Scientia Agricultura Sinica ›› 2022, Vol. 55 ›› Issue (21): 4294-4303.doi: 10.3864/j.issn.0578-1752.2022.21.015
• ANIMAL SCIENCE·VETERINARY SCIENCE • Previous Articles Next Articles
DONG MingMing1(),ZHAO FanFan1,GE JianJun2,ZHAO JunLiang2,WANG Dan1,XU Lei1,ZHANG MengHua1,ZHONG LiWei1,HUANG XiXia1(
),WANG YaChun3(
)
[1] | NORMAN H D, WRIGHT J R, HUBBARD S M, MILLER R H, HUTCHISON J L. Reproductive status of Holstein and Jersey cows in the United States. Journal of Dairy Science, 2009, 92(7):3517-3528. |
[2] | DOBSON H, SMITH R F, ROYAL M D, KNIGHT C H, SHELDON I M. The high-producing dairy cow and its reproductive performance. Reproduction in Domestic Animals, 2010, 42(2):17-23. |
[3] | CHEGINI A, SHADPARVAR A A, HOSSEIN-ZADEH N G, MOHAMMAD-NAZARI B. Genetic and environmental relationships among milk yield, persistency of milk yield, somatic cell count and calving interval in Holstein cows. Revista Colombiana de Ciencias Pecuarias, 2018. |
[4] | 赵晓铎, 许诗凡, 刘光磊. 北美奶牛育种指数变化及进展情况分析. 中国奶牛, 2016(7): 26-29. doi:10.19305/j.cnki.11-3009/s.2016.07.007 |
ZHAO X D, XU S F, LIU G L. The change and progress analysis of dairy cattle breeding index in North American. China Dairy Cattle, 2016(7): 26-29. doi:10.19305/j.cnki.11-3009/s.2016.07.007. (in Chinese) | |
[5] | PRYCE J E, ROYAL M D, GARNSWORTHY P C, MAO I L. Fertility in the high-yielding dairy cow. Livestock Production Science. 2004, 86: 125-135. |
[6] | KNAUS W. Dairy cows trapped between performance demands and adaptability. Science of Food and Agriculture, 2009, 89: 1107-1114. |
[7] | VAN RADEN P M, SANDERS A H, TOOKER M E, MILLER R H, NORMAN H D, KUHN M T, WIGGANS G R. Development of a national genetic evaluation for cow fertility. Journal of Dairy Science. 2004, 87: 2285-2292. |
[8] | IRANO N, BIGNARDI A B, EL FARO L, SANTANA M L JR, CARDOSO V L, ALBUQUERQUE L G. Genetic association between milk yield, stayability, and mastitis in Holstein cows under tropical conditions. Tropical Animal Health and Production, 2014, 46: 529-535. |
[9] | 张海亮, 陈紫薇, 师睿, 田佳, 高旭红, 温万, 王雅春. 宁夏地区荷斯坦牛成母牛淘汰情况及长寿性影响因素分析. 中国畜牧兽医, 2021, 48(1): 200-208. doi:10.16431/j.cnki.1671-7236.2021.01.022. |
ZHANG H L, CHEN Z W, SHI R, TIAN J, GAO X H, WEN W, WANG Y C. Analysis of culling characteristics and influencing factors of longevity in Holstein cows in Ningxia. China Animal Husbandry & Veterinary Medicine, 2021, 48(1): 200-208. doi:10.16431/j.cnki.1671-7236.2021.01.022. (in Chinese) | |
[10] | 李想, 鄢新义, 罗汉鹏, 刘林, 郭刚, 王新宇, 王雅春. 不同模型估计中国荷斯坦牛生产寿命遗传参数. 畜牧兽医学报, 2019, 50(6): 1162-1170. doi:10.11843/j.issn.0366-6964.2019.06.006. |
LI X, YAN X Y, LUO H P, LIU L, GUO G, WANG X Y, WANG Y C. Genetic parameters estimation for productive life of Chinese Holsteins by different models. Acta Veterinaria et Zootechnica Sinica, 2019, 50(6): 1162-1170. doi:10.11843/j.issn.0366-6964.2019.06.006. (in Chinese) | |
[11] | 张文龙. 新疆三个品种牛泌乳曲线的分析及产奶量校正系数的制定[D]. 乌鲁木齐: 新疆农业大学, 2013. |
ZHANG W L. The analysis of lactation curve and milk yield correction coefficient formulation on three varieties of cattle in Xinjiang[D]. Urumqi: Xinjiang Agricultural University, 2013. (in Chinese) | |
[12] | 鄢新义, 刘澳星, 董刚辉, 郭刚, 王新宇, 刘林, 张胜利, 王雅春. 北京地区中国荷斯坦牛长寿性及其影响因素分析. 中国畜牧杂志, 2016, 52(23): 1-6. |
YAN X Y, LIU A X, DONG G H, GUO G, WANG X Y, LIU L, ZHANG S L, WANG Y C. Analysis of longevity and its influencing factors in Chinese Holstein population in Beijing. Chinese Journal of Animal Science, 2016, 52(23): 1-6. (in Chinese) | |
[13] | BERTHOLD M R, HPPNER F. On Clustering Time Series Using Euclidean Distance and Pearson Correlation. aiXiv preprint, 2016, 1601: 02213. |
[14] | 周明坤. 多性状BLUP法估计乳用种公牛育种值及预测精确度分析. 中国农业科学, 1991, 24(4): 75-80. |
ZHOU M K. Multi-trait blup method estimates dairy sires` breeding values and their predicted accuracies. Scientia Agricultura Sinica, 1991, 24(4): 75-80. (in Chinese) | |
[15] | IMBAYARWO-CHIKOSI V, DZAMA K, HALIMANI T, VAN WYK J, MAIWASHE A, BANGA C. Genetic prediction models and heritability estimates for functional longevity in dairy cattle. South African Journal of Animal Science, 2015, 45(2): 105-112. |
[16] | GONZÁLEZ-RECIO O, ALENDA R. Genetic relationship of discrete- time survival with fertility and production in dairy cattle using bivariate models. Genetics Selection Evolution, 2007, 39(4): 391. doi:10.1186/1297-9686-39-4-391. |
[17] | JAMROZIK J, FATEHI J, SCHAEFFER L R. Comparison of models for genetic evaluation of survival traits in dairy cattle: A simulation study. Journal of Animal Breeding & Genetics, 2008, 125(2): 75-83. |
[18] | VEERKAMP R F, BROTHERSTONE S, ENGEL B, MEUWISSEN, T H E. Analysis of censored survival data using random regression models. Animal Science, 2001, 72(1): 1-10. |
[19] | SASAKI O. Estimation of genetic parameters for longevity traits in dairy cattle: A review with focus on the characteristics of analytical models. Animal Science Journal, 2013, 84(6): 449-460. |
[20] | HOLTSMARK M, HERINGSTAD B, ØDEGÅRD J. Predictive abilities of different statistical models for analysis of survival data in dairy cattle. Journal of Dairy Science, 2009, 92(11): 5730-5738. |
[21] | 再娜古丽·君居列克, 塔西买买提·马合苏, 木古丽·木哈西, 黄锡霞, 张维, 刘丽元. 荷斯坦牛首次产犊日龄与305d产奶量遗传参数的评估. 家畜生态学报, 2017, 38(5):17-20. |
ZAINAGULI J, TAXIMAIMAITI M, MUGULI M, HUANG X X, ZHANG W, LIU L Y. Estimation of genetic parameters for birth weight and first parity 305 days milk yield in Holstein dairy cows. Journal of Domestic Animal Ecology, 2017, 38(5): 17-20. (in Chinese) | |
[22] | 周靖航, 叶东东, 黄锡霞, 马光辉, 葛建军, 帕尔哈提·木铁力甫, 焦阳, 刘丽元. 荷斯坦奶牛产奶量遗传力的估计. 新疆农业科学, 2013(1):170-174. |
ZHOU J H, YE D D, HUANG X X, MA G H, GE J J, MAERHATI M, JIAO Y, LIU L Y. The heritability estimate of milk yield on Holstein milk cows. Xinjiang Agricultural Science, 2013(1): 170-174. (in Chinese) | |
[23] | MONTALDO H H, CASTILLO-JUÁREZ H, VALENCIA POSADAS M, CIENFUEGOS-RIVAS E G, RUIZ-LÓPEZ F J. Genetic and environmental parameters for milk production,udder health, and fertility traits in Mexican Holstein cows. Journal of Dairy Science, 2010, 93: 2168-2175. |
[24] | TSURUTA S, MISZTAL I, LAWLOR T J. Changing definition of productive life in US Holsteins: Effect on genetic correlations. Journal of Dairy Science. 2005, 88: 1156-1165. |
[25] | PRITCHARD T, COFFEY M, MRODE R, WALL E. Genetic parameters for production, health, fertility and longevity traits in dairy cows. Animal, 2013, 7: 34-46. |
[26] | CRUICKSHANK J, WEIGEL K A, DENTINE M R, KIRKPATRICK B W. Indirect prediction of herd life in guernsey dairy cattle. Journal of Dairy Science, 2002, 85(5): 1307-1313. |
[27] | WEIGEL K A, LAWLOR J T J, VANRADEN P M, WIGGANS G R. Use of linear type and production data to supplement early predicted transmitting abilities for productive life. Journal of Dairy Science, 1998, 81(7): 2040-2044. |
[28] | HAILE-MARIAM M, BOWMAN P J, GODDARO M E. Genetic and environmental relationship among calving interval, survival, persistency of milk yield and somatic cell count in dairy cattle. Livestock Production Science, 2003, 80(3): 189-200. |
[29] | VUKASINOVIC N, MOLL J, KUNZI N. Genetic relationships among longevity, milk production, and type traits in Swiss Brown cattle. Livestock Production Science, 1995, 41(1): 11-18. |
[30] | 张海亮, 刘澳星, 米思远, 李想, 罗汉鹏, 鄢新义, 王雅春. 奶牛育种中的长寿性状. 中国农业科学, 2020, 53(19):4070-4082. |
ZHANG H L, LIU A X, MI S Y, LI X, LUO H P, YAN X Y, WANG Y C. A review on longevity trait in dairy cattle breeding. Scientia Agricultura Sinica, 2020, 53(19):4070-4082. (in Chinese) | |
[31] | 胥磊, 张梦华, 葛建军, 李琰, 张培大, 王祥旭, 尤震晨, 黄锡霞. 新疆昌吉地区某牛场奶牛淘汰原因与淘汰时泌乳天数关系研究. 中国畜牧杂志, 2020, 56(3):100-102+106. |
XU L, ZHANG M H, GE J J, LI Y, ZHANG P D, WANG X X, YOU Z C, HUANG X X. Study on the relationship between cow culling causes and lactation days in a dairy farm in Changji, Xinjiang. Chinese Journal of Animal Science, 2020, 56(3): 100-102+106. (in Chinese) | |
[32] | JAIRATH L K, HAYES J F, CUE R I. Multitrait restricted maximum likelihood estimates of genetic and phenotypic parameters of lifetime performance traits for Canadian Holsteins. Journal of Dairy Science, 1994, 77(1): 303-312. |
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