Verdile Nicole, Pasquariello Rolando, Scolari Marco, Scirè Giulia, Brevini Tiziana A L, Gandolfi Fulvio
Department of Agricultural and Environmental Sciences, University of Milan, 20133 Milano, Italy.
Skretting Aquaculture Research Centre, 37100 Verona, Italy.
Animals (Basel). 2020 Apr 24;10(4):745. doi: 10.3390/ani10040745.
To increase the sustainability of trout farming, the industry requires alternatives to fish-based meals that do not compromise animal health and growth performances. To develop new feeds, detailed knowledge of intestinal morphology and physiology is required. We performed histological, histochemical, immunohistochemical and morphometric analysis at typical time points of in vivo feeding trials (50, 150 and 500 g). Only minor changes occurred during growth whereas differences characterized two compartments, not linearly distributed along the intestine. The first included the pyloric caeca, the basal part of the complex folds and the villi of the distal intestine. This was characterized by a significantly smaller number of goblet cells with smaller mucus vacuoles, higher proliferation and higher apoptotic rate but a smaller extension of fully differentiated epithelial cells and by the presence of numerous pinocytotic vacuolization. The second compartment was formed by the proximal intestine and the apical part of the posterior intestine complex folds. Here we observed more abundant goblet cells with bigger vacuoles, low proliferation rate, few round apoptotic cells, a more extended area of fully differentiated cells and no pinocytotic vacuoles. Our results suggest that rainbow trout intestine is physiologically arranged to mingle digestive and absorptive functions along its length.
为提高鳟鱼养殖的可持续性,该行业需要以鱼粉为基础的饲料替代品,同时不影响动物健康和生长性能。为开发新饲料,需要详细了解肠道形态和生理机能。我们在体内喂养试验的典型时间点(50克、150克和500克)进行了组织学、组织化学、免疫组织化学和形态测量分析。生长过程中仅发生了微小变化,而差异则体现在两个区域,并非沿肠道呈线性分布。第一个区域包括幽门盲囊、复杂褶皱的基部以及远端肠道的绒毛。其特征是杯状细胞数量显著减少,黏液空泡较小,增殖率较高,凋亡率较高,但完全分化的上皮细胞延伸范围较小,且存在大量胞饮空泡化现象。第二个区域由近端肠道和后肠复杂褶皱的顶端部分组成。在这里,我们观察到杯状细胞更为丰富,空泡更大,增殖率低,圆形凋亡细胞少,完全分化细胞的区域更广泛,且无胞饮空泡。我们的结果表明,虹鳟鱼肠道在生理上沿其长度安排了消化和吸收功能。