浙江农业学报

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苏云金芽孢杆菌BtZ01对胚后小鼠生长、肠道发育和微生物菌群的影响

  

  1. (四川农业大学 动物医学院 动物微生态研究中心,四川 成都 611130)
  • 出版日期:2016-02-25 发布日期:2016-03-10

Effects of Bacillus thuringiensis BtZ01 on growth performance,intestinal development and microflora of post\|embryonic mice#br#

  1. (Animal Microecology Institute, College of Veterinary Medicine, Sichuan Agricultural University, Chengdu 611130, China)
  • Online:2016-02-25 Published:2016-03-10

摘要: 试验旨在研究苏云金芽孢杆菌(Bacillus thuringiensis,Bt)BtZ01对胚后小鼠生长、肠道发育及微生物菌群的影响。选取妊娠0 d的孕鼠48只,随机分为4组:对照组饮用灭菌水,试验组分别饮用添加106,108,5×109 cfu·mL-1 浓度BtZ01菌的灭菌水,试验从母鼠妊娠起至胚后小鼠成年,试验期66 d。结果表明:1)饮水中添加BtZ01菌对胚后小鼠体重、体长及料重比没有显著影响(P>0.05)。2)饮水中添加5×109 cfu·mL-1水平的BtZ01菌显著降低了胚后小鼠断奶时空回肠和结直肠的相对重量(P<0.05);饮水中添加106,108 cfu·mL-1水平的BtZ01菌对胚后小鼠断奶与成年时小肠的相对重量和体重校正长度没有影响(P>0.05)。3)饮水中添加108,5×109 cfu·mL-1水平的BtZ01菌显著增加了胚后小鼠成年时的空肠绒毛长度及绒毛长度/隐窝深度(V/C)值(P<0.05)。4)饮水中添加108,5×109 cfu·mL-1 水平的BtZ01菌极显著降低了胚后小鼠肠道中大肠杆菌数(P<0.01)。由此可见,高浓度的BtZ01菌对胚后小鼠幼年肠道发育具有一定的抑制作用,但从长期饲养效果来看,饮水中添加BtZ01菌能够促进小肠绒毛的增长,提高消化吸收和抑制有害菌群定植的能力。

关键词: 苏云金芽孢杆菌, 胚后小鼠, 肠道发育, 微生物菌群

Abstract:  This experiment was conducted to investigate the effects of Bacillus thuringiensis BtZ01 on the growth performance,intestinal development and microflora of post-embryonic mice. A total of 48 pregnant mice were randomly allocated to 4 groups: control group fed with sterilized water and other three treatment groups fed with sterilized water containing 106, 108, 5×109 cfu·mL-1 BtZ01, respectively. Trial lasted 66 days which from mice pregnant to the post-embryonic mice grown-up. The results showed as follows:1) Drinking water added with Bacillus thuringiensis BtZ01 had no significant effect on weight, length and feed/gain of post\|embryonic mice (P>0.05). 2) The relative weight of jejunum-ileum and colon-rectum of post\|embryonic mice at weaning (P<0.05) was significantly decreased in the treatment of 5×109 cfu·mL-1 Bacillus thuringiensis BtZ01. Adding Bacillus thuringiensis BtZ01 of 106 and 108 cfu·mL-1 levels had no significant effect on relative weight and correction length of small intestine of post\|embryonic mice at weaning and adulthood (P>0.05). 3) The villous length and V/C value of jejunum of post\|embryonic mice at adulthood (P<0.05) was significantly increased in the treatment of  108 and 5×109 cfu·mL-1 Bacillus thuringiensis BtZ01. 4) The number of E.coli in caecum of post\|embryonic mice (P<0.01) was extremely significantly decreased in the treatment of 108 and 5×109 cfu·mL-1 Bacillus thuringiensis BtZ01. In conclusion, high dose of Bacillus thuringiensis BtZ01 has certain inhibitory effect on intestinal development of post-embryonic mice in youth. But over the long\|term feeding result, drinking water added with Bacillus thuringiensis BtZ01 could improve intestinal villi development and the function of digestion and absorption and have an ability to inhibit the harmful bacteria to colonization.

Key words: Bacillus thuringiensis, post\, embryonic mice, intestinal development, microflora