Javascript must be enabled to continue!
Haplotypes of the tRNAleu-COII mtDNA Region in Russian Apis mellifera Populations
View through CrossRef
Analysis of the mtDNA tRNAleu-COII locus is a widely used tool to establish belonging to a particular evolutionary lineage of Apis mellifera L. (lineages A, M, C, O, and Y). In Russia, most of the area was once inhabited by Apis mellifera mellifera from the M evolutionary lineage, but the introduction of bee subspecies from the southern regions of Russia (A. m. caucasica, A. m. carnica) and from abroad (A. m. carnica, A. m. ligustica) led to fragmentation of their native range. In this study, the results of assessing the haplotype number for the tRNAleu-COII locus of mtDNA in Russian Apis mellifera populations were presented. We analyzed 269 colonies from 19 regions of Russia. As a result, two evolutionary lineages were identified: the East European lineage C (26.4%) and the Northwestern European lineage M (73.6%). A total of 29 haplotypes were identified, 8 of them were already reported, and 21 were found to be novel. From the C lineage, haplotypes C1, C2, C2c, C2j, and C3 were predominant. All M lineage samples from Russia belong to the M17 and M4’ haplogroups but have only minor variations in the form of nucleotide substitutions. An analysis of publications devoted to the tRNAleu-COII locus haplotypes, as well as an analysis of the available tRNAleu-COII sequences in GenBank, showed that there is still a problem with the haplotype nomenclature.
Title: Haplotypes of the tRNAleu-COII mtDNA Region in Russian Apis mellifera Populations
Description:
Analysis of the mtDNA tRNAleu-COII locus is a widely used tool to establish belonging to a particular evolutionary lineage of Apis mellifera L.
(lineages A, M, C, O, and Y).
In Russia, most of the area was once inhabited by Apis mellifera mellifera from the M evolutionary lineage, but the introduction of bee subspecies from the southern regions of Russia (A.
m.
caucasica, A.
m.
carnica) and from abroad (A.
m.
carnica, A.
m.
ligustica) led to fragmentation of their native range.
In this study, the results of assessing the haplotype number for the tRNAleu-COII locus of mtDNA in Russian Apis mellifera populations were presented.
We analyzed 269 colonies from 19 regions of Russia.
As a result, two evolutionary lineages were identified: the East European lineage C (26.
4%) and the Northwestern European lineage M (73.
6%).
A total of 29 haplotypes were identified, 8 of them were already reported, and 21 were found to be novel.
From the C lineage, haplotypes C1, C2, C2c, C2j, and C3 were predominant.
All M lineage samples from Russia belong to the M17 and M4’ haplogroups but have only minor variations in the form of nucleotide substitutions.
An analysis of publications devoted to the tRNAleu-COII locus haplotypes, as well as an analysis of the available tRNAleu-COII sequences in GenBank, showed that there is still a problem with the haplotype nomenclature.
Related Results
54 THE DEVELOPMENT AND CHARACTERIZATION OF MITOCHONDRIAL DNA
(MTDNA)-DEPLETED CAPRA HIRCUS FETAL FIBROBLASTS: CANDIDATE DONORS FOR SOMATIC
CELL NUCLEAR TRANSFER (SCNT)
54 THE DEVELOPMENT AND CHARACTERIZATION OF MITOCHONDRIAL DNA
(MTDNA)-DEPLETED CAPRA HIRCUS FETAL FIBROBLASTS: CANDIDATE DONORS FOR SOMATIC
CELL NUCLEAR TRANSFER (SCNT)
Mammalian mtDNA is approximately 16.6 kb in size. It has 37 genes, 13 of which encode protein subunits of the oxidative phosphorylation (OXPHOS) system, the major ATP-generating pa...
The Secure Computation Application Programming Interface Using The ARAS Method
The Secure Computation Application Programming Interface Using The ARAS Method
An Application Programming Interface (API) entails guidelines, Principles and an
array of utilities, it stands as distinct software Applications interacting with one another
commun...
Genetic methods in honey bee breeding
Genetic methods in honey bee breeding
The honey bee Apis mellifera is a rather difficult object for selection due to the peculiarities of its biology. Breeding activities in beekeeping are aimed at obtaining bee coloni...
Generation of mtDNA Homoplasmic Cloned Lambs
Generation of mtDNA Homoplasmic Cloned Lambs
Abstract
Generally in mammals, individual animals contain only maternally inherited mitochondrial DNA (mtDNA), as paternal (sperm)-derived mi...
Apis Mellifera Animal Study in a Role Perspective Using the Bibliometrix Tools (SLNA Method Application)
Apis Mellifera Animal Study in a Role Perspective Using the Bibliometrix Tools (SLNA Method Application)
There is no research on the study of Apis mellifera using bibliometrix tools. This study aims to determine the results of the study of Apis mellifera in a role perspective using Bi...
Genetic characteristics of the Gray Mountain Caucasian Bee <i>Apis mellifera caucasica</i>
Genetic characteristics of the Gray Mountain Caucasian Bee <i>Apis mellifera caucasica</i>
In this study we present the results of a comparative genetic analysis of bees of the Apis mellifera caucasica subspecies with the subspecies A. m. carnica and A. m. mellifera. We ...
Abstract 17097: Non-Synonymous Mitochondrial DNA Variants Are Common in Myocardial Tissue of Heart Failure Patients
Abstract 17097: Non-Synonymous Mitochondrial DNA Variants Are Common in Myocardial Tissue of Heart Failure Patients
Introduction:
Mitochondrial heart disease due to pathogenic mitochondrial DNA (mtDNA) mutations can present as hypertrophic or dilated cardiomyopathy, ventricular arrhy...
Nosemosis in Russian Apis mellifera L. Populations: Distribution and Association with Hybridization
Nosemosis in Russian Apis mellifera L. Populations: Distribution and Association with Hybridization
One of the common causes of mass death in bee colonies is the infectious disease nosemosis, which is caused by two types of microsporidia, Nosema apis and Nosema ceranae. Of the ma...

