Javascript must be enabled to continue!
NEW MITOCHONDRIAL MARKERS IMPROVE THE PHYLOGENY OF THE HAWKSBILL TURTLE Eretmochelys imbricata (TESTUDINES: CHELONIIDAE)
View through CrossRef
The sea turtles (Cheloniidae) are a group of seven species of cretaceous origin. Analyses of partial mitochondrial sequences have revealed phylogenetic inconsistences within this group. Nevertheless, these mitochondrial markers have allowed us to understand, explain and clarify population composition in areas of foraging, reproductive habits, inferences of migration patterns and, also, to define management units in the world, in order to trace conservation and monitoring plans. In this study, four methods were evaluated and compared for phylogenetic inference (Neighbor-Joining-NJ, Maximum Likelihood-ML, Maximum Parsimony-MP and Bayesian inference-BI) by using coding genes, ribosomal genes and full mitogenomes of the hawksbill, E. imbricata, and other six species of sea turtles obtained from GenBank. The sequences were analyzed independently and jointly to identify the method and marker that better explain the phylogenetic relationships among this group of reptiles. The NJ, ML, MP and BI trees showed that ND2, COX1, 16S rRNA, ND5, 12S rRNA, ND4 and COX3 are the markers that give phylogenetic trees with better resolution and support, with bootstrap values ranging from 89.0% to 99.98%. ATP6, ATP8, COX2, ND1, ND3, ND5 and ND4L genes presented polytomies. The analysis with full mitogenome often provides highly supported trees (bootstrap 98.0%) compared with single marker analysis. Trees obtained with the BI method and the ND2 gene is the one that better resolved the evolutionary relationships among the species, consolidating the position of E. imbricata within the Carettini tribe with a value of posterior probability of 0.98-1.0. The markers ND2, ND4, ND5 and COIII, not used in previous works, represent a new alternative to explain the phylogeny in this group of marine reptiles. In the present study, a complete mitogenome analysis produced robust and highly supported trees. Key words: phylogenetic relationships, Eretmochelys imbricate, mitogenoma, sea turtles, bootstrap, polytomies
Sociedad Argentina de Genetica
Title: NEW MITOCHONDRIAL MARKERS IMPROVE THE PHYLOGENY OF THE HAWKSBILL TURTLE Eretmochelys imbricata (TESTUDINES: CHELONIIDAE)
Description:
The sea turtles (Cheloniidae) are a group of seven species of cretaceous origin.
Analyses of partial mitochondrial sequences have revealed phylogenetic inconsistences within this group.
Nevertheless, these mitochondrial markers have allowed us to understand, explain and clarify population composition in areas of foraging, reproductive habits, inferences of migration patterns and, also, to define management units in the world, in order to trace conservation and monitoring plans.
In this study, four methods were evaluated and compared for phylogenetic inference (Neighbor-Joining-NJ, Maximum Likelihood-ML, Maximum Parsimony-MP and Bayesian inference-BI) by using coding genes, ribosomal genes and full mitogenomes of the hawksbill, E.
imbricata, and other six species of sea turtles obtained from GenBank.
The sequences were analyzed independently and jointly to identify the method and marker that better explain the phylogenetic relationships among this group of reptiles.
The NJ, ML, MP and BI trees showed that ND2, COX1, 16S rRNA, ND5, 12S rRNA, ND4 and COX3 are the markers that give phylogenetic trees with better resolution and support, with bootstrap values ranging from 89.
0% to 99.
98%.
ATP6, ATP8, COX2, ND1, ND3, ND5 and ND4L genes presented polytomies.
The analysis with full mitogenome often provides highly supported trees (bootstrap 98.
0%) compared with single marker analysis.
Trees obtained with the BI method and the ND2 gene is the one that better resolved the evolutionary relationships among the species, consolidating the position of E.
imbricata within the Carettini tribe with a value of posterior probability of 0.
98-1.
The markers ND2, ND4, ND5 and COIII, not used in previous works, represent a new alternative to explain the phylogeny in this group of marine reptiles.
In the present study, a complete mitogenome analysis produced robust and highly supported trees.
Key words: phylogenetic relationships, Eretmochelys imbricate, mitogenoma, sea turtles, bootstrap, polytomies.
Related Results
Status of Hawksbill Turtle and Green Turtle in Negeri Sembilan, Malaysia
Status of Hawksbill Turtle and Green Turtle in Negeri Sembilan, Malaysia
This paper highlighted the annual distribution, seasonality and reproduction status of two species of sea turtles in Negeri Sembilan, Peninsular Malaysia between January 2016 and J...
The establishment of the Sea Turtle Conservation and Marine Pearl Educational Tourism Website in Sumbreng aims to promote ecosystem balance.
The establishment of the Sea Turtle Conservation and Marine Pearl Educational Tourism Website in Sumbreng aims to promote ecosystem balance.
The coast is an area that has potential for tourist attractions, including for turtle conservation which is relied on as a support for the economy. Turtles are one of the protected...
Making a Turtle Conservation Website and Sumbreng Sea Pearl Education Tour for Ecosystem Balance
Making a Turtle Conservation Website and Sumbreng Sea Pearl Education Tour for Ecosystem Balance
The coast is an area that has the potential to be used as a tourist spot, including for turtle conservation which is relied on as an economic support. Turtles are one of the animal...
Mitochondria Fusion and Fission
Mitochondria Fusion and Fission
Abstract
Mitochondrial structural dynamics is regulated by the fusion or fission of these organelles. Recently published evidence indicates the ...
Penetasan telur penyu sisik (Eretmochelys imbricata) dengan kedalaman yang berbeda
Penetasan telur penyu sisik (Eretmochelys imbricata) dengan kedalaman yang berbeda
This research was conducted from November 2018 until January 2019 which was held at the UPTD Conservation and Supervision of Marine Resources and Fisheries in West Sumatera, Pariam...
Checklist of sea turtles endohelminth in Neotropical region
Checklist of sea turtles endohelminth in Neotropical region
SummaryThis paper presents a list of parasites described in sea turtles from the Neotropical region. Through the review of literature the occurrence of 79 taxa of helminthes parasi...
GW24-e3762 Role Of mitochondrial fission In cardiac microvascular endothelial cells after ischaemia/reperfusion
GW24-e3762 Role Of mitochondrial fission In cardiac microvascular endothelial cells after ischaemia/reperfusion
Objectives
This study is aimed to establish a simulated ischaemia/reperfusion (SI/R) model in cultured CMECs from adult rat, and investigate the role of mitochond...
Principles of the mitochondrial fusion and fission cycle in neurons
Principles of the mitochondrial fusion and fission cycle in neurons
Mitochondrial fusion-fission dynamics play a crucial role in many important cell processes. These dynamics control mitochondrial morphology, which in turn influences several import...

