Liu Mingyang, Sun Cunxin, Zhou Qunlan, Xu Pao, Wang Aimin, Zheng Xiaochuan, Liu Bo
Key Laboratory of Freshwater Fisheries and Germplasm Resources Utilization, Ministry of Agriculture and Rural Affairs, Freshwater Fisheries Research Center, Chinese Academy of Fishery Sciences, Wuxi, China.
Wuxi Fisheries College, Nanjing Agricultural University, Wuxi, China.
Front Immunol. 2024 Nov 26;15:1480897. doi: 10.3389/fimmu.2024.1480897. eCollection 2024.
This study aimed to investigate the effects of a low-fishmeal diet (LF, substituting soybean meal for 40% fish meal) and the supplementation of 500 mg/kg and 1000 mg/kg Yu Ping Feng (YPF) polysaccharides on the growth performance, antioxidant enzyme activities, intestinal ultrastructure, non-specific immunity, and microbiota of .
The study involved the administration of different diets to M. rosenbergii, including a control diet, a low-fishmeal diet (LF), and LF diets supplemented with 500 mg/kg and 1000 mg/kg YPF polysaccharides. Growth performance, antioxidant enzyme activities, intestinal ultrastructure, non-specific immunity, and microbiota were assessed.
The LF diet significantly reduced growth performance parameters compared to the control group. However, YPF supplementation notably improved these parameters, with the greatest improvement observed at a 1000 mg/kg dosage. Antioxidant enzyme activities (SOD, GSH-PX) were diminished in the LF group, accompanied by elevated MDA levels, whereas YPF supplementation restored these activities and reduced MDA levels. Ultrastructural analysis revealed that the LF diet caused intestinal villi detachment and peritrophic matrix (PM) shedding, which were alleviated by YPF. Gene expression related to PM formation (GS, CHS, EcPT) was downregulated in the LF group but significantly upregulated in the 1000P group. Non-specific immune gene expressions (IMD, Relish, IκBα) and enzyme activities (NO, iNOS) were suppressed in the LF group but enhanced by YPF supplementation. Microbial community analysis showed reduced diversity and altered composition in the LF group, with increased Proteobacteria and decreased Firmicutes, which were partially restored by YPF. Correlation analysis revealed that and play pivotal roles in regulating intestinal health. exhibited a positive relationship with the intestinal PM and immune-related indicators, whereas was negatively associated with these factors.
These results highlight the adverse impacts of a low-fishmeal diet on the intestinal health of M. rosenbergii and demonstrate the beneficial effects of YPF polysaccharides in alleviating these negative consequences through various mechanisms, including improved growth performance, enhanced antioxidant enzyme activities, restored intestinal ultrastructure, and modulated immune responses. The findings suggest that YPF supplementation could be a valuable strategy for mitigating the negative effects of low-fishmeal diets in aaquaculture.
本研究旨在探讨低鱼粉日粮(LF,用豆粕替代40%鱼粉)以及添加500毫克/千克和1000毫克/千克玉屏风(YPF)多糖对罗氏沼虾生长性能、抗氧化酶活性、肠道超微结构、非特异性免疫和微生物群的影响。
该研究对罗氏沼虾投喂不同日粮,包括对照日粮、低鱼粉日粮(LF)以及添加500毫克/千克和1000毫克/千克YPF多糖的LF日粮。评估生长性能、抗氧化酶活性、肠道超微结构、非特异性免疫和微生物群。
与对照组相比,LF日粮显著降低了生长性能参数。然而,添加YPF显著改善了这些参数,在1000毫克/千克剂量时改善最为明显。LF组的抗氧化酶活性(超氧化物歧化酶、谷胱甘肽过氧化物酶)降低,丙二醛水平升高,而添加YPF恢复了这些活性并降低了丙二醛水平。超微结构分析显示,LF日粮导致肠绒毛脱落和围食膜(PM)脱落,而YPF缓解了这些情况。与PM形成相关的基因表达(GS、CHS、EcPT)在LF组中下调,但在1000P组中显著上调。LF组中非特异性免疫基因表达(IMD、Relish、IκBα)和酶活性(一氧化氮、诱导型一氧化氮合酶)受到抑制,但添加YPF后增强。微生物群落分析表明,LF组的多样性降低且组成改变,变形菌增加,厚壁菌减少,而YPF部分恢复了这些情况。相关性分析表明,[具体内容缺失]在调节肠道健康中起关键作用。[具体内容缺失]与肠道PM和免疫相关指标呈正相关,而[具体内容缺失]与这些因素呈负相关。
这些结果突出了低鱼粉日粮对罗氏沼虾肠道健康的不利影响,并证明了YPF多糖通过多种机制减轻这些负面影响的有益作用,包括改善生长性能、增强抗氧化酶活性、恢复肠道超微结构和调节免疫反应。研究结果表明,添加YPF可能是减轻水产养殖中低鱼粉日粮负面影响的一种有价值策略。