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Data from: Losing cichlid fish biodiversity: genetic and morphological homogenization of tilapia following colonization by introduced species
负责人:
关键词:
Oreochromis niloticus;cichlid;Oreochromis urolepis;hybridization;Oreochromis leucostictus
DOI:
doi:10.5061/dryad.38c4h63
摘要:
(Oreochromis urolepis) and the introduced Nile tilapia (Oreochromis niloticus) or blue-spotted tilapia (Oreochromis leucostictus). At both sites, purebred individuals
Data from: On the occurrence of three non-native cichlid species including the first record of a feral population of Pelmatolapia (Tilapia) maria
负责人:
关键词:
tilapia;Pelmatolapia mariae;Oreochromis sp.;biological invasion;thermally polluted;invasion biology;Amatitlania nigrofasciata;thermally influenced freshwater systems;non-native species
DOI:
doi:10.5061/dryad.sd7vh
摘要:
proliferating populations beyond their native ranges. In Germany, non-native convict cichlids (Amatitlania nigrofasciata) and tilapia (Oreochromis sp.) hav
Data from: Strong assortative mating by diet, color, size, and morphology but limited progress toward sympatric speciation in a classic examp
负责人:
关键词:
Tilapia fusiforme;adaptive radiation;sexual selection;sympatric speciation;Tilapia deckerti
DOI:
doi:10.5061/dryad.6s241
摘要:
ng within a species complex of Tilapia in Lake Ejagham, Cameroon, a celebrated example of incipient sympatric adaptive radiation. This species complex is in the earliest stages
Data from: Mitochondrial and morphological variation of Tilapia zillii in Israel
负责人:
关键词:
population genetics;Tilapia zillii;mitochondrial control region;meristic counts
DOI:
doi:10.5061/dryad.29g768sc
摘要:
BACKGROUND: Tilapia zillii is widespread in the East Levant inland aquatic systems as well as in artificial water reservoirs. In this study
Data from: Eco-morphological differentiation in Lake Magadi tilapia, an extremophile cichlid fish living in hot, alkaline and hypersaline la
负责人:
关键词:
stable isotopes;Site Frequency Spectrum;Soda lakes;niche width;Cichlidae;RAD-seq;Alcolapia grahami
DOI:
doi:10.5061/dryad.h13jv
摘要:
, geometric morphometrics, and stable isotope analyses to investigate the eco-morphological diversification of tilapia in Lake Magadi and its satellite lake Little Magadi
Data from: Production of omega-3 enriched tilapia through the dietary use of algae meal or fish oil: Improved nutrient value of fillet and offal
负责人:
关键词:
omega-3;Fish;Oreochromis spp.;diet;aquacultura
DOI:
doi:10.5061/dryad.1h9g7
摘要:
The goal of this project was to increase the nutrient value of fillets, by-product muscle, and offal of aquacultured tilapia. A diet that includes
Data from: Fine tuning for the tropics: application of eDNA technology for invasive fish detection in tropical freshwater ecosystems.
负责人:
关键词:
Environmental DNA;Oreochromis mossambicus;cichlid;Fish;tilapia;invasive species;Conservation Biology
DOI:
doi:10.5061/dryad.6n5s3
摘要:
, Mozambique tilapia (Oreochromis mossambicus) as a detection model. We evaluated the effects of high water temperatures and fish density on the detection of tilapia
Data from: Whole-genome sequences of Malawi cichlids reveal multiple radiations interconnected by gene flow
负责人:
关键词:
Lethrinops auritus;Placidochromis cf. longimanus;Fossorochromis rostratus;Lethrinops gossei;Tyrannochromis nigriventer;Dimidiochromis dimidiatus;Astatotilapia burtoni;Otopharynx tetrastigma;Rhamphochromis woodi;Stigmatochromis modestus;Aulonocara \u2018minutus\u2019;Placidochromis johnstoni;Diplotaxodon \u2018macrops black dorsal\u2019;Lethrinops \u2018longimanus redhead\u2019;Astatotilapia bloyeti;Chilotilapia rhoadesii;Dimidiochromis compressiceps;Nimbochromis linni;Placidochromis electra;Taeniolethrinops praeorbitalis;Diplotaxodon greenwoodi;Diplotaxodon macrops;Cynotilapia axelrodi;Ctenopharynx nitidus;Lethrinops lethrinus;Diplotaxodon \u2018similis white back\u2019;Placidochromis subocularis;Aulonocara stuartgranti;Copadichromis virginalis;Protomelas ornatus;Alticorpus macrocleithrum;Mylochromis ericotaenia;Dimidiochromis strigatus;Aulonocara steveni;Cynotilapia afra;Astatotilapia calliptera;Copadichromis trimaculatus;Champsochromis caeruleus;Lethrinops \u2018oliveri\u2019;Buccochromis rhoadesii;Diplotaxodon \u2018macrops ngulube\u2019;Otopharynx lithobates;Nimbochromis polystigma;Taeniolethrinops furcicauda;Otopharynx \u2018brooksi nkhata\u2019;Hemitaeniochromis spilopterus;Lethrinops albus;Mylochromis melanotaenia;Rhamphochromis longiceps;Astatotilapia tweddlei;Hemitilapia oxyrhynchus;Buccochromis nototaenia;Copadichromis cf. trewavasae;Ctenopharynx intermedius;Placidochromis milomo;Pallidochromis tokolosh;Copadichromis quadrimaculatus;Genyochromis mento;Taeniolethrinops macrorhynchus;Rhamphochromis esox;Diplotaxodon limnothrissa;Alticorpus geoffreyi;Aulonocara \u2018yellow\u2019;Nimbochromis livingstoni;Stigmatochromis guttatus;Metriaclima zebra;Taeniochromis holotaenia;Copadichromis likomae;Dimidiochromis kiwinge;Petrotilapia genalutea;Iodotropheus sprengerae;Tropheops tropheops;Labeotropheus trewavasae;Mylochromis anaphyrmus;Trematocranus placodon
DOI:
doi:10.5061/dryad.7rj8k6c
摘要:
t diversification initially proceeded by serial branching from a generalist Astatotilapia-like ancestor. However, no single species tree adequately represents al
Data from: Using functional responses to quantify interaction effects among predators
负责人:
关键词:
heterospecific aggression;fish predators;predictive theory;Conspecific aggression;trait-based framework;multipe predator effect
DOI:
doi:10.5061/dryad.4v2s0
摘要:
Lepomis macrochirus, southern mouthbrooder Pseudocrenilabrus philander and banded tilapia Tilapia sparrmanii), we assess intra- and inter-specific predator interacti

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