China Animal Husbandry and Veterinary Medicine ›› 2024, Vol. 51 ›› Issue (12): 5234-5243.doi: 10.16431/j.cnki.1671-7236.2024.12.012
• Nutrition and Feed • Previous Articles
LIU Zuolan1, CHEN Ying1, XUE Jiajia1, HUANG Xiaofeng1, ZHONG Hang1, LUO Yi1, XIE Qun1, WANG Qigui1, WANG Chao1,2
Received:
2024-03-13
Published:
2024-12-02
CLC Number:
LIU Zuolan, CHEN Ying, XUE Jiajia, HUANG Xiaofeng, ZHONG Hang, LUO Yi, XIE Qun, WANG Qigui, WANG Chao. Effects of Phytase Supplementation in Low Phosphorus Diet on Growth Performance, Plasma Biochemical Parameters,and the Contents of Total Nitrogen and Total Phosphorus in the Feces of Geese[J]. China Animal Husbandry and Veterinary Medicine, 2024, 51(12): 5234-5243.
[1] BERNDT T, KUMAR R.Novel mechanisms in the regulation of phosphorus homeostasis[J].Physiology, 2009, 24(1):17-25. [2] OMOTOSO A O, REYER H, OSTER M, et al.Broiler physiological response to low phosphorus diets at different stages of production[J].Poultry Science, 2023, 102:102351. [3] NARI N, GHASEMI H A.Growth performance, nutrient digestibility, bone mineralization, and hormone profile in broilers fed with phosphorus-deficient diets supplemented with butyric acid and Saccharomyces boulardii[J].Poultry Science, 2020, 99:926-935. [4] 王菊, 赵华, 陈小玲, 等.饲粮非植酸磷水平对肉鸭生长性能和消化功能的影响[J].动物营养学报, 2020, 32(1):206-214.WANG J, ZHAO H, CHEN X L, et al.Effects of dietary non-phytate phosphorus level on growth performance and digestive function of meat ducks[J].Chinese Journal of Animal Nutrition, 2020, 32(1):206-214.(in Chinese) [5] XU H M, DAI S J, ZHANG K Y, et al.Dietary phosphorus deficiency impaired growth, intestinal digestion and absorption function of meat ducks[J].Asian-Australasian Journal of Animal Science, 2019, 32(12):1897-1906. [6] GREINER R, LIM B L, CHENG C W, et al.Pathway of phytate dephosphorylation by β-propeller phytases of different origins[J].Canadian Journal of Microbiology, 2007, 53(4):488-495. [7] PIRGOZLIEV V, BEDFORD M R, ODUGUWA O, et al.The effect of supplementary bacterial phytase on dietary metabolisable energy, nutrient retention and endogenous losses in precision fed broiler chickens[J].Journal of Animal Physiology and Animal Nutrition, 2012, 96(1):52-57. [8] NAHM K.Efficient phosphorus utilization in poultry feeding to lessen the environmental impact of excreta[J].Worlds Poultry Science Journal, 2007, 63:625-654. [9] VIQORS S, SWEENEY T, O’SHEA C J, et al.Improvements in growth performance, bone mineral status and nutrient digestibility in pigs following the dietary inclusion of phytase are accompanied by modifications in intestinal nutrient transporter gene expression[J].British Journal of Nutrition, 2014, 112(5):688-697. [10] 王晶, 季海峰, 王四新, 等.低磷饲粮添加植酸酶对生长猪生长性能、营养物质表观消化率和排泄量的影响[J].中国畜牧杂志, 2017, 53(4):70-75.WANG J, JI H F, WANG S X, et al.Low-phosphorus diet supplemented with phytase on growth performance, apparent nutrient digestibility and fecal fecal excretion of growing pigs[J].Chinese Journal of Animal Science, 2017, 53(4):70-75.(in Chinese) [11] JAVADI M, PASCUAL J J, CAMBRA-LOPEZ M, et al.Effect of dietary mineral content and phytase dose on nutrient utilization, performance, egg traits and bone mineralization in laying hens from 22 to 31 weeks of age[J].Animals, 2021, 11(6):1495. [12] ADEOLA O.Phytase in starter and grower diets of White Pekin ducks[J].Poultry Science, 2018, 97(2):592-598. [13] LIU Y F, ZHANG K Y, ZHANG Y, et al.Effects of graded levels of phytase supplementation on growth performance, serum biochemistry, tibia mineralization, and nutrient utilization in Pekin ducks[J].Poultry Science, 2020, 99(10):4845-4852. [14] 燕磊, 吕尊周, 李星晨, 等.低磷饲粮中超量添加植酸酶对肉鸡生长性能、屠宰性能、消化器官指数、养分表观利用率及胫骨指标的影响[J].动物营养学报, 2022, 34(2):865-876.YAN L, LYU Z Z, LI X C, et al.Effects of excessive phytase supplementation in low phosphorus diet on growth performance, slaughter performance, digestive organ indexes, nutrient apparent utilization rates and tibial indexes of broilers[J].Chinese Journal of Animal Nutrition, 2022, 34(2):865-876.(in Chinese) [15] 郭艳红, 赵子涛, 庄蕾, 等.低磷饲粮中添加植酸酶对肉鸭生长性能、屠宰性能和血液生化指标的影响[J].中国畜牧杂志, 2023, 59(6):269-273.GUO Y H, ZHAO Z T, ZHUANG L, et al.Effects of low-phosphorus diet supplemented with phytase on growth performance, slaughtering performance, and blood biochemical parameters of meat ducks[J].Chinese Journal of Animal Science, 2023, 59(6):269-273.(in Chinese) [16] 范秋丽, 蒋守群, 苟钟勇, 等.低钙磷饲粮添加高剂量植酸酶对1~21日龄黄羽肉鸡生长性能、胫骨性能、血清生化指标的影响[J].动物营养学报, 2019, 31(1):304-313.FAN Q L, JIANG S Q, GOU Z Y, et al.Effects of high dose phytase on growth performance, tibia performance, serum biochemical indexes in Yellow-feathered broilers aged from 1 to 21 days fed low calcium and phosphorus diets[J].Chinese Journal of Animal Nutrition, 2019, 31(1):304-313.(in Chinese) [17] FAN L, HE Z Z, AO X, et al.Effects of residual superdoses of phytase on growth performance, tibia mineralization, and relative organ weight in ducks fed phosphorus-deficient diets[J].Poultry Science, 2019, 98(9):3926-3936. [18] 徐晓娜, 王宝维, 葛文华, 等.植酸酶对鹅生长性能、养分表观利用率及排泄物指标的影响[J].动物营养学报, 2013, 25(6):1315-1323.XU X N, WANG B W, GE W H, et al.Effects of phytase on growth performance, nutrient apparent availability and excretion indexes of geese[J].Chinese Journal of Animal Nutrition, 2013, 25(6):1315-1323.(in Chinese) [19] 郑惠文, 王宝维, 葛文华, 等.低锌饲粮添加植酸酶对1~4周龄鹅生长性能、胫骨发育、免疫性能及抗氧化能力的影响[J].动物营养学报, 2016, 28(11):3557-3566.ZHENG H W, WANG B W, GE W H, et al.Effects of phytase supplementation in a low zinc diet on growth performance, tibial development, immune performance and antioxidant capacity of geese aged from 1 to 4 weeks[J].Chinese Journal of Animal Nutrition, 2016, 28(11):3557-3566.(in Chinese) [20] 葛文华, 柯昌娇, 郑惠文, 等.低锌水平秸秆饲粮中添加植酸酶对5~16周龄五龙鹅生长性能、胫骨发育及抗氧化能力的影响[J].动物营养学报, 2017, 29(7):2357-2365.GE W H, KE C J, ZHENG H W, et al.Effects of straw fodder with low zinc level and adding phytase on growth performance, tibia development and antioxidant capacity of Wulong geese aged from 5 to 16 weeks[J].Chinese Journal of Animal Nutrition, 2017, 29(7):2357-2365.(in Chinese) [21] 王宝维.鹅饲料营养价值评价和营养需要量的研究现状与展望[J].中国家禽, 2019, 41(21):1-6.WANG B W.Current status and prospects of nutritional value evaluation and nutritional demand of goose feed [J].China Poultry, 2019, 41(21):1-6.(in Chinese) [22] 谢燕娟, 杨海明, 盛东峰, 等.不同纤维源对成年鹅肠道组织形态变化的影响[J].中国畜牧兽医, 2016, 43(4):960-966.XIE Y J, YANG H M, SHENG D F, et al.Effect of different sources of dietary fiber on intestine tissue morphology changes of adult geese[J].China Animal Husbandry & Veterinary Medicine, 2016, 43(4):960-966.(in Chinese) [23] WALK C L, SANTOS T T, BEDFORD M R.Influence of superdoses of a novel microbial phytase on growth performance, tibia ash, and gizzard phytate and inositol in young broilers[J].Poultry Science, 2014, 93(5):1172-1177. [24] FARHADI D, KARIMI A, SADEGHI G, et al.Effects of a high dose of microbial phytase and myo-inositol supplementation on growth performance, tibia mineralization, nutrient digestibility, litter moisture content, and foot problems in broiler chickens fed phosphorus-deficient diets[J].Poultry Science, 2017, 96(10):3664-3675. [25] LEE S A, NAGALAKSHMI D, RAJU M V L N, et al.Effect of phytase superdosing, myo-inositol and available phosphorus concentrations on performance and bone mineralization in broilers[J].Animal Nutrition, 2017, 3(3):247-251. [26] DERSJANT-LI Y, EVANS C, KUMAR A.Effect of phytase dose and reduction in dietary calcium on performance, nutrient digestibility, bone ash and mineralization in broilers fed corn-soybean meal-based diets with reduced nutrient density[J].Animal Feed Science and Technology, 2018, 242:95-110. [27] 张芹, 曾福海, 邹增丁, 等.耐热植酸酶对肉鸡生产性能、血液及骨骼钙磷含量的影响[J].中国饲料, 2010, 3:33-36.ZHANG Q, ZENG F H, ZOU Z D, et al.Effects of heat-resistant phytase on growth performance, calcium and phosphorus content in the blood and bone of broiler chickens[J].China Feed, 2010, 3:33-36.(in Chinese) [28] 张现玲, 梁陈冲, 于会民, 等.新型耐热植酸酶对肉仔鸡生长性能及血清生理生化指标的影响[J].畜牧兽医学报, 2013, 44(4):570-576.ZHANG X L, LIANG C C, YU H M, et al.Effect of new heat-resistant phytase on growth performance and blood biochemical and physiological parameters of broiler chickens[J].Acta Veterinaria et Zootechnica Sinica, 2013, 44(4):570-576.(in Chinese) [29] AKYUREK H, OZDUVEN M L, OKUR A A, et al.The effects of supplementing an organic acid blend and/or microbial phytase to a corn-soybean based diet fed to broiler chickens[J].African Journal of Agricultural Research, 2011, 6(3):642-649. [30] 刘松柏, 谭会泽, 温志芬, 等.低磷日粮高剂量添加植酸酶对清远麻肉鸡生长性能、屠宰性能及胫骨灰分含量的影响[J].粮食与饲料工业, 2019, 5:30-33.LIU S B, TAN H Z, WEN Z F, et al.Effects of high dosephytase supplementation in low phosphorus diet on growth performance, carcass traits and tibia ash content of broilers[J].Cereal & Feed Industry, 2019, 5:30-33.(in Chinese) [31] SANGALLI G G, EYNG C, SPINDOLA M, et al.Performance, bone characteristics, and physiological parameters of broilers fed nutrient-restricted diets supplemented with multicarbohydrase complex associated with high levels of phytase[J].Journal of Applied Poultry Research, 2021, 30(2):100141. [32] POERNAMA F, WIBOWO T A, LIU Y G.The effect of feeding phytase alone or in combination with non-starch polysaccharides-degrading enzymes on broiler performance, bone mineralization, and carcass traits[J].Journal of Applied Poultry Research, 2021, 30(1):100134. [33] 夏伟光, 黄雪冰, 王胜林, 等.低非植酸磷饲粮添加植酸酶对蛋种鸭产蛋性能、种蛋蛋壳品质和孵化性能及子代骨骼发育的影响[J].动物营养学报, 2023, 35(2):892-902.XIA W G, HUANG X B, WANG S L, et al.Effects of phytase supplementation in low non-phytate phosphorus diet on laying performance, eggshell quality, hatching performance and offspring skeleton development of laying duck breeders[J].Chinese Journal of Animal Nutrition, 2023, 35(2):892-902.(in Chinese) [34] BOLING S D, DOUGLAS M W, JOHNSON M L, et al.The effects of dietary available phosphorus levels and phytase on performance of young and older laying hens[J].Poultry Science, 2000, 79(2):224-230. [35] 闫威东, 王萍, 姜明君, 等.植酸酶对日粮铜减量下肉鸡生产性能和Cu、Zn排泄量的影响[J].畜牧兽医学报, 2023, 54(4):1535-1544.YAN W D, WANG P, JIANG M J, et al.Effects of supplementing phytase to Cu decrement diet on production performance and Cu, Zn excretion of broilers[J].Acta Veterinaria et Zootechnica Sinica, 2023, 54(4):1535-1544.(in Chinese) [36] 梁耀文, 郭长义, 柒启恩, 等.低蛋白质低磷饲粮对泌乳母猪生产性能、血清生化指标和氮、磷排放的影响[J].动物营养学报, 2021, 33(3):1766-1773.LIANG Y W, GUO C Y, QI Q E, et al.Effects of low protein and low phosphorus diet on performance, serum biochemical indexes, nitrogen and phosphorus emissions of lactating sows[J].Chinese Journal of Animal Nutrition, 2021, 33(3):1766-1773.(in Chinese) [37] 王志康, 熊云霞, 侯磊, 等.低微量元素低磷-植酸酶饲粮对育肥猪生长性能、肉品质和粪便重金属元素含量的影响[J].动物营养学报, 2022, 34(4):2196-2207.WANG Z K, XIONG Y X, HOU L, et al.Effects of low trace element and low phosphorus phytase diets on growth performance, meat quality and fecal heavy metal content of finishing pigs[J]. Chinese Journal of Animal Nutrition, 2022, 34(4):2196-2207.(in Chinese) |
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