• 文献检索
  • 文档翻译
  • 深度研究
  • 学术资讯
  • Suppr Zotero 插件Zotero 插件
  • 邀请有礼
  • 套餐&价格
  • 历史记录
应用&插件
Suppr Zotero 插件Zotero 插件浏览器插件Mac 客户端Windows 客户端微信小程序
定价
高级版会员购买积分包购买API积分包
服务
文献检索文档翻译深度研究API 文档MCP 服务
关于我们
关于 Suppr公司介绍联系我们用户协议隐私条款
关注我们

Suppr 超能文献

核心技术专利:CN118964589B侵权必究
粤ICP备2023148730 号-1Suppr @ 2026

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验

饥饿和再投喂对杂交石斑鱼(♀褐点石斑鱼×♂九棘鲈)生长、肠道微生物群和非特异性免疫的影响。

Effect of starvation and refeeding on growth, gut microbiota and non-specific immunity in hybrid grouper (Epinephelus fuscoguttatus♀×E. lanceolatus♂).

机构信息

College of Marine Sciences, South China Agricultural University, Guangzhou, 510640, China.

Guangdong Marine Fishery Experiment Center, Huizhou, 516081, China.

出版信息

Fish Shellfish Immunol. 2020 Feb;97:182-193. doi: 10.1016/j.fsi.2019.11.055. Epub 2019 Nov 29.

DOI:10.1016/j.fsi.2019.11.055
PMID:31790749
Abstract

Environmental changes can lead to food deprivation among aquatic animals. The main objective of this present research was to assess the effect of starvation and refeeding on growth, gut microbiota and non-specific immunity in a hybrid grouper (Epinephelus fuscoguttatus♀×E. lanceolatus♂). A total of 120 fish with an average weight of 74.16 ± 12.08 g were randomly divided into two groups (control group and fasted-refed group). The control group was fed until satiation for 60 days, while the fasted-refed group was fasted for 30 days and then fed to satiation for 30 days. The results showed that starvation led to a significantly decreased growth performance parameters [weight gain rate (WGR) and specific weight gain rate (SGR), while the feeding rate (FR) ] increased during the refeeding, non-specific immunity was significantly improved (p < 0.05) during the first 15 days of starvation, such as superoxide dismutase (SOD), glutathione peroxidase (GSH-PX), lysozyme (LYM) and catalase (CAT). However, non-specific immunity decreased at 30 days of starvation, the expression of genes related to immunity, such as TNF-α, was upregulated (p < 0.05) during starvation, while the expression levels of IL-17 and IFN-γ was reduced (p < 0.05). The expression of IFN-γ and IL-1β peaked during refeeding. Starvation led to significantly decreased abundance and diversity of intestinal microflora, with a higher abundance of Vibrio and a lower abundance of Brevibacillus, Bifidobacterium, Alloprevotella in the fasted-refed group during refeeding than in the control group. The above results reveal that starvation stimulates changes in growth, non-specific immunity, and the gut microbiota, providing new insights for the study of fish habitat selection and adaptability to environmental changes.

摘要

环境变化可导致水生动物食物短缺。本研究的主要目的是评估饥饿和再投喂对杂交石斑鱼(♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀♀

相似文献

1
Effect of starvation and refeeding on growth, gut microbiota and non-specific immunity in hybrid grouper (Epinephelus fuscoguttatus♀×E. lanceolatus♂).饥饿和再投喂对杂交石斑鱼(♀褐点石斑鱼×♂九棘鲈)生长、肠道微生物群和非特异性免疫的影响。
Fish Shellfish Immunol. 2020 Feb;97:182-193. doi: 10.1016/j.fsi.2019.11.055. Epub 2019 Nov 29.
2
Effects of dietary n-3 highly unsaturated fatty acids on growth, non-specific immunity, expression of some immune-related genes and resistance to Vibrio harveyi in hybrid grouper (♀ Epinephelus fuscoguttatus × ♂ Epinephelus lanceolatu).饲料中 n-3 高度不饱和脂肪酸对杂交石斑鱼(♀褐点石斑鱼×♂九棘鲈)生长、非特异性免疫、部分免疫相关基因表达及哈维弧菌抗性的影响。
Fish Shellfish Immunol. 2020 Jan;96:86-96. doi: 10.1016/j.fsi.2019.11.072. Epub 2019 Dec 1.
3
Effects of dietary ginkgo biloba leaf extract on growth performance, plasma biochemical parameters, fish composition, immune responses, liver histology, and immune and apoptosis-related genes expression of hybrid grouper (Epinephelus lanceolatus♂ × Epinephelus fuscoguttatus♀) fed high lipid diets.银杏叶提取物对高脂饲料喂养杂交石斑鱼(Epinephelus lanceolatus♂×Epinephelus fuscoguttatus♀)生长性能、血浆生化参数、鱼体组成、免疫反应、肝脏组织学、免疫和凋亡相关基因表达的影响。
Fish Shellfish Immunol. 2018 Jan;72:399-409. doi: 10.1016/j.fsi.2017.10.022. Epub 2017 Oct 12.
4
The effect of partial replacement of fish meal by soy protein concentrate on growth performance, immune responses, gut morphology and intestinal inflammation for juvenile hybrid grouper (Epinephelus fuscoguttatus ♀ × Epinephelus lanceolatus ♂).鱼粉部分替代大豆浓缩蛋白对杂交石斑鱼(♀褐点石斑鱼×♂九棘鲈)幼鱼生长性能、免疫反应、肠道形态和肠道炎症的影响。
Fish Shellfish Immunol. 2020 Mar;98:619-631. doi: 10.1016/j.fsi.2019.10.025. Epub 2019 Nov 5.
5
Substituting fish meal with castor meal in diets of hybrid grouper (Epinephelus fuscoguttatus♀ × E. lanceolatus♂): Effects on growth performance, immune response, antioxidant and digestive enzyme activities, gut morphology, and inflammatory-related gene expression.用蓖麻粕替代饲料中的鱼粉对杂交石斑鱼(♀褐点石斑鱼×♂青石斑鱼)生长性能、免疫应答、抗氧化和消化酶活性、肠道形态及炎症相关基因表达的影响。
Fish Shellfish Immunol. 2022 Dec;131:181-195. doi: 10.1016/j.fsi.2022.10.003. Epub 2022 Oct 4.
6
Effects of dietary Senecio scandens buch-ham extracts on growth performance, plasma biochemical, histology and the expression of immune-related genes in hybrid grouper (Epinephelus lanceolatus♂ × Epinephelus fuscoguttatus♀).垂序商陆提取物对杂交石斑鱼(军曹鱼♂×褐点石斑鱼♀)生长性能、血浆生化指标、组织学和免疫相关基因表达的影响。
Fish Shellfish Immunol. 2020 Mar;98:681-690. doi: 10.1016/j.fsi.2019.11.002. Epub 2019 Nov 4.
7
Identification and characterization of four Bacillus species from the intestine of hybrid grouper (Epinephelus fuscoguttatus♀ × E. lanceolatus♂), their antagonistic role on common pathogenic bacteria, and effects on intestinal health.从杂交石斑鱼(♀褐点石斑鱼×♂尖吻鲈)肠道中鉴定和表征的四种芽孢杆菌,及其对常见病原菌的拮抗作用和对肠道健康的影响。
Fish Shellfish Immunol. 2024 Sep;152:109795. doi: 10.1016/j.fsi.2024.109795. Epub 2024 Jul 26.
8
Dietary arginine affects growth, gut morphology, oxidation resistance and immunity of hybrid grouper (Epinephelus fuscoguttatus♀×Epinephelus lanceolatus♂) juveniles.日粮精氨酸对杂交石斑鱼(♀褐点石斑鱼×♂九棘鲈)幼鱼生长、肠道形态、抗氧化和免疫性能的影响。
Br J Nutr. 2018 Aug;120(3):269-282. doi: 10.1017/S0007114518001022. Epub 2018 May 25.
9
The effects of dietary Lycium barbarum extract on growth performance, liver health and immune related genes expression in hybrid grouper (Epinephelus lanceolatus♂ × E. fuscoguttatus♀) fed high lipid diets.枸杞提取物对高脂饮食条件下杂交石斑鱼(♂尖吻鲈×♀褐点石斑鱼)生长性能、肝脏健康和免疫相关基因表达的影响。
Fish Shellfish Immunol. 2019 Apr;87:847-852. doi: 10.1016/j.fsi.2019.02.016. Epub 2019 Feb 18.
10
Effects of potential probiotic Bacillus velezensis K2 on growth, immunity and resistance to Vibrio harveyi infection of hybrid grouper (Epinephelus lanceolatus♂ × E. fuscoguttatus♀).解淀粉芽孢杆菌 K2 对杂交石斑鱼(军曹鱼♂×褐点石斑鱼♀)生长、免疫及哈维弧菌感染抵抗力的影响。
Fish Shellfish Immunol. 2019 Oct;93:1047-1055. doi: 10.1016/j.fsi.2019.08.047. Epub 2019 Aug 16.

引用本文的文献

1
Modulation of Digestive Enzyme Activities and Intestinal γ-Proteobacteria in Gilthead Sea Bream Fed High-Fat Diets Supplemented with HIDROX Olive Oil Extract.高脂日粮添加HIDROX橄榄油提取物对金头鲷消化酶活性和肠道γ-变形菌的影响
Animals (Basel). 2025 Jul 16;15(14):2102. doi: 10.3390/ani15142102.
2
Seasonal and Regional Dynamics of the Intestinal Microbiota in from the Nujiang River.来自怒江的肠道微生物群的季节性和区域动态。
Animals (Basel). 2025 Mar 27;15(7):961. doi: 10.3390/ani15070961.
3
Microbiome-Metabolomics Analysis Insight into the Effects of Starvation and Refeeding on Intestinal Integrity in the Juvenile Largemouth Bass ().
微生物组-代谢组学分析洞察饥饿和再投喂对幼年大口黑鲈肠道完整性的影响()。
Int J Mol Sci. 2024 Nov 21;25(23):12500. doi: 10.3390/ijms252312500.
4
A High-Fat-Diet-Induced Microbiota Imbalance Correlates with Oxidative Stress and the Inflammatory Response in the Gut of Freshwater Drum ().高脂饮食诱导的微生物群失衡与淡水鼓肠道中的氧化应激和炎症反应相关()。
Antioxidants (Basel). 2024 Mar 18;13(3):363. doi: 10.3390/antiox13030363.
5
Dynamic changes of fecal microbiota in a weight-change model of Bama minipigs.巴马小型猪体重变化模型中粪便微生物群的动态变化
Front Microbiol. 2023 Oct 20;14:1239847. doi: 10.3389/fmicb.2023.1239847. eCollection 2023.
6
Effects of Starvation and Refeeding on Glucose Metabolism and Immune Responses in Macrobrachium rosenbergii.饥饿和再投喂对罗氏沼虾葡萄糖代谢和免疫反应的影响。
Mar Biotechnol (NY). 2023 Jun;25(3):447-462. doi: 10.1007/s10126-023-10218-3. Epub 2023 May 30.
7
Effects of Starvation and Refeeding on Growth, Digestion, Nonspecific Immunity and Lipid-Metabolism-Related Genes in .饥饿与再投喂对……生长、消化、非特异性免疫及脂质代谢相关基因的影响
Animals (Basel). 2023 Mar 25;13(7):1168. doi: 10.3390/ani13071168.
8
Partial immune responses in Sichuan bream () after starvation.四川白甲鱼()饥饿后的部分免疫反应。
Front Immunol. 2023 Mar 6;14:1098741. doi: 10.3389/fimmu.2023.1098741. eCollection 2023.
9
Metabolic turnover rate, digestive enzyme activities, and bacterial communities in the white shrimp under compensatory growth.补偿生长下白对虾的代谢周转率、消化酶活性和细菌群落。
PeerJ. 2023 Feb 15;11:e14747. doi: 10.7717/peerj.14747. eCollection 2023.
10
Effect of feed restriction and refeeding on body condition, digestive functionality and intestinal microbiota in rainbow trout (Oncorhynchus mykiss).限制和再投喂饲料对虹鳟(Oncorhynchus mykiss)身体状况、消化功能和肠道微生物群的影响。
Fish Physiol Biochem. 2023 Feb;49(1):169-189. doi: 10.1007/s10695-023-01170-z. Epub 2023 Jan 21.