Literature DB >> 28872195

Goat domestication and breeding: a jigsaw of historical, biological and molecular data with missing pieces.

M Amills1, J Capote2, G Tosser-Klopp3.   

Abstract

Domestic goats (Capra hircus) are spread across the five continents with a census of 1 billion individuals. The worldwide population of goats descends from a limited number of bezoars (Capra aegagrus) domesticated 10 000 YBP (years before the present) in the Fertile Crescent. The extraordinary adaptability and hardiness of goats favoured their rapid spread over the Old World, reaching the Iberian Peninsula and Southern Africa 7000 YBP and 2000 YBP respectively. Molecular studies have revealed one major mitochondrial haplogroup A and five less frequent haplogroups B, C, D, F and G. Moreover, the analysis of autosomal and Y-chromosome markers has evidenced an appreciable geographic differentiation. The implementation of new molecular technologies, such as whole-genome sequencing and genome-wide genotyping, allows for the exploration of caprine diversity at an unprecedented scale, thus providing new insights into the evolutionary history of goats. In spite of a number of pitfalls, the characterization of the functional elements of the goat genome is expected to play a key role in understanding the genetic determination of economically relevant traits. Genomic selection and genome editing also hold great potential, particularly for improving traits that cannot be modified easily by traditional selection.
© 2017 Stichting International Foundation for Animal Genetics.

Entities:  

Keywords:  genetic diversity; goat breed; mitochondrial and nuclear markers; next-generation sequencing

Mesh:

Substances:

Year:  2017        PMID: 28872195     DOI: 10.1111/age.12598

Source DB:  PubMed          Journal:  Anim Genet        ISSN: 0268-9146            Impact factor:   3.169


  14 in total

1.  Evaluation of morphological traits and physiological variables of several Chinese goat breeds and their crosses.

Authors:  Ahmed A Saleh; Amr M A Rashad; Nada N A M Hassanine; Mahmoud A Sharaby; Yongju Zhao
Journal:  Trop Anim Health Prod       Date:  2021-01-05       Impact factor: 1.559

2.  Characteristics of the Allele Pool and the Genetic Differentiation of Goats of Different Breeds and their Wild Relatives by Str-Markers.

Authors:  M I Selionova; A-M M Aibazov; T V Mamontova; Iu A Stolpovsky; S V Beketov; S N Petrov; V R Kharzinova; A V Dotsev; N A Zinovieva
Journal:  Arch Razi Inst       Date:  2021-11-30

3.  The evolutionary genetics of lactase persistence in seven ethnic groups across the Iranian plateau.

Authors:  Hadi Charati; Min-Sheng Peng; Wei Chen; Xing-Yan Yang; Roghayeh Jabbari Ori; Mohsen Aghajanpour-Mir; Ali Esmailizadeh; Ya-Ping Zhang
Journal:  Hum Genomics       Date:  2019-02-11       Impact factor: 4.639

4.  New world goat populations are a genetically diverse reservoir for future use.

Authors:  Tiago do Prado Paim; Danielle Assis Faria; El Hamidi Hay; Concepta McManus; Maria Rosa Lanari; Laura Chaverri Esquivel; María Isabel Cascante; Esteban Jimenez Alfaro; Argerie Mendez; Olivardo Faco; Kleibe de Moraes Silva; Carlos Alberto Mezzadra; Arthur Mariante; Samuel Rezende Paiva; Harvey D Blackburn
Journal:  Sci Rep       Date:  2019-02-06       Impact factor: 4.379

5.  Comparative genome analyses reveal the unique genetic composition and selection signals underlying the phenotypic characteristics of three Chinese domestic goat breeds.

Authors:  Jiazhong Guo; Jie Zhong; Li Li; Tao Zhong; Linjie Wang; Tianzeng Song; Hongping Zhang
Journal:  Genet Sel Evol       Date:  2019-11-26       Impact factor: 4.297

6.  Patellar luxation in Hejazi goats.

Authors:  Mohamed H Abushhiwa; Adulrhman M Alrtib; Taher N Elmeshreghi; Mouna A Abdunnabi; Mansur E Shmela; Emad M Bennour
Journal:  Open Vet J       Date:  2021-06-18

7.  The assembly of caprine Y chromosome sequence reveals a unique paternal phylogenetic pattern and improves our understanding of the origin of domestic goat.

Authors:  Changyi Xiao; Jingjin Li; Tanghui Xie; Jianhai Chen; Sijia Zhang; Salma Hassan Elaksher; Fan Jiang; Yaoxin Jiang; Lu Zhang; Wei Zhang; Yue Xiang; Zhenyang Wu; Shuhong Zhao; Xiaoyong Du
Journal:  Ecol Evol       Date:  2021-05-04       Impact factor: 2.912

8.  Post-genotyping optimization of dataset formation could affect genetic diversity parameters: an example of analyses with alpine goat breeds.

Authors:  Neža Pogorevc; Mojca Simčič; Negar Khayatzadeh; Johann Sölkner; Beate Berger; Danijela Bojkovski; Minja Zorc; Peter Dovč; Ivica Medugorac; Simon Horvat
Journal:  BMC Genomics       Date:  2021-07-17       Impact factor: 3.969

9.  Genetic homogeneity of goat malaria parasites in Asia and Africa suggests their expansion with domestic goat host.

Authors:  Morakot Kaewthamasorn; Mika Takeda; Tawee Saiwichai; Jesse N Gitaka; Sonthaya Tiawsirisup; Yuhei Imasato; Ehab Mossaad; Ali Sarani; Winai Kaewlamun; Manun Channumsin; Suchart Chaiworakul; Wichit Katepongpun; Surapong Teeveerapunya; Jarus Panthong; Dominic K Mureithi; Saw Bawm; Lat Lat Htun; Mar Mar Win; Ahmed Ali Ismail; Abdalla Mohamed Ibrahim; Keisuke Suganuma; Hassan Hakimi; Ryo Nakao; Ken Katakura; Masahito Asada; Osamu Kaneko
Journal:  Sci Rep       Date:  2018-04-11       Impact factor: 4.379

10.  Whole-genome sequencing reveals selection signatures associated with important traits in six goat breeds.

Authors:  Jiazhong Guo; Haixi Tao; Pengfei Li; Li Li; Tao Zhong; Linjie Wang; Jinying Ma; Xiaoying Chen; Tianzeng Song; Hongping Zhang
Journal:  Sci Rep       Date:  2018-07-10       Impact factor: 4.379

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