中国农业科学 ›› 2019, Vol. 52 ›› Issue (11): 1973-1981.doi: 10.3864/j.issn.0578-1752.2019.11.012

所属专题: 畜禽饲料中矿物元素

• 专题:畜禽饲料中矿物元素 • 上一篇    下一篇

我国畜禽饲料资源中常量元素钙含量分布的调查

陈志勇1,2,张丽阳1,马雪莲1,王良治1,2,邢冠中3,杨柳3,刘东元4,廖秀冬1,李素芬3,黄艳玲2,吕林1(),罗绪刚1()   

  1. 1 中国农业科学院北京畜牧兽医研究所/矿物元素营养研究室,北京 100193
    2 西南民族大学生命科学与技术学院,成都610041
    3 河北科技师范学院动物科技学院,河北秦皇岛066004
    4 北京元创智汇生物技术有限公司,北京100020
  • 收稿日期:2019-02-18 接受日期:2019-04-28 出版日期:2019-06-01 发布日期:2019-06-11
  • 通讯作者: 吕林,罗绪刚
  • 作者简介:陈志勇,E-mail:1204131046@qq.com。
  • 基金资助:
    国家科技部科技基础性工作专项(2014FY111000)、中国农业科学院农科英才专项、中国农业科学院科技创新工程专项(ASTIP-IAS09)和国家现代农业产业技术体系岗位专家专项(CARS-41)

A Survey on Distribution of Calcium Contents in Feedstuffs for Livestock and Poultry in China

CHEN ZhiYong1,2,ZHANG LiYang1,MA XueLian1,WANG LiangZhi1,2,XING GuanZhong3,YANG Liu3,LIU DongYuan4,LIAO XiuDong1,LI SuFen3,HUANG YanLing2,LÜ Lin1(),LUO XuGang1()   

  1. 1 Mineral Nutrition Research Division, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193
    2 College of Life Science and Technology, Southwest Minzu University, Chengdu 610041
    3 College of Animal Science and Technology, Hebei Normal University of Science and Technology, Qinhuangdao 066004, Hebei
    4 Beijing Yuanchuang Zhihui Biotechnology Co., Ltd, Beijing 100020
  • Received:2019-02-18 Accepted:2019-04-28 Online:2019-06-01 Published:2019-06-11
  • Contact: Lin Lü,XuGang LUO

摘要:

目的 调查我国畜禽饲料资源中钙含量的分布,为合理利用饲料资源及精准配制畜禽饲粮提供科学依据。方法 运用统一的数据采集规范,采集了全国31个省(市、区)的37种3 862个饲料原料样品,经微波消解后,使用IRIS IntrepidⅡ等离体子发射光谱仪对其钙含量进行了测定。结果 谷物籽实中平均钙含量为457 mg·kg -1(范围74.5—832 mg·kg -1),其中大麦的钙含量最高,玉米最低,变异系数范围为21.2%—85.3%;谷物籽实加工副产品中平均钙含量为1 090 mg·kg -1(范围为93.4—3 264 mg·kg -1),其中小麦DDGS的钙含量最高,碎米最低,变异系数范围为19.5%—142%;植物性蛋白饲料中平均钙含量为3 987 mg·kg -1(范围为1 742—7 909 mg·kg -1),其中菜籽粕的钙含量最高,花生粕最低,变异系数范围为0.92%—34.6%;动物性蛋白饲料中平均钙含量为14 448 mg·kg -1(范围为115—50 007 mg·kg -1),其中鱼粉的钙含量最高,血球蛋白粉最低,变异系数范围为25.0%—239%;秸秆类饲料中平均钙含量为5 969 mg·kg -1(范围为1 931—13 524 mg·kg -1),其中甘薯藤的钙含量最高,小麦秸最低,变异系数范围为27.6%—39.0%;牧草类饲料中平均钙含量为6 667 mg·kg -1(范围为4 157—13 963 mg·kg -1),其中苜蓿的钙含量最高,羊草最低,变异系数范围为30.3%—94.6%;矿物质饲料中平均钙含量为30%(19.2%—41.2%),其中贝壳粉的钙含量最高,骨粉最低,变异系数范围为2.67%—24.0%。各类饲料原料中钙含量分布规律为:矿物质饲料>动物性蛋白饲料>牧草类饲料>秸秆类饲料>植物性蛋白饲料>谷物籽实加工副产品>谷物籽实。同一类别不同饲料原料间钙含量差异显著(P<0.05)。以省(区)为单位,对不同地区玉米、小麦和豆粕中钙含量进行比较,表明不同地区玉米和豆粕中钙含量存在显著的差异(P<0.05),而小麦中钙含量受地区性的影响较小(P>0.05)。各省(区)玉米的平均钙含量范围为48.1—155 mg·kg -1,其中山西省玉米钙含量最高,辽宁省最低,变异系数范围为20.1%—321%;各省(区)小麦的平均钙含量范围为362—590 mg·kg -1,其中山西省小麦钙含量最高,湖北省最低,变异系数范围为8.29%—66.1%;各省(区)豆粕的平均钙含量范围为3 001—4 153 mg·kg -1,其中山西省豆粕钙含量最高,江苏最低,变异系数范围为1.30%—21.4%。结论 我国饲料原料中钙含量受种类及地区性影响较大。本研究结果对于生产者了解饲料原料中实际钙含量,精准配制饲粮,以确保动物的健康及高效生产具有重要意义。

关键词: 畜禽, 饲料资源, 钙含量, 饲粮

Abstract:

【Objective】 The distribution of calcium contents in feed resources for livestock and poultry feed in China was investigated to provide scientific basis for rational use of feed resources and precise formulation of livestock and poultry’s diets.【Method】 Thirty-seven kinds of feedstuffs, a total of 3 862 samples, were collected from 31 provinces (cities, regions) of China according to a unified data collection specification, and the samples were digested by microwave to determine Ca contents by inductively IRIS IntrepidⅡ coupled plasma emission spectrometer.【Result】 Average Ca contents in feedstuffs were as follows: cereal seeds, 457 mg·kg -1 (74.5-832 mg·kg -1), the highest and lowest Ca contents were observed in the barley and corn, respectively, and coefficients of variation ranged from 21.2% to 85.3%; cereal by-products, 1 090 mg·kg -1 (93.4-3 264 mg·kg -1), the highest and lowest Ca contents were observed in the wheat DDGS and broke rice, respectively, and coefficients of variation ranged from 19.5% to 142%; plant-protein feeds, 3 987 mg·kg -1 (1 742-7 909 mg·kg -1), the highest and lowest Ca contents were observed in the rapeseed meal and peanut meal, respectively, and coefficients of variation ranged from 0.92%-34.6%; animal-protein feeds, 14 448 mg·kg -1 (115-50 007 mg·kg -1), the highest and lowest Ca contents were observed in the fish meal and dried blood cells, respectively, and coefficients of variation ranged from 25.0%-239%; straw feeds, 5 969 mg·kg -1 (1 931-13 524 mg·kg -1), the highest and lowest Ca contents were observed in the sweet potato vines and wheat straw, respectively, and coefficients of variation ranged from 27.6% to 39.0%; forge feeds, 6 667 mg·kg -1 (4 157-13 963 mg·kg -1), the highest and lowest Ca contents were observed in the alfalfa and leynus chinensis, respectively, and coefficients of variation ranged from 30.3% to 94.6%; mineral feeds, 30% (19.2%-41.2%), the highest and lowest Ca contents were observed in the shell meal and bone meal, respectively, and coefficients of variation ranged from 2.67% to 24.0%. The distribution regularities of Ca contents in feedstuffs were as follows: mineral feeds>animal-protein feeds>forage feeds>straw feeds>plant-protein feeds>cereal by-products>cereal seeds. A significant difference (P<0.05) was also observed in Ca contents among different feeds in the same category. Regional comparisons on a basis of provinces (regions) were made among Ca contents of corn, wheat and soybean meal, and showed that the Ca contents in corn and soybean meal but not wheat (P>0.05) were greatly affected (P<0.05) by environmental changes in different regions. The average Ca contents of corn in provinces (regions) ranged from 48.1 to 155 mg·kg -1, the highest and lowest Ca contents of corn were observed in Shanxi and Liaoning, respectively, and coefficients of variation ranged from 20.1% to 321%; the average Ca contents of wheat of provinces (regions) ranged from 362 to 590 mg·kg -1, the highest and lowest Ca contents of wheat were observed in the Shanxi and Hubei, respectively, and coefficients of variation ranged from 8.29% to 66.1%; the average Ca contents of soybean meal of provinces (regions) ranged from 3 001 to 4 153 mg·kg -1, the highest and lowest Ca contents of wheat were observed in the Shanxi and Jiangsu, respectively, and coefficients of variation ranged from 1.30%-21.4%.【Conclusion】 The Ca contents in feedstuffs of our country were greatly influenced by types and regions. The results from the current study would be of great significances toward having knowledge of actual Ca contents in the feedstuffs to precisely formulate diets in order to ensure animal health and efficient production.

Key words: livestock and poultry, feed resources, calcium contents, diets