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新型鸭呼肠孤病毒通过皮下途径对无特定病原体鸡具有致病性。

Novel duck reovirus exhibits pathogenicity to specific pathogen-free chickens by the subcutaneous route.

机构信息

Institute of Poultry Science, Shandong Academy of Agricultural Sciences, No. 1 Jiaoxiao Road, Jinan City, 250023, Shan Dong Province, China.

Shandong Provincial Key Laboratory of Immunity and Diagnosis of Poultry Diseases, Jinan City, Shan Dong Province, China.

出版信息

Sci Rep. 2021 Jun 3;11(1):11769. doi: 10.1038/s41598-021-90979-w.

Abstract

To study the pathogenicity of new duck reovirus (NDRV) to chickens, eighty 3-day-old SPF chickens were equally divided into two groups. The experimental group was inoculated with a NDRV challenge strain of 100 μL (10 ELD/0.1 mL) by the subcutaneous (s.c.) route, and the control group was inoculated with 100 μL of sterile phosphate-buffered saline (PBS) by the same route. In the experimental group, chickens exhibited introflexion of claws, performing of splits, stunting syndrome, weight loss and death. Gross lesions such as enlargement and yellowish-white focal necroses were observed in the liver and spleen. Microscopic changes were typical including varying degrees of hepatocyte steatosis and necrosis, splenic lymphocyte necrosis, interstitial pneumonia. Viral loads were detected in lung, liver, heart, spleen, duodenum, burse and kidney. The liver and spleen viral loads remained a much higher level and maintained for a longer time, suggesting that these tissues might be the target organs. In summary, NDRV can cause systemic infections and death in chickens, which indicated that chickens may be infected by NDRV in poultry production.

摘要

为了研究新型鸭呼肠孤病毒(NDRV)对鸡的致病性,将 80 只 3 日龄 SPF 鸡等分为两组。实验组通过皮下(s.c.)途径接种 100 μL(10 ELD/0.1 mL)的 NDRV 攻毒株,对照组通过相同途径接种 100 μL 无菌磷酸盐缓冲盐水(PBS)。实验组鸡出现爪内弯、劈叉、发育迟缓综合征、体重减轻和死亡。肝脏和脾脏可见肿大和黄白色局灶性坏死等大体病变。显微镜下变化典型,包括不同程度的肝细胞脂肪变性和坏死、脾脏淋巴细胞坏死、间质性肺炎。在肺、肝、心、脾、十二指肠、腔上囊和肾中检测到病毒载量。肝脏和脾脏的病毒载量保持在较高水平并维持较长时间,提示这些组织可能是靶器官。综上所述,NDRV 可引起鸡的全身性感染和死亡,表明家禽生产中鸡可能会感染 NDRV。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/baa7/8175558/480f5495de44/41598_2021_90979_Fig1_HTML.jpg

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