Zou Wen, Lu Sijia, Wang Jia, Xu Yixiao, Shahid Muhammad Akbar, Saleem Muhammad Usman, Mehmood Khalid, Li Kun
Institute of Traditional Chinese Veterinary Medicine, College of Veterinary Medicine, Nanjing Agricultural University, Nanjing 210095, China.
MOE Joint International Research Laboratory of Animal Health and Food Safety, College of Veterinary Medicine, Nanjing Agricultural University, Nanjing 210095, China.
Animals (Basel). 2023 Aug 3;13(15):2503. doi: 10.3390/ani13152503.
As novel environmental contaminants, MPs exist widely in the environment and accumulate in organisms, which has become a global ecological problem. MP perturbations of organismal physiology and behavior have been extensively recorded in aquatic animals, but the potential effects of MPs on poultry are not well characterized. Here, we explored the adverse effects of MP exposure on the growth performance and gut microbiota of chickens. Results showed that the growth performance of chickens decreased significantly during MP exposure. Additionally, , , and were found to be dominant in the gut microbiota of MP-exposed chickens, regardless of health status. Although the types of dominant bacteria did not change, the abundances of some bacteria and the structure of the gut microbiota changed significantly. Compared with the controls, the alpha diversity of gut microbiota in chickens exposed to MPs showed a significant decrease. The results of comparative analyses of bacteria between groups showed that the levels of 1 phyla () and 18 genera dramatically decreased, whereas the levels of 1 phyla () and 12 genera dramatically increased, during MP exposure. In summary, this study provides evidence that exposure to MPs has a significant impact on the growth performance and gut microbial composition and structure of chickens, leading to a gut microbial imbalance. This may raise widespread public concern about the health threat caused by MP contamination, which is relevant to the maintenance of environmental quality and protection of poultry health.
作为新型环境污染物,微塑料广泛存在于环境中并在生物体内蓄积,已成为一个全球性生态问题。微塑料对生物生理和行为的干扰在水生动物中已有大量记录,但微塑料对家禽的潜在影响尚不明确。在此,我们探究了微塑料暴露对鸡生长性能和肠道微生物群的不利影响。结果表明,在微塑料暴露期间,鸡的生长性能显著下降。此外,无论健康状况如何,在暴露于微塑料的鸡的肠道微生物群中, 、 和 被发现占主导地位。虽然优势菌的种类没有变化,但一些细菌的丰度以及肠道微生物群的结构发生了显著变化。与对照组相比,暴露于微塑料的鸡的肠道微生物群的α多样性显著降低。组间细菌比较分析结果表明,在微塑料暴露期间,1个门( )和18个属的水平显著下降,而1个门( )和12个属的水平显著上升。总之,本研究提供了证据表明,微塑料暴露对鸡的生长性能以及肠道微生物组成和结构有显著影响,导致肠道微生物失衡。这可能引发公众对微塑料污染造成的健康威胁的广泛关注,这与维持环境质量和保护家禽健康相关。