Molecular phylogeny of holothuria (mertensiothuria) leucospilota (Brandt 1835) as inferred from cytochrome c oxidase i mitochondrial dna gene sequences

Holothuria (Mertensiothuria) leucospilota (Brandt 1835), white threads fish or locally known as bat puntil is currently considered as the most abundant sea cucumber species in Malaysia. This study aimed to generate the genetic profile of H. leucospilota from Malaysia and then to determine the ph...

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Main Authors: Kamarudin, Kamarul Rahim, Mohamed Rehan, Aisyah Mohamed Rehan, Hashim, Ridzwan, Usup, Gires, Ahmad, Hajar Fauzan, Anua, Mohd Hanafi, Idris, Mohd Yaman
Format: Article
Language:English
Published: Universiti Kebangsaan Malaysia 2011
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Online Access:http://eprints.uthm.edu.my/7983/1/J6746_25dadb367af84c1b1b13b7627ee47d6e.pdf
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Institution: Universiti Tun Hussein Onn Malaysia
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spelling my.uthm.eprints.79832022-11-08T01:36:54Z http://eprints.uthm.edu.my/7983/ Molecular phylogeny of holothuria (mertensiothuria) leucospilota (Brandt 1835) as inferred from cytochrome c oxidase i mitochondrial dna gene sequences Kamarudin, Kamarul Rahim Mohamed Rehan, Aisyah Mohamed Rehan Hashim, Ridzwan Usup, Gires Ahmad, Hajar Fauzan Anua, Mohd Hanafi Idris, Mohd Yaman T Technology (General) Holothuria (Mertensiothuria) leucospilota (Brandt 1835), white threads fish or locally known as bat puntil is currently considered as the most abundant sea cucumber species in Malaysia. This study aimed to generate the genetic profile of H. leucospilota from Malaysia and then to determine the phylogenetic relationship between H. leucospilota and other members of genus Holothuria using partial sequences of cytochrome c oxidase I (COI) mitochondrial DNA (mtDNA) gene. In this study, specimens of H. leucospilota were collected from Intan Besar Island, Langkawi, Kedah Darul Aman in the west coast of Peninsular Malaysia. Three main methods namely neighbour joining, maximum parsimony and maximum likelihood were used for the phylogenetic tree reconstruction. Tree topologies showed that H. leucospilota has its own monophyletic clade clearly distinct from the other species. The pairwise genetic distance calculated further supported these findings. In addition, the results also should that the COI mtDNA gene is capable to unravel the phylogenetic relationship of H. leucospilota. Universiti Kebangsaan Malaysia 2011 Article PeerReviewed text en http://eprints.uthm.edu.my/7983/1/J6746_25dadb367af84c1b1b13b7627ee47d6e.pdf Kamarudin, Kamarul Rahim and Mohamed Rehan, Aisyah Mohamed Rehan and Hashim, Ridzwan and Usup, Gires and Ahmad, Hajar Fauzan and Anua, Mohd Hanafi and Idris, Mohd Yaman (2011) Molecular phylogeny of holothuria (mertensiothuria) leucospilota (Brandt 1835) as inferred from cytochrome c oxidase i mitochondrial dna gene sequences. Sains Malaysiana, 40 (2). pp. 125-133.
institution Universiti Tun Hussein Onn Malaysia
building UTHM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tun Hussein Onn Malaysia
content_source UTHM Institutional Repository
url_provider http://eprints.uthm.edu.my/
language English
topic T Technology (General)
spellingShingle T Technology (General)
Kamarudin, Kamarul Rahim
Mohamed Rehan, Aisyah Mohamed Rehan
Hashim, Ridzwan
Usup, Gires
Ahmad, Hajar Fauzan
Anua, Mohd Hanafi
Idris, Mohd Yaman
Molecular phylogeny of holothuria (mertensiothuria) leucospilota (Brandt 1835) as inferred from cytochrome c oxidase i mitochondrial dna gene sequences
description Holothuria (Mertensiothuria) leucospilota (Brandt 1835), white threads fish or locally known as bat puntil is currently considered as the most abundant sea cucumber species in Malaysia. This study aimed to generate the genetic profile of H. leucospilota from Malaysia and then to determine the phylogenetic relationship between H. leucospilota and other members of genus Holothuria using partial sequences of cytochrome c oxidase I (COI) mitochondrial DNA (mtDNA) gene. In this study, specimens of H. leucospilota were collected from Intan Besar Island, Langkawi, Kedah Darul Aman in the west coast of Peninsular Malaysia. Three main methods namely neighbour joining, maximum parsimony and maximum likelihood were used for the phylogenetic tree reconstruction. Tree topologies showed that H. leucospilota has its own monophyletic clade clearly distinct from the other species. The pairwise genetic distance calculated further supported these findings. In addition, the results also should that the COI mtDNA gene is capable to unravel the phylogenetic relationship of H. leucospilota.
format Article
author Kamarudin, Kamarul Rahim
Mohamed Rehan, Aisyah Mohamed Rehan
Hashim, Ridzwan
Usup, Gires
Ahmad, Hajar Fauzan
Anua, Mohd Hanafi
Idris, Mohd Yaman
author_facet Kamarudin, Kamarul Rahim
Mohamed Rehan, Aisyah Mohamed Rehan
Hashim, Ridzwan
Usup, Gires
Ahmad, Hajar Fauzan
Anua, Mohd Hanafi
Idris, Mohd Yaman
author_sort Kamarudin, Kamarul Rahim
title Molecular phylogeny of holothuria (mertensiothuria) leucospilota (Brandt 1835) as inferred from cytochrome c oxidase i mitochondrial dna gene sequences
title_short Molecular phylogeny of holothuria (mertensiothuria) leucospilota (Brandt 1835) as inferred from cytochrome c oxidase i mitochondrial dna gene sequences
title_full Molecular phylogeny of holothuria (mertensiothuria) leucospilota (Brandt 1835) as inferred from cytochrome c oxidase i mitochondrial dna gene sequences
title_fullStr Molecular phylogeny of holothuria (mertensiothuria) leucospilota (Brandt 1835) as inferred from cytochrome c oxidase i mitochondrial dna gene sequences
title_full_unstemmed Molecular phylogeny of holothuria (mertensiothuria) leucospilota (Brandt 1835) as inferred from cytochrome c oxidase i mitochondrial dna gene sequences
title_sort molecular phylogeny of holothuria (mertensiothuria) leucospilota (brandt 1835) as inferred from cytochrome c oxidase i mitochondrial dna gene sequences
publisher Universiti Kebangsaan Malaysia
publishDate 2011
url http://eprints.uthm.edu.my/7983/1/J6746_25dadb367af84c1b1b13b7627ee47d6e.pdf
http://eprints.uthm.edu.my/7983/
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