High genetic diversity but absence of population structure in local chickens of Sri Lanka inferred by microsatellite markers

dc.creatorSamaraweera, A.M.
dc.creatorLiyanage, R.
dc.creatorIbrahim, M.N.M.
dc.creatorOkeyo Mwai, Ally
dc.creatorHan Jianlin
dc.creatorSilva, P.
dc.date2021-09-28
dc.date2021-10-21T09:21:43Z
dc.date2021-10-21T09:21:43Z
dc.date.accessioned2026-06-27T17:05:21Z
dc.descriptionLocal chicken populations belonging to five villages in two geographically separated provinces of Sri Lanka were analyzed using 20 microsatellite markers to determine the genetic diversity of local chickens. Population genetic parameters were estimated separately for five populations based on geographic locations and for eight populations based on phenotypes, such as naked neck, long legged, crested or crown, frizzle feathered, Giriraj, commercial layer, crossbreds, and non-descript chicken. The analysis revealed that there was a high genetic diversity among local chickens with high number of unique alleles, mean number of alleles per locus (MNA), and total number of alleles per locus per population. A total of 185 microsatellite alleles were detected in 192 samples, indicating a high allelic diversity. The MNA ranged from 8.10 (non-descript village chicken) to 3.50 (Giriraj) among phenotypes and from 7.30 (Tabbowa) to 6.50 (Labunoruwa) among village populations. In phenotypic groups, positive inbreeding coefficient (FIS) values indicated the existence of population substructure with evidence of inbreeding. In commercial layers, a high expected heterozygosity He = 0.640 ± 0.042) and a negative FIS were observed. The positive FIS and high He estimates observed in village populations were due to the heterogeneity of samples, owing to free mating facilitated by communal feeding patterns. Highly admixed nature of phenotypes was explained as a result of rearing many phenotypes by households (58%) and interactions of chickens among neighboring households (53%). A weak substructure was evident due to the mating system, which disregarded the phenotypes. Based on genetic distances, crown chickens had the highest distance to other phenotypes, while the highest similarity was observed between non-descript village chickens and naked neck birds. The finding confirms the genetic wealth conserved within the populations as a result of the breeding system commonly practiced by chicken owners. Thus, the existing local chicken populations should be considered as a harbor of gene pool, which can be readily utilized in developing locally adapted and improved chicken breeds in the future.
dc.identifierhttps://hdl.handle.net/10568/115587
dc.identifier.urihttp://hdl.handle.net/123456789/141858
dc.languageen
dc.publisherFrontiers Media
dc.rightsOpen Access
dc.sourceSamaraweera, A.M., Liyanage, R., Ibrahim, M.N., Okeyo, A.M., Han Jianlin and Silva, P. 2021. High genetic diversity but absence of population structure in local chickens of Sri Lanka inferred by microsatellite markers. Frontiers in Genetics 12:723706.
dc.subjectchickens
dc.subjectpoultry
dc.subjectgenetics
dc.subjectanimal breeding
dc.subjectindigenous breeds
dc.titleHigh genetic diversity but absence of population structure in local chickens of Sri Lanka inferred by microsatellite markers
dc.typeJournal Article

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