[1] AFRC F R.Probiotics in man and animals[J].Journal of Applied Bacteriology,1989,66(5):365-378.

[2] SWANN M M.Use of antibiotics in animal husbandry and veterinary medicine[R].London:Her Majesty's Stationery Office,1969:cc1525-cc1531
[3] HALTTUNEN T,COLLADO M C,EL-NEZAMI H,et al.Combining strains of lactic acid bacteria may reduce their toxin and heavy metal removal efficiency from aqueous solution[J].Letters in Applied Microbiology,2008,46(2):160-165.
[4] 王晓伟,姚国强,高鹏飞,等.乳酸菌对重金属污染的生物修复作用[J].中国微生态学杂志,2014,26(8):968-972.
[5] ZHUANG P,ZOU H L,SHU W S,et al.Biotransfer of heavy metals along a soil-plant-insect-chicken food chain:field study[J].Journal of Environmental Sciences,2009,21(6):849-853.

[6] 佚名.亚洲饲料及预混料中重金属水平惊人[J].饲料与畜牧,2015(3):26.
[7] 姚亚军,钟芳,彭红星,等.矿物质饲料原料中重金属元素含量调查[C]//中国畜牧兽医学会动物营养学分会第十一次全国动物营养学术研讨会论文集.长沙:中国畜牧兽医学会,2012:353.
[8] 柏雪,原泽鸿,王建萍,等.四川省常用能量饲料和蛋白质饲料中重金属分布研究[J].动物营养学报,2016,28(9):2847-2860.
[9] 朱恩,王寓群,林天杰,等.上海地区畜禽粪便重金属污染特征研究[J].农业环境与发展,2013,30(1):90-93.
[10] 王湧,曹冬梅,孙安权.畜禽粪便中重金属污染现状及控制[J].猪业科学,2016,33(5):48-49
[11] 石奥,张建淼,王重庆,等.北京市规模化畜禽养殖场粪便和污水监测及承载力估算[J].家畜生态学报,2018,39(4):63-67,96.
[12] 郑文才,徐静,杨革玲.复合微生态制剂对肉鸡生产性能、消化酶活性及免疫功能的影响[C]//中国畜牧兽医学会动物微生态学分会第五届第十二次全国学术研讨会论文集.青岛:中国畜牧兽医学会动物微生态学分会,2016.
[13] 向双云,周珍辉,关文怡,等.16S rDNA序列分析法鉴定鸡源肠道乳酸菌[J].饲料研究,2016(15):14-17,35.
[14] 翟齐啸.乳酸菌减除镉危害的作用及机制研究[D].博士学位论文.无锡:江南大学,2015:23-53.
[15] 倪奕弘.耐受重金属铜的乳酸菌的筛选及其铜结合性能的研究[D].硕士学位论文.广州:暨南大学,2014:46-65.
[16] ÅVALL-JÄÄSKELÄINEN S,HYNÖNEN U,ILK N,et al.Identification and characterization of domains responsible for self-assembly and cell wall binding of the surface layer protein of Lactobacillus brevis ATCC 8287[J].BMC Microbiology,2008,8:165.
[17] 李兰松.重金属吸附菌的选育、吸附特性和机理研究[D].博士学位论文.太原:太原理工大学,2016:94-113.
[18] 瞿佳,赵玲侠,沈讷敏,等.抗锌细菌ZS2的分离鉴定及抗金属特性研究[J].生物技术通报,2016,32(12):137-142.
[19] HALTTUNEN T,SALMINEN S,TAHVONEN R.Rapid removal of lead and cadmium from water by specific lactic acid bacteria[J].International Journal of Food Microbiology,2007,114(1):30-35.

[20] BHAKTA J N,OHNISHI K,MUNEKAGE Y,et al.Characterization of lactic acid bacteria-based probiotics as potential heavy metal sorbents[J].Journal of Applied Microbiology,2012,112(6):1193-1206.

[21] 满兆红,都启晶,姜彦君,等.一株鸡源嗜铅乳酸菌的筛选鉴定[J].山东农业科学,2014,46(2):72-76,81.
[22] 夏爽,谷珊珊,关乃瑜,等.动物肠道中具有益生特征的抗铅乳酸菌的分离与鉴定[J].中国兽医科学,2015,45(12):1254-1259.
[23] 贾原博,赵晓峰,贺敏,等.耐受重金属铅乳酸菌的分离筛选及鉴定[J].食品工业科技,2016,37(22):244-248.
[24] 沈薇,俞勤斐,王雨皓,等.健康新生儿粪便中耐铅菌株的分离鉴定及铅吸附实验[J].南方医科大学学报,2016,36(12):1602-1608.
[25] 熊婧.乳酸菌对重金属镉的耐受性和吸附机制研究[D].硕士学位论文.广州:暨南大学,2015:31-41.
[26] 陈金泰,谷珊珊,翟羽飞,等.优良动物源抗汞益生乳酸菌的筛选及其抗性基因的克隆[J].黑龙江畜牧兽医,2017(3):138-141.
[27] 刘文,倪奕弘,张风鸣,等.高铜、高锌饲养对仔猪肠道菌重金属耐受性的研究[J].畜禽业,2014(3):32-35.
[28] BHAKTA J N,MUNEKAGE Y,OHNISHI K,et al.Isolation and identification of cadmium-and lead-resistant lactic acid bacteria for application as metal removing probiotic[J].International Journal of Environmental Science and Technology,2012,9(3):433-440.

[29] ZHAI Q X,WANG G,ZHAO J X,et al.Protective effects of Lactobacillus plantarum CCFM8610 against acute cadmium toxicity in mice[J].Applied and Environmental Microbiology,2013,79(5):1508-1515.

[30] ZHAI Q X,WANG G,ZHAO J X,et al.Protective Effects of Lactobacillus plantarum CCFM8610 against chronic cadmium toxicity in mice indicate routes of protection besides intestinal sequestration[J].Applied and Environmental Microbiology,2014,80(13):4063-4071.

[31] 都启晶,高雁斐,满兆红,等.嗜铅肠球菌JT1对大鼠体内的排铅机理[J].中国食品学报,2018,18(6):40-44.
[32] 满兆红,都启晶,姜彦君,等.鸡源肠球菌体内外铅吸附作用研究[J].中国食品学报,2016,16(3):42-50.
[33] GIRI S S,YUN S,JUN J W,et al.Therapeutic effect of intestinal autochthonous Lactobacillus reuteri P16 against waterborne lead toxicity in Cyprinus carpio[J].Frontiers in Immunology,2018,9:1824.
[34] 陈大伟,刘茵茵,王倩倩,等.铅镉联合暴露对蛋鸡肝脏、肾脏中微量元素含量的影响[J].中国家禽,2017,39(13):36-39.
[35] 韩新燕,许梓荣,刘波静,等.饲料镉对必需微量元素在猪组织中分布的影响[J].中国畜牧杂志,2007,43(15):23-26.