首页> 外文期刊>Aquaculture Reports >Host gut-derived probiotic bacteria promote hypertrophic muscle progression and upregulate growth-related gene expression of slow-growing Malaysian Mahseer Tor tambroides
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Host gut-derived probiotic bacteria promote hypertrophic muscle progression and upregulate growth-related gene expression of slow-growing Malaysian Mahseer Tor tambroides

机译:宿主肠道来源的益生菌可促进肥大性肌肉的生长,并上调生长缓慢的马来西亚Mahseer Tor tambroides的生长相关基因表达

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In modern aquaculture, dietary supplementation of probiotics is a novel approach for enhancing growth performance of slow-growing fish. However, the actual role of probiotics in regulating muscle growth at cellular and molecular levels in fish still needs to be clarified. In this study, we hypothesized that host gut derived probiotic bacteria would enhance cellular muscle growth, and upregulate growth-related gene expression in slow-growing Malaysian mahseer Tor tambroides . Therefore, three host-associated probiotics ( Bacillus sp. AHG22, Alcaligenes sp. AFG22, and Shewanella sp. AFG21) were isolated from the gastro-intestinal tract of T. tambroides and screened based on their digestive enzyme activity. A fishmeal and casein based control diet (40% crude protein and 10% lipid) was formulated, and three different probiotic supplemented diets were prepared by immersing the control diet in each isolated host-derived bacteria, suspended in sterile phosphate buffered saline (PBS), to achieve a final concentration of approximately 1.0?×?108 CFU?g?1 feed. Triplicate groups of T. tambroides juveniles (initial weight 1.39?±?0.06?g) were stocked in twelve glass aquaria (100?L capacity) with stocking density of 20 individuals per aquarium. The feed was applied twice daily at 3.0% of the fish body weight per day for 90?days. Growth performance (weight gain and specific growth rate) of T. tambroides juveniles were significantly higher in Alcaligenes sp. AFG22 and Bacillus sp. AHG22 supplemented diet treatments. Muscle morphometric analysis revealed that dietary supplementation of host-associated probiotic bacteria did not influence the frequency distribution of hyperplastic (class 10) small diameter fibers (≤10?μm). However, hypertrophic (Class 50, Class 60 and Class 70) large diameter fibers (>50?μm) were significantly higher in Alcaligenes sp. AFG22 and Bacillus sp. AHG22 supplemented treatments, indicating that increased growth rate of T. tambroides in these treatments was mostly governed by increased muscle fibers hypertrophy, rather than by hyperplasia. Real-time PCR data demonstrated that the relative mRNA expression of GH and IGF1 was upregulated in juvenile T. tambroides fed the diets supplemented with Alcaligenes sp. AFG22 and Bacillus sp. AHG22. These results indicate that host-derived probiotics, especially Alcaligenes sp. AFG22 and Bacillus sp. AHG22, have a significant potential as autochthonous probiotics for the stimulation of growth performance of slow-growing T. tambroides in aquaculture.
机译:在现代水产养殖中,膳食补充益生菌是提高慢速生长鱼类生长性能的一种新方法。但是,益生菌在调节鱼类细胞和分子水平的肌肉生长中的实际作用仍需要弄清楚。在这项研究中,我们假设宿主肠道衍生的益生菌会增强细胞肌肉的生长,并上调生长缓慢的马来西亚mahseer Tor tambroides中与生长相关的基因表达。因此,从tambroides的胃肠道中分离了三种与宿主相关的益生菌(芽孢杆菌属AHG22,产碱菌属物种AFG22和希瓦氏菌属AFG21),并根据其消化酶活性进行了筛选。配制了以鱼粉和酪蛋白为基础的对照饮食(40%的粗蛋白和10%脂质),通过将对照饮食浸入悬浮在无菌磷酸盐缓冲盐水(PBS)中的每种分离的宿主衍生细菌中来制备三种不同的益生菌补充饮食,以达到约1.0?×?10 8 CFU?g ?1 进料的终浓度。一式三份的T. tambroides幼体(初始重量为1.39?±?0.06?g)被放到十二个玻璃水族箱(容量为100?L)中,每个水族箱的放养密度为20只。每天两次以鱼体重的3.0%施用饲料90天。在Alcaligenes sp。中,T。tambroides幼鱼的生长性能(增重和比生长速率)显着更高。 AFG22和芽孢杆菌AHG22补充饮食治疗。肌肉形态分析表明,膳食补充宿主相关益生菌不会影响增生(10级)小直径纤维(≤10?m)的频率分布。但是,肥大(50级,60级和70级)大直径纤维(> 50?m)在Alcaligenes sp。中明显更高。 AFG22和芽孢杆菌AHG22补充了治疗,表明在这些治疗中,T。tambroides的生长速率增加主要是由增加的肌纤维肥大而不是增生所决定。实时PCR数据表明,在补充了Alcaligenes sp。的日粮中,生长发育的T. tambroides幼虫中GH和IGF1的相对mRNA表达上调。 AFG22和芽孢杆菌AHG22。这些结果表明宿主来源的益生菌,尤其是产碱菌。 AFG22和芽孢杆菌AHG22作为土生益生菌具有巨大潜力,可刺激水产养殖中缓慢生长的棉铃虫的生长性能。

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