Examinando por Autor "Bustamante, Danilo E."
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Ítem Characterization of the complete mitochondrial genome of the black Alpaca breed of Vicugna pacos (Mammalia, Artiodactyla, Camelidae) from Puno, Peru(Taylor & Francis Group, 2020-03-09) Bustamante, Danilo E.; Yalta Macedo, Claudia Esther; Cruz Luis, Juancarlos Alejandro; Maicelo Quintana, Jorge Luis; Guerrero Abad, Juan Carlos; Gutiérrez Reynoso, Dina LidaThe domestic South American camelid Vicugna pacos L. is distributed along Peru, Chile, Bolivia, and Argentina. Here, we contribute to the bioinformatics and evolutionary systematics of the Camelidae by performing high-throughput sequencing analysis on the black Huacaya breed of V. pacos from Puno, Peru. The black Huacaya breed mitogenome is 16,664 base pairs (bp) in length and contains 37 genes (GenBank accession MT044302). The mitogenome shares a high-level of gene synteny to other Camelidae (Camelops, Camelus, Lama, and Vicugna). The mitogenome of the black Huacaya breed of V. pacos situates it in a clade with V. vicugna Molina, sister to Lama. We anticipate that further mitogenome sequencing of different breeds from Vicugna pacos will improve our understanding of the evolutionary history of this taxon.Ítem Genetic structure of traditional cacao reveals four new genetic lineages in indigenous Amazonian sites in Peru(Public Library of Science (PLOS), 2026-07-06) Motilal, Lambert A.; Calderon, Martha S.; Bustamante, Danilo E.; Gopaulchan, David; Tineo Flores, Daniel; Márquez Romero, Fanny R,; Lastra Paucar, Sphyros Roomel; Díaz Valderrama, Jorge R.; Guerrero Abad, Juan Carlos; Oliva, Manuel; Umaharan, PathmanathanCacao genetic resources in Peru are largely uncharacterized. Knowledge of their genetic structure is needed for their conservation and use. Indigenous on-farm cacao trees (n = 390) from the Departments of Amazonas (n = 130), Ayacucho (n = 76), Cajamarca (n = 1), Cusco (n = 110), Madre de Dios (n = 10), Piura (n = 59), San Martín (n = 3) and Ucayali (n = 1) in Peru were fingerprinted with 192 single nucleotide polymorphic markers. Identity, group differentiation, phylogenetic, multivariate and ancestry analyses were conducted. Four new populations were identified guided by phylogenetic, accepted ancestral backgrounds of reference samples and least admixture among samples. The cacao from these eight Departments were variably mixed containing both pure members of new populations and admixed samples with these new populations and Amelonado, Contamana, Criollo, Curaray, Guiana, Iquitos, Marañon, Nacional, Nanay and Púrus. The findings of this study suggest that while the cacao germplasm is genetically related across different departments, each region harbors its own distinct genetic composition. The Clade IV (Chuncho 2) population was associated with the Contamana cluster and Clade I (Chuncho 1) was associated with Purus cluster. Clades II (Awajun) and III (Porcelana) were associated with the Nacional cluster. The ancestry of the economically desired CCN 51 cultivar was revealed to be better assigned as 15% Amelonado, 13% Criollo, 25% Iquitos and 45% Awajun. The results of this study will improve the understanding of the genetic landscape in Peru, enhance genebank collections in Peru and enable the differentiation of the fine flavour industry in Peru. The new groups of cacao identified in this study will help understand the genetic structuring of cacao and represent a valuable new resource to search for valuable traits for breeding and commercialization programmes in the fine flavour cacao industry in Peru.
