kiangsu (Acrididae: Ceracrinae) Based on Mitochondrial ND2 Sequences | OMICS International
ISSN: 2169-0111

Advancements in Genetic Engineering
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Research Article

Phylogeography of the Bamboo Locust Ceracris kiangsu (Acrididae: Ceracrinae) Based on Mitochondrial ND2 Sequences

Guo-Fang Jiang1,2*,Na-Na Liu2,  Xiao-Dong Li2,3 and Jun-Ying Lan4
1College of Oceanology and Food Science, Quanzhou Normal University, Quanzhou 362000, PR China
2Jiangsu Key Laboratory for Biodiversity and Biotechnology, College of Life Sciences, Nanjing Normal University, PR China
3School of Chemistry and Bioengineering, Hechi University, Yizhou 546300, China
4Changning County Forestry Bureau of Sichuan Province, Changning 644300, PR China
*Corresponding Author : Guo-Fang Jiang
College of Oceanology and Food Science,
Quanzhou Normal University, 
Quanzhou 362000, PR China
E-mail: [email protected]
Rec date: Jan 25, 2016; Acc date: Feb 07, 2016; Pub date: Feb 10, 2016
Citation: Jiang G, Liu N, Li X, Lan J (2016) Phylogeography of the Bamboo Locust Ceracris kiangsu (Acrididae: Ceracrinae) Based on Mitochondrial ND2 Sequences. Adv Genet Eng 5:144. doi:10.4172/2169-0111.1000144
Copyright: © 2016 Jiang G, et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

 

Abstract

The yellow-spined bamboo locust Ceracris kiangsu Tsai, which is important migratory pest in forestry, is endemic to China. However, its population genetic structure and demography are little known. Here, we used mitochondrial ND2 gene to examine the population genetics and phylogeographical structure of C. kiangsu across its distribution range. To test for hierarchical population genetic structure in C. kiangsu, we performed analyses of molecular variance (AMOVA) in ARLEQUIN; the median-joining network was generated for all haplotypes by using software Network; phylogeny of all haplotypes was reconstructed by using Neighbour-joining (NJ) in MEGA and maximumlikelihood (ML) in PAUP. Our results showed none significant values of the population genetic structure for C. kiangsu. Phylogenetic analyses exhibited some shallow genealogy, which were corresponding to networks of C. kiangsu haplotypes. All the analysis results did not divide the bamboo locust haplotypes into independent groups. High gene flow together with a recent and sudden population expansion characterized the population structure of this species. Populations of this species are most likely originated in the FJ, HR and TY locations. The Wuyi and Qingling mountains coupled with other mountains in southern China were not effective barriers limiting gene exchange between neighbouring populations on both sides of these mountains.

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