Molecular diversity and phylogenetic relationships of the gastropod genus Melanoides in Lake Malawi

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Standard

Molecular diversity and phylogenetic relationships of the gastropod genus Melanoides in Lake Malawi. / Jørgensen, Louise von Gersdorff; Jørgensen, Aslak; Krogsgaard Kristensen, Thomas.

I: African Zoology, Bind 40, Nr. 2, 2005, s. 179-191.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Jørgensen, LVG, Jørgensen, A & Krogsgaard Kristensen, T 2005, 'Molecular diversity and phylogenetic relationships of the gastropod genus Melanoides in Lake Malawi', African Zoology, bind 40, nr. 2, s. 179-191. https://doi.org/10.1080/15627020.2005.11407317

APA

Jørgensen, L. V. G., Jørgensen, A., & Krogsgaard Kristensen, T. (2005). Molecular diversity and phylogenetic relationships of the gastropod genus Melanoides in Lake Malawi. African Zoology, 40(2), 179-191. https://doi.org/10.1080/15627020.2005.11407317

Vancouver

Jørgensen LVG, Jørgensen A, Krogsgaard Kristensen T. Molecular diversity and phylogenetic relationships of the gastropod genus Melanoides in Lake Malawi. African Zoology. 2005;40(2):179-191. https://doi.org/10.1080/15627020.2005.11407317

Author

Jørgensen, Louise von Gersdorff ; Jørgensen, Aslak ; Krogsgaard Kristensen, Thomas. / Molecular diversity and phylogenetic relationships of the gastropod genus Melanoides in Lake Malawi. I: African Zoology. 2005 ; Bind 40, Nr. 2. s. 179-191.

Bibtex

@article{0473143bfd1d47c4ae2e283e817b6a9a,
title = "Molecular diversity and phylogenetic relationships of the gastropod genus Melanoides in Lake Malawi",
abstract = "The freshwater snails belonging to the genus Melanoides Olivier, 1804 are widespread across tropical regions of the world and endemic species have evolved in the African Lakes Malawi, Mweru and Tanganyika. The endemic Melanoides species of Lake Malawi have been investigated several times during the last century, due to their large conchological variation, but no unambiguous answer regarding the number of species has been given. The phylogenetic relationship between morphs or genetic clones of Melanoides in Lake Malawi was inferred by phylogenetic analyses of DNA sequence data from the mitochondrial genes 16S and COI. Additional sequences from GenBank were included to investigate the relationship to other morphs from different parts of the world. For the first time, a putative secondary structure was developed for a partial region of 16S in this genus to identify the variability of the secondary structure in stems and loops. The molecular analyses indicated that several genetic clones exist in Lake Malawi and that M. tuberculata is a paraphyletic taxon. It is not clear from the results whether invasions or dispersals account for the complex situation in Lake Malawi. The basal position of M. admirabilis, endemic to Lake Tanganyika, in the inferred phylogeny indicates that Africa might be the origin of the genus. The results further indicate that three major clades of Melanoides, consisting of several genetic clones, are present in Lake Malawi; one clade consisting of invasive M. tuberculata, another of native M. tuberculata and a third consisting of the M. polymorpha- complex. It appears as if the unique development of morphs within the Melanoides genus in Lake Malawi has evolved primarily by divergence of genetic clones instead of species differentiation.",
author = "J{\o}rgensen, {Louise von Gersdorff} and Aslak J{\o}rgensen and {Krogsgaard Kristensen}, Thomas",
year = "2005",
doi = "10.1080/15627020.2005.11407317",
language = "English",
volume = "40",
pages = "179--191",
journal = "African Zoology",
issn = "1562-7020",
publisher = "National Inquiry Services Centre",
number = "2",

}

RIS

TY - JOUR

T1 - Molecular diversity and phylogenetic relationships of the gastropod genus Melanoides in Lake Malawi

AU - Jørgensen, Louise von Gersdorff

AU - Jørgensen, Aslak

AU - Krogsgaard Kristensen, Thomas

PY - 2005

Y1 - 2005

N2 - The freshwater snails belonging to the genus Melanoides Olivier, 1804 are widespread across tropical regions of the world and endemic species have evolved in the African Lakes Malawi, Mweru and Tanganyika. The endemic Melanoides species of Lake Malawi have been investigated several times during the last century, due to their large conchological variation, but no unambiguous answer regarding the number of species has been given. The phylogenetic relationship between morphs or genetic clones of Melanoides in Lake Malawi was inferred by phylogenetic analyses of DNA sequence data from the mitochondrial genes 16S and COI. Additional sequences from GenBank were included to investigate the relationship to other morphs from different parts of the world. For the first time, a putative secondary structure was developed for a partial region of 16S in this genus to identify the variability of the secondary structure in stems and loops. The molecular analyses indicated that several genetic clones exist in Lake Malawi and that M. tuberculata is a paraphyletic taxon. It is not clear from the results whether invasions or dispersals account for the complex situation in Lake Malawi. The basal position of M. admirabilis, endemic to Lake Tanganyika, in the inferred phylogeny indicates that Africa might be the origin of the genus. The results further indicate that three major clades of Melanoides, consisting of several genetic clones, are present in Lake Malawi; one clade consisting of invasive M. tuberculata, another of native M. tuberculata and a third consisting of the M. polymorpha- complex. It appears as if the unique development of morphs within the Melanoides genus in Lake Malawi has evolved primarily by divergence of genetic clones instead of species differentiation.

AB - The freshwater snails belonging to the genus Melanoides Olivier, 1804 are widespread across tropical regions of the world and endemic species have evolved in the African Lakes Malawi, Mweru and Tanganyika. The endemic Melanoides species of Lake Malawi have been investigated several times during the last century, due to their large conchological variation, but no unambiguous answer regarding the number of species has been given. The phylogenetic relationship between morphs or genetic clones of Melanoides in Lake Malawi was inferred by phylogenetic analyses of DNA sequence data from the mitochondrial genes 16S and COI. Additional sequences from GenBank were included to investigate the relationship to other morphs from different parts of the world. For the first time, a putative secondary structure was developed for a partial region of 16S in this genus to identify the variability of the secondary structure in stems and loops. The molecular analyses indicated that several genetic clones exist in Lake Malawi and that M. tuberculata is a paraphyletic taxon. It is not clear from the results whether invasions or dispersals account for the complex situation in Lake Malawi. The basal position of M. admirabilis, endemic to Lake Tanganyika, in the inferred phylogeny indicates that Africa might be the origin of the genus. The results further indicate that three major clades of Melanoides, consisting of several genetic clones, are present in Lake Malawi; one clade consisting of invasive M. tuberculata, another of native M. tuberculata and a third consisting of the M. polymorpha- complex. It appears as if the unique development of morphs within the Melanoides genus in Lake Malawi has evolved primarily by divergence of genetic clones instead of species differentiation.

U2 - 10.1080/15627020.2005.11407317

DO - 10.1080/15627020.2005.11407317

M3 - Journal article

VL - 40

SP - 179

EP - 191

JO - African Zoology

JF - African Zoology

SN - 1562-7020

IS - 2

ER -

ID: 164884834