Detection of insertion/deletions (indels) of the <i>ATBF1</i> gene and their effects on growth-related traits in three indigenous goat breeds
-
Published:2018-07-26
Issue:3
Volume:61
Page:311-319
-
ISSN:2363-9822
-
Container-title:Archives Animal Breeding
-
language:en
-
Short-container-title:Arch. Anim. Breed.
Author:
Wei Zhenyu,Wang Ke,Hui Yiqing,Yan Hailong,Zhu Haijing,Qu Lei,Pan Chuanying,Chen Hong,Lan Xianyong
Abstract
Abstract. The AT motif-binding factor (ATBF1), also known as zinc finger homeobox 3
(ZFXH3), is necessary for activating the POU1F1 gene; thus,
the ATBF1 gene greatly affects the grow traits in animals. The
objective of this work was to explore novel indel (insertion/deletion)
variations and their associations with growth traits in three native Chinese
goat breeds. Two indels within the ATBF1 gene were found in the
Shaanbei white cashmere goat (SWCG; n=581), the Guanzhong dairy goat
(GZDG; n=334) and the Hainan black goat (HNBG; n=270) for the first time
using 12 pairs of primers. Association analysis revealed that the P1-12-bp
indel was consistently correlated with the body height of the three breeds,
and individuals with ID (insertion/deletion) and
DD (deletion/deletion) genotypes had a higher body weight than the
II (insertion/insertion) genotype (P=0.036); the P11-6-bp indel
was consistently correlated with chest circumference and hip width of the
three breeds. Moreover, these two loci were associated with other several
growth-related traits in different breeds. Hence, these findings indicated
that the goat ATBF1 gene had marked effects on growth traits and the
growth-trait-related loci, which would contribute to improving the
growth-related traits of local breeds in the goat industry by implementing
marker-assisted selection (MAS).
Publisher
Copernicus GmbH
Reference35 articles.
1. Aljanabi, S. M. and Martinez, I.: Universal and rapid salt-extraction of high quality genomic DNA for PCR-based techniques, Nucleic Acids Res., 25, 4692–4693, 1997. 2. Araujo, R. V., Chang, C. V., Cescato, V. A., Fragoso, M. C., Bronstein, M. D., Mendonca, B. B., Arnhold, I. J., and Carvalho, L. R.: PROP1 overexpression in corticotrophinomas: evidence for the role of PROP1 in the maintenance of cells committed to corticotrophic differentiation, Clinics, 68, 887–891, 2013. 3. Berry, F. B., Miura, Y., Mihara, K., Kaspar, P., Sakata, N., Hashimoto-Tamaoki, T., and Tamaoki, T.: Positive and negative regulation of myogenic differentiation of C2C12 cells by isoforms of the multiple homeodomain zinc finger transcription factor ATBF1, J. Biol. Chem., 276, 25057–25065, 2001. 4. Botstein, D., White, R. L., Skolnick, M., and Davis, R. W.: Construction of a genetic linkage map in man using restriction fragment length polymorphisms, Am. J. Hum. Genet., 32, 314–331, 1980. 5. Cui, Y., Yan, H., Wang, K., Xu, H., Zhang, X., Zhu, H., Liu, J., Qu, L., Lan, X., and Pan, C.: Insertion/Deletion within the KDM6A gene is significantly associated with litter size in goat, Frontiers in Genetics, 9, https://doi.org/10.3389/fgene.2018.00091, 2018.
Cited by
3 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|