Acta Veterinaria et Zootechnica Sinica ›› 2021, Vol. 52 ›› Issue (4): 943-953.doi: 10.11843/j.issn.0366-6964.2021.04.010
• ANIMAL GENETICS AND BREEDING • Previous Articles Next Articles
XUE Qian1,2, LI Guohui1,2, YIN Jianmei1,2, ZHANG Huiyong1,2, ZHOU Chenghao1,2, ZHU Yunfen1, XING Weijie1, SU Yijun1, ZOU Jianmin1, HAN Wei1*
Received:
2020-06-11
Online:
2021-04-23
Published:
2021-04-25
CLC Number:
XUE Qian, LI Guohui, YIN Jianmei, ZHANG Huiyong, ZHOU Chenghao, ZHU Yunfen, XING Weijie, SU Yijun, ZOU Jianmin, HAN Wei. Screening of Genes with Differential Methylated CpG Island Related to Inbreeding Depression of Chicken Reproduction[J]. Acta Veterinaria et Zootechnica Sinica, 2021, 52(4): 943-953.
[1] | WILLOUGHBY J R,IVY J A,LACY R C,et al.Inbreeding and selection shape genomic diversity in captive populations:Implications for the conservation of endangered species[J].PLoS One,2017,12(4):e0175996. |
[2] | KRISTENSEN T N,PEDERSEN K S,VERMEULEN C J,et al.Research on inbreeding in the ‘omic’ era[J].Trends Ecol Evol,2010,25(1):44-52. |
[3] | ARMBRUSTER P,REED D H.Inbreeding depression in benign and stressful environments[J].Heredity (Edinb),2005, 95(3):235-242. |
[4] | CHEPTOU P O,DONOHUE K.Environment-dependent inbreeding depression:its ecological and evolutionary significance[J]. New Phytol, 2011,189(2):395-407. |
[5] | FOX C W,REED D H.Inbreeding depression increases with environmental stress:an experimental study and meta-analysis[J].Evolution,2011,65(1):246-258. |
[6] | REED D H,FOX C W,ENDERS L S,et al.Inbreeding-stress interactions:evolutionary and conservation consequences[J].Ann N Y Acad Sci,2012,1256:33-48. |
[7] | ENDERS L S,NUNNEY L.Sex-specific effects of inbreeding in wild-caught Drosophila melanogaster under benign and stressful conditions[J].J Evol Biol,2010,23(11):2309-2323. |
[8] | PILAKOUTA N,JAMIESON S,MOORAD J A,et al.Parental care buffers against inbreeding depression in burying beetles[J].Proc Natl Acad Sci U S A,2015,112(26):8031-8035. |
[9] | BOSSDORF O,RICHARDS C L,PIGLIUCCI M.Epigenetics for ecologists[J].Ecol Lett,2008,11(2):106-115. |
[10] | 丁勇,许超,吴季辉,等.表观遗传学研究进展[J].中国科学:生命科学,2017,47(1):3-15.DING Y,XU C,WU J H,et al.Recent progress in epigenetics[J].Scientia Sinica Vitae,2017,47(1):3-15.(in Chinese) |
[11] | 甘麦邻,杨大洪,谭娅,等.环境因素引起的哺乳动物跨代DNA甲基化修饰现象[J].畜牧兽医学报,2017,48(12):2225-2231.GAN M L,YANG D H,TAN Y,et al.The study of influence of environment on transgenerational inheritance of DNA methylation in mammals[J].Acta Veterinaria et Zootechnica Sinica,2017,48(12):2225-2231.(in Chinese) |
[12] | HOWARD J T,PRYCE J E,BAES C,et al.Invited review:Inbreeding in the genomics era:Inbreeding,inbreeding depression,and management of genomic variability[J].J Dairy Sci,2017,100(8):6009-6024. |
[13] | CHEPTOU P O,DONOHUE K.Epigenetics as a new avenue for the role of inbreeding depression in evolutionary ecology[J]. Heredity (Edinb),2013,110(3):205-206. |
[14] | VERGEER P,WAGEMAKER N,OUBORG N J.Evidence for an epigenetic role in inbreeding depression[J].Biol Lett,2012, 8(5):798-801. |
[15] | HONG Y,HONG S H,OH Y M,et al.Identification of lung cancer specific differentially methylated regions using genome-wide DNA methylation study[J].Mol Cell Toxicol,2018,14(3):315-322. |
[16] | 晏强,周献青,薛雯,等.表观遗传DNA甲基化和组蛋白修饰与疾病关系的研究进展[J].医学综述,2017, 23(16):3160-3163,3169.YAN Q,ZHOU X Q,XUE W,et al.Advances in the relationship between epigenetic DNA methylation and histone modification with diseases[J].Medical Recapitulate,2017,23(16):3160-3163,3169.(in Chinese) |
[17] | ELHAMAMSY A R.DNA methylation dynamics in plants and mammals:overview of regulation and dysregulation[J].Cell Biochem Funct,2016,34(5):289-298. |
[18] | YANG K L,LIANG L L,RAN F L,et al.The DmtA methyltransferase contributes to Aspergillus flavus conidiation,sclerotial production,aflatoxin bio-synthesis and virulence[J].Sci Rep,2016,6(1):23259. |
[19] | 赵亚涵,郝海生,杜卫华,等.新鲜、玻璃化冷冻牛卵母细胞体外受精囊胚全基因组甲基化模式初探[J].畜牧兽医学报, 2019,50(6):1179-1188.ZHAO Y H,HAO H S,DU W H,et al.Study on whole genome methylation pattern of in vitro fertilized blastocysts from fresh and vitrified bovine oocytes[J].Acta Veterinaria et Zootechnica Sinica,2019,50(6):1179-1188.(in Chinese) |
[20] | MEHTA A,DOBERSCH S,ROMERO-OLMEDO A J,et al.Epigenetics in lung cancer diagnosis and therapy[J].Cancer Metastasis Rev,2015,34(2):229-241. |
[21] | MENG H,CAO Y,QIN J,et al.DNA methylation,its mediators and genome integrity[J].Int J Biol Sci,2015,11(5):604-617. |
[22] | 匡颖,邓涛,王龙,等.近交系ES鼠胚胎发育及印迹异常的研究[C]//中国遗传学会"发育、遗传和疾病"研讨会论文汇编集.乌鲁木齐:中国遗传学会,2007.KUANG Y,DENG T,WANG L,et al.Study on embryonic development and imprinting abnormalities of inbred ES mice[C]//Chinese Genetic Society Seminar Papers on "Development,Heredity and Disease".2007.(in Chinese) |
[23] | 蒋曹德.猪DNA甲基化与杂种表现的关系及遗传多样性分析[D].武汉:华中农业大学,2004.JIANG C D.Relationship between DNA methylation and hybrid performances and pigs genetic diversity analysis[D].Wuhan:Huazhong Agricultural University,2004.(in Chinese) |
[24] | VENNEY C J,JOHANSSON M L,HEATH D D.Inbreeding effects on gene-specific DNA methylation among tissues of Chinook salmon[J].Mol Ecol,2016,25(18):4521-4533. |
[25] | 杨晶淼,蔡炜裕,罗少杰,等.马氏珠母贝(Pinctada fucata martensii)近交家系与其杂交子代DNA甲基化差异分析[J].基因组学与应用生物学,2018,37(5):1926-1932.YANG J M,CAI W Y,LUO S J,et al.Variation analysis of DNA methylation in inbred and hybrid families of pearl oyster (Pinctada fucata martensii)[J].Genomics and Applied Biology,2018,37(5):1926-1932. (in Chinese) |
[26] | NAKAMURA S,HOSAKA K.DNA methylation in diploid inbred lines of potatoes and its possible role in the regulation of heterosis[J].Theor Appl Genet,2010,120(2):205-214. |
[27] | HAN W,XUE Q,LI G H,et al.Genome-wide analysis of the role of DNA methylation in inbreeding depression of reproduction in Langshan chicken[J].Genomice,2020,112(4):2677-2687. |
[28] | MARTIN M.Cutadapt removes adapter sequences from high-throughput sequencing reads[J].EMBnet J,2011,17(1):10-12. |
[29] | ETHERINGTON G J,RAMIREZ-GONZALEZ R H,MACLEAN D.bio-samtools 2:a package for analysis and visualization of sequence and alignment data with SAMtools in Ruby[J].Bioinformatics,2015,31(15):2565-2567. |
[30] | AKALIN A,KORMAKSSON M,LI S,et al.MethylKit:a comprehensive R package for the analysis of genome-wide DNA methylation profiles[J].Genome Biol,2012,13(10):R87. |
[31] | IOSHIKHES I P,ZHANG M Q.Large-scale human promoter mapping using CpG islands[J].Nat Genet,2000,26(1):61-63. |
[32] | RICE P,LONGDEN I,BLEASBY A.EMBOSS:the european molecular biology open software suite[J].Trends Genet,2000,16(6):276-277. |
[33] | CHAPMAN A G,COTTON A M,KELSEY A D,et al.Differentially methylated CpG island within human XIST mediates alternative P2 transcription and YY1 binding[J].BMC Genet,2014,15(1):89. |
[34] | 郭添福,张志燕,陈冬,等.不同性别大白猪肌肉全基因组高分辨率单碱基甲基化差异分析[J].畜牧兽医学报,2018,49(11):2326-2339.GUO T F,ZHANG Z Y,CHEN D,et al.High resolution and single base genome-wide methylation variance analysis of muscle of large white pigs with different sexes[J].Acta Veterinaria et Zootechnica Sinica,2018,49(11):2326-2339.(in Chinese) |
[35] | 杜小龙,王麒,张乐超,等.山羊DCT基因启动子区甲基化水平、SNP与毛色特征关系研究[J].畜牧兽医学报, 2019,50(2):271-279.DU X L,WANG Q,ZHANG L C,et al.Study on the relationship between methylation level,SNP in promoter region of DCT gene and hair color in goat[J].Acta Veterinaria et Zootechnica Sinica,2019,50(2):271-279. (in Chinese) |
[36] | 胡慧艳,贾青,侯胜奎,等.猪DKK1基因启动子区的克隆及其活性分析[J].畜牧兽医学报,2017,48(6):1150-1157.HU H Y,JIA Q,HOU S K,et al.Cloning and activity analysis of the promoter region of swine DKK1 Gene[J].Acta Veterinaria et Zootechnica Sinica,2017,48(6):1150-1157.(in Chinese) |
[37] | CHAMBERS S,TARASOV K,AON M A,et al.Metabolic enzyme acetylation is elicited in response to stress induced by cardiac specific overexpression of human ADCY8[J].FASEB J,2020,34(S1):1. |
[38] | LAMB J R,MICHAUD W A,SIKORSKI R S,et al.Cdc16p,Cdc23p and Cdc27p form a complex essential for mitosis[J].EMBO J,1994,13(18):4321-4328. |
[39] | XIN Y F,NING S L,ZHANG L,et al.CDC27 facilitates gastric cancer cell proliferation,invasion and metastasis via twist-induced epithelial-mesenchymal transition[J].Cell Physiol Biochem,2018,50(2):501-511. |
[40] | ABBASPOURKHARYEKI M,ANVEKAR N J,RAMACHANDRA N B.The possible role of point mutations and activation of the CDC27 gene in progression of multiple myeloma[J].Meta Gene,2020,26:100761. |
[1] | ZHANG Wei, PAN Zhihao, FANG Fugui. Advances in Epigenetic Regulation of the Onset of Puberty in Female Animals [J]. Acta Veterinaria et Zootechnica Sinica, 2024, 55(5): 1875-1882. |
[2] | SHEN Qi, WANG Kai, ZHAO Zhenjian, CHEN Dong, YU Yang, CUI Shengdi, WANG Junge, CHEN Ziyang, WU Pingxian, TANG Guoqing. Regulation of NO Concentration by NOS2 Gene DNA Methylation Editing Affects the Expression of Muscle Development Pathway Genes [J]. Acta Veterinaria et Zootechnica Sinica, 2024, 55(3): 984-994. |
[3] | CAO Jianhua, YANG Baigao, ZHANG Peipei, FENG Xiaoyi, ZHANG Hang, YU Zhou, NIU Yifan, HAO Haisheng, DU Weihua, ZHU Huabin, YANG Ling, ZHAO Xueming. Mechanisms of Negative Energy Balance Affects Follicular Development in Dairy Cattle [J]. Acta Veterinaria et Zootechnica Sinica, 2024, 55(1): 22-30. |
[4] | LIU Jie, XU Xiangping, DENG Ming, ZOU Xian, JIANG Shengwei, LIU Dewu, LIU Guangbin, SUN Baoli, GUO Yongqing, LI Yaokun. Effect of miR-144-5p Targeting WNT5a on the Proliferation and Apoptosis of Goat Ovarian Granulosa Cells [J]. Acta Veterinaria et Zootechnica Sinica, 2023, 54(6): 2421-2435. |
[5] | JIAO Zhengxing, PAN Yangyang, WANG Meng, WANG Jinglei, MA Wenbin, GAO Xiang, ZHANG Hui, CUI Yan, YU Sijiu, WANG Libin. Preparation of Polyclonal Antibody against Yak LC3B Protein and Its Application in Detection of Expression in Reproductive Organs [J]. Acta Veterinaria et Zootechnica Sinica, 2023, 54(6): 2436-2447. |
[6] | WANG Wei, HE Xiaoyun, CHU Mingxing. Advances in the Regulation of Mammal Reproduction by the Interaction of Circadian Rhythm and Estrogens [J]. Acta Veterinaria et Zootechnica Sinica, 2023, 54(5): 1771-1781. |
[7] | JIN Meilin, LI Taotao, SUN Dongxiao, WEI Caihong. Research Progress of Epigenetic Regulation in Fat Deposition Mechanism of Livestock and Poultry [J]. Acta Veterinaria et Zootechnica Sinica, 2023, 54(3): 855-867. |
[8] | LIU Yuanyi, LI Xinyu, Bayinnamula, CUI Fang, MANG Lai, DU Ming. Single-Cell Transcriptome Sequencing Technology and its Application in Animal Reproduction [J]. Acta Veterinaria et Zootechnica Sinica, 2023, 54(2): 421-433. |
[9] | YANG Xiaogeng, ZHANG Huizhu, LI Jian, XIANG Hua, HE Honghong. Research Progress of the DNA Methylation in Mammalian Oocyte and Early Embryo Development [J]. Acta Veterinaria et Zootechnica Sinica, 2023, 54(2): 443-450. |
[10] | ZHANG Chenyibo, YU Tong, REN Binbin, ZHENG Ruizhi, ZHU Wenzhi, SU Jianmin. Mechanism of Epigenetic Reprogramming of Early Animal Embryos [J]. Acta Veterinaria et Zootechnica Sinica, 2023, 54(12): 4898-4909. |
[11] | LUO Ruijie, CAO Suying. Research Progress and Application Prospect of Livestock Pluripotent Stem Cells [J]. Acta Veterinaria et Zootechnica Sinica, 2023, 54(10): 4003-4015. |
[12] | YANG Baigao, HAO Haisheng, DU Weihua, ZHU Huabin, ZHAO Xueming. Advances in Research on Plateau Adaptation of Yak [J]. Acta Veterinaria et Zootechnica Sinica, 2023, 54(1): 12-23. |
[13] | WANG Yiqun, LIU Zupei, LI Yating, ZHANG Haisen, LI Dan, JIN Yaping, CHEN Huatao. The Dairy Cow NR1D1 Gene’s Eukaryotic Expression Vector Construction, Expression Profile and Its Ovarian Localization [J]. Acta Veterinaria et Zootechnica Sinica, 2023, 54(1): 133-145. |
[14] | MA Xiaoling, PENG Wei, SHU Shi. Serum Dynamic Metabonomics Analysis of Yaks in Late Perinatal Period Based on LCMS Technology [J]. Acta Veterinaria et Zootechnica Sinica, 2022, 53(11): 3811-3826. |
[15] | GAN Jianyu, ZHANG Xin, CAI Gengyuan, HONG Linjun, HUANG Sixiu. Research Progress of DNA Methylation during Porcine Embryonic Development [J]. Acta Veterinaria et Zootechnica Sinica, 2022, 53(10): 3287-3295. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||