A 20-bp insertion/deletion (indel) polymorphism within the <i>CDC25A</i> gene and its associations with growth traits in goat
-
Published:2019-06-17
Issue:1
Volume:62
Page:353-360
-
ISSN:2363-9822
-
Container-title:Archives Animal Breeding
-
language:en
-
Short-container-title:Arch. Anim. Breed.
Author:
Cui Wenbo,Liu Nuan,Zhang Xuelian,Zhang Yanghai,Qu Lei,Yan Hailong,Lan Xianyong,Dong Wuzi,Pan Chuanying
Abstract
Abstract. Cell division cycle 25A (CDC25A), a member of the CDC25 family of phosphatases, is
required for progression from G1 to the S phase of the cell cycle. CDC25A provides an essential function during early embryonic development in mice,
suggesting that it plays an important role in growth and development. In
this study, we used mathematical expectation (ME) methods to identify a
20-bp insertion/deletion (indel) polymorphism of CDC25A gene in Shaanbei White
Cashmere (SBWC) goats. We also investigated the association between this
20-bp indel and growth-related traits in SBWC goats. Association results
showed that the indel was related to growth traits (height at hip cross,
cannon circumference, and cannon circumference index) in SBWC goats. The
height at hip cross of individuals with insertion/insertion (II) genotype
was higher than those with insertion/deletion (ID) genotype (P=0.02); on
the contrary, the cannon circumference and cannon circumference index of
individuals with ID genotype were superior when compared with those with II
genotype (P=0.017 and P=0.009). These findings suggest that the 20-bp
indel in the CDC25A gene significantly affects growth-related traits, and could be
utilized as a candidate marker for marker-assisted selection (MAS) in
the cashmere goat industry.
Publisher
Copernicus GmbH
Reference44 articles.
1. Bai, S., Yu, H., Wang, B., and Li, J.: Retrospective and perspective of rice breeding in
China, J. Genet. Genomics, 45, 603–612, 2018. 2. Biswas, S. C., Sanphui, P., Chatterjee, N., Kemeny, S., Greene, L. A.: Cdc25A phosphatase:
a key cell cycle protein that regulates neuron death in disease and
development, Cell Death Dis., 8, e2692, https://doi.org/10.1038/cddis.2017.115, 2017. 3. Bouldin, C. M., Snelson, C. D., Farr III, G. H., and Kimelman, D.: Restricted expression of
cdc25a in the tailbud is essential for formation of the zebrafish posterior
body, Genes Dev., 28, 384–395, 2014. 4. 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, Front Genet., 9, 91, https://doi.org/10.3389/fgene.2018.00091, 2018. 5. Escareño, L., Salinas-Gonzalez, H., Wurzinger, M., Iñiguez, L., Sölkner,
J., and Meza-Herrera, C.: Dairy goat production systems: status quo, perspectives
and challenges, Trop. Anim. Health Prod., 45, 17–34, 2013.
Cited by
18 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
|
|