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Research Articles

Polymorphism in IGFALS gene and its association with scrotal circumference in Hu lambs

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References

  • Feng X, Li F, Wang F, et al. Genome-wide differential expression profiling of mRNAs and lncRNAs associated with prolificacy in Hu sheep. Biosci Rep. 2018;38(2):BSR20171350.
  • Diao Z, Yanghua QU, Liu C, Gao Y, Luo H. Effects of forage canola mixed silage on slaughter performance and meat quality in Hu sheep. China Animal Husband Vet Med. 2018;
  • Kumi-Diaka J, Adesiyun AA, Sekoni V, Ezeokoli CD. Scrotal dimensions and ejaculate characteristics of three breeds of sheep in tropical Nigeria. Theriogenology. 1985;23(4):671–677.
  • Amann RP, Almquist JO. Reproductive capacity of dairy bulls. VIII. Direct and indirect measurement of testicular sperm production 1,2. J Dairy Sci. 1962;45(6):774–781.
  • Hahn J, Foote RH, Seidel GE. Testicular growth and related sperm output in dairy bulls. J Anim Sci. 1969;29(1):41–47.
  • Boyd LJ, Van Demark NL. Spermatogenic capacity of the male bovine. I. A measurement technique 1. J Dairy Sci. 1957;40(6):689–697.
  • Willett EL, Ohms JI. Measurement of testicular size and its relation to production of spermatozoa by bulls. J Dairy Sci. 1957;40(12):1559–1569.
  • Amann RP, Almquist JO. Reproductive capacity of dairy bulls. V. Detection of testicular deficiencies and requirements for experimentally evaluating testis function from semen characteristics. J Dairy Sci. 1961;44(12):2283–2291.
  • Amann RP, Almquist JO. Reproductive capacity of dairy bulls. VI. Effect of unilateral vasectomy and ejaculation frequency on sperm reserves; aspects of epididymal physiology. J Reprod Fertil. 1962;3(2):260–268.
  • Bongso TA, Jainudeen MR, Zahrah AS. Relationship of scrotal circumference to age, body weight and onset of spermatogenesis in goats. Theriogenology. 1982;18(5):513–524.
  • Ahmad N, Noakes DE. Sexual maturity in British breeds of goat kids. Br Vet J. 1996;152(1):93–103.
  • Menegassi SRO, Barcellos JOJ, Peripolli V, Pereira PRRX, Borges JBS, Lampert VN. Measurement of scrotal circumference in beef bulls in Rio Grande do Sul. Arq Bras Med Vet Zootec. 2011;63(1):87–93.
  • Wikström AM, Bay K, Hero M, Andersson AM, Dunkel L. Serum insulin-like factor 3 levels during puberty in healthy boys and boys with Klinefelter syndrome. J Clin Endocrinol Metab. 2006;91(11):4705–4708.
  • Johansen ML, Anand-Ivell R, Mouritsen A, et al. Serum levels of insulin-like factor 3, anti-Mullerian hormone, inhibin B, and testosterone during pubertal transition in healthy boys: a longitudinal pilot study. Reproduction. 2014;147(4):529–535.
  • Kawate N, Ohnari A, Pathirana IN, et al. Changes in plasma concentrations of insulin-like peptide 3 and testosterone from birth to pubertal age in beef bulls. Theriogenology. 2011;76(9):1632–1638.
  • Pathirana IN, Yamasaki H, Kawate N, et al. Plasma insulin-like peptide 3 and testosterone concentrations in male dogs: changes with age and effects of cryptorchidism. Theriogenology. 2012;77(3):550–557.
  • Hannan MA, Kawate N, Fukami Y, et al. Changes of plasma concentrations of insulin-like peptide 3 and testosterone, and their association with scrotal circumference during pubertal development in male goats. Theriogenology. 2017;92:51–56.
  • Ott R. Breeding soundness examination in bulls. 1986.
  • Lunstra DD, Ford JJ, Echternkamp SE. Puberty in beef bulls: hormone concentrations, growth, testicular development, sperm production and sexual aggressiveness in bulls of different breeds. J Anim Sci. 1978;46(4):1054–1062.
  • Killian GJ, Amann RP. Reproductive capacity of dairy bulls. IX. Changes in reproductive organ weights and semen characteristics of Holstein bulls during the first thirty weeks after puberty. J Dairy Sci. 1972;55(11):1631–1635.
  • Devkota B, Koseki T, Matsui M, et al. Relationships among age, body weight, scrotal circumference, semen quality and peripheral testosterone and estradiol concentrations in pubertal and postpubertal Holstein bulls. J Vet Med Sci. 2008;70(1):119–121.
  • Colas G. Seasonal variations of the quality of sperm in the Ile-de-France ram. I. Study of the cellular morphology and massal motility. Reprod Nutr Dev. 1980;20(6):1789–1799.
  • Boland MP, Al-Kamali AA, Crosby TF, et al. The influence of breed, season and photoperiod on semen characteristics, testicular size, libido and plasma hormone concentrations in rams. Animal Reprod Sci. 1985;9(3):241–252.
  • Kafi M, Safdarian M, Hashemi M. Seasonal variation in semen characteristics, scrotal circumference and libido of Persian Karakul rams. Small Rumin Res. 2004;53(1–2):133–139.
  • Cárdenas-Gallegos MA, Aké-López JR, Centurión-Castro F, Magaña-Monforte JG. The breed and season effects on scrotal circumference and semen characteristics of hair sheep rams under tropical conditions. Reprod Domest Anim. 2012;47(6):e92-94–e94.
  • Setchell BP. The Parkes Lecture. Heat and the testis. J Reprod Fertil. 1998;114(2):179–194.
  • Boisclair YR, Seto D, Hsieh S, Hurst KR, Ooi GT. Organization and chromosomal localization of the gene encoding the mouse acid labile subunit of the insulin-like growth factor binding complex. Proc Natl Acad Sci USA. 1996;93(19):10028–10033.
  • Alizadeh F, Moradian F, Farhadi A. Association of allelic polymorphisms of IGFALS gene with growth traits in Makouei and Ghezel sheep breeds. Trop Anim Health Prod. 2020;52(6):3027–3034.
  • Domené HM, Scaglia PA, Martínez AS, et al. Heterozygous IGFALS gene variants in idiopathic short stature and normal children: impact on height and the IGF system. Horm Res Paediatr. 2013;80(6):413–423.
  • Le RD. Deficiency of the circulating insulin-like growth factor system associated with inactivation of the acid-labile subunit gene. New Eng J Med. 2004;350:570–577.
  • Suwanichkul A, Boisclair YR, Olney RC, Durham SK, Powell DR. Conservation of a growth hormone-responsive promoter element in the human and mouse acid-labile subunit genes. Endocrinology. 2000;141(2):833–838.
  • Rhoads RP, Greenwood PL, Bell AW, Boisclair YR. Organization and regulation of the gene encoding the sheep acid-labile subunit of the 150-kilodalton insulin-like growth factor-binding protein complex. Endocrinology. 2000;141(4):1425–1433.
  • Delhanty PJ, Baxter RC. Cloning and characterization of the rat gene for the acid-labile subunit of the insulin-like growth factor binding protein complex. J Mol Endocrinol. 1997;19(3):267–277.
  • Li S, Ren J, Huang L. Characterization of the porcine insulin-like growth factor-binding protein, acid-labile subunit gene: full-length cDNA and DNA sequence, polymorphisms and expression profile. J Anim Breed Genet. 2007;124(3):133–138.
  • Liu Y, Duan X, Liu X, et al. Genetic variations in insulin-like growth factor binding protein acid labile subunit gene associated with growth traits in beef cattle (Bos taurus) in China. Gene. 2014;540(2):246–250.
  • Zhao H, Wu X, Cai H, et al. Genetic variants and effects on milk traits of the caprine paired-like homeodomain transcription factor 2 (PITX2) gene in dairy goats. Gene. 2013;532(2):203–210.
  • Coulter GH, Foote RH. Bovine testicular measurements as indicators of reproductive performance and their relationship to productive traits in cattle: a review. Theriogenology. 1979;11(4):297–311.
  • Perumal P, Savino N, Sangma CTR, et al. Effect of season and age on scrotal circumference, testicular parameters and endocrinological profiles in Mithun bulls. Theriogenology. 2017;98:23–29.
  • Coulter GH, Larson LL, Foote RH. Effect of age on testicular growth and consistency of Holstein and Angus bulls. J Anim Sci. 1975;41(5):1383–1389.
  • Barth AD, Brito LF, Kastelic JP. The effect of nutrition on sexual development of bulls. Theriogenology. 2008;70(3):485–494.
  • Dance A, Thundathil J, Wilde R, Blondin P, Kastelic J. Enhanced early-life nutrition promotes hormone production and reproductive development in Holstein bulls. J Dairy Sci. 2015;98(2):987–998.
  • Matos CA, Thomas DL, Nash TG, Waldron DF, Stookey JM. Genetic analyses of scrotal circumference size and growth in Rambouillet lambs. J Anim Sci. 1992;70(1):43–50.
  • Duan J, Wainwright MS, Comeron JM, et al. Synonymous mutations in the human dopamine receptor D2 (DRD2) affect mRNA stability and synthesis of the receptor. Hum Mol Genet. 2003;12(3):205–216.
  • Drummond D, Wilke CO. Mistranslation-induced protein misfolding as a dominant constraint on coding-sequence evolution. Cell. 2008;134(2):341–352.
  • Goodman DB, Church GM, Kosuri S. Causes and effects of N-terminal codon bias in bacterial genes. Science. 2013;342(6157):475–479.
  • Parmley JL, Chamary JV, Hurst LD. Evidence for purifying selection against synonymous mutations in mammalian exonic splicing enhancers. Mol Biol Evol. 2006;23(2):301–309.
  • Kimchi-Sarfaty C, Oh JM, Kim IW, et al. A “silent” polymorphism in the MDR1 gene changes substrate specificity. Science. 2007;315(5811):525–528.
  • Zhao L, Li F, Yuan L, et al. Expression of ovine CTNNA3 and CAP2 genes and their association with growth traits. Gene. 2022;807:145949.
  • Wang J, Zhang X, Wang X, et al. Polymorphism and expression of the HMGA1 gene and association with tail fat deposition in Hu sheep. Anim Biotechnol. 2021;34(4):1626–1634.
  • Pagani F, Raponi M, Baralle FE. Synonymous mutations in CFTR exon 12 affect splicing and are not neutral in evolution. Proc Natl Acad Sci USA. 2005;102(18):6368–6372.
  • Conover CA. Regulation and physiological role of insulin-like growth factor binding proteins. Endocr J. 1996;43:S43–S48.
  • Heath KE, Argente J, Barrios V, et al. Primary acid-labile subunit deficiency due to recessive IGFALS mutations results in postnatal growth deficit associated with low circulating insulin growth factor (IGF)-I, IGF binding protein-3 levels, and hyperinsulinemia. J Clin Endocrinol Metab. 2008;93(5):1616–1624.