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931.
肉鸡业是我国畜牧业的重要组成部分,肉鸡产业化经营推动了地方农村经济的发展,同时也大大降低了肉鸡业的投资和生产成本,我国肉鸡业正在向高度集约化、工厂化的方向发展。像其他工业生产一样,这种高效率生产肉产品的企业也存在废物处理、产品的安全性及生产过程中对大气、水体和土壤的污染问题,这些问题如果处理不当就会造成公害。本文就目前肉鸡业存在的公害, 相似文献
932.
绵羊肺腺瘤病毒NM株前病毒gag基因的克隆与序列分析 总被引:4,自引:0,他引:4
参照GenBank中已发表的绵羊肺腺瘤病毒(JSRV)的全基因序列,设计合成3对引物,对JSRVNM株的gag基因分3段进行PCR扩增,经琼脂糖凝胶电泳分析,分别呈3条531、888和949 bp的特异条带,将其分别克隆人pMD-18T载体中,进行序列测定并拼接序列,得到完整的gag基因序列。分析结果表明,与南非代表株(基因序列号NC-001494)的gag基因序列比较,核苷酸同源性为89.0%,推导出的氨基酸同源性为90%。与美国代表株(基因序列号AF105220)的gag基因序列比较,核苷酸同源性为86.3%,氨基酸同源性为87%。 相似文献
933.
Morphofunctional description of mucous cells in the gills of the Arapaimidae Arapaima gigas (Cuvier) during its development
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C. A. Ramos O. T. F. da Costa W. L. P. Duncan M. N. Fernandes 《Anatomia, histologia, embryologia》2018,47(4):330-337
The gill structure of the Amazonian fish Arapaima gigas (Cuvier 1829) shows ontogenetic changes during development, particularly due the transition from the aquatic to the obligatory air breathing mode of respiration. However, three main cell types can be found in the gills: mitochondrial rich cells, pavement cells and mucous cells (MCs). The MCs are involved in the secretory pathway. The functions of the secreted molecules include mechanical protection of epithelia, protection against parasites and bacterial infection, and role on ion regulation. In this study, we analysed mucous cell location and mucous cell type, based on pH, during the development of A. gigas. Using samples obtained from the environment, gills were collected and fixed in buffered solution. Histological techniques for the identification of MCs were performed Alcian Blue (AB) and periodic acid‐Schiff (PAS). The results showed the presence of PAS+ and AB+ cells in the whole filament in all examined fish. In animals less than 50 g, few MCs were present, and no differences were observed in AB+ and PAS+ cells. In animals weighing close to 500 g, more PAS+ cells than AB+ cells were observed, and in animals that weighed more than 1,000 g, more AB+ cells than PAS+ cells were observed. These observations may be a result of the ontogenetic changes in the gill epithelia, which can change the osmorespiratory compromise in ion regulation functions as well the glycosaminoglycans secreted by PAS cells, which in large animals can play a role in the protection against parasites and bacterial infection. 相似文献
934.
Distribution of alpha‐neoendorphin,ACTH (18–39) and beta‐endorphin (1–27) in the alpaca brainstem
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Manuel L. Sánchez Eliana de Souza Luis A. Aguilar Rafael Coveñas 《Anatomia, histologia, embryologia》2018,47(5):481-492
Using an immunocytochemical technique, we have studied in the alpaca brainstem the distribution of immunoreactive structures containing prodynorphin (alpha‐neoendorphin)‐ and pro‐opiomelanocortin (adrenocorticotrophin hormone (18–39) (ACTH), beta‐endorphin (1–27))‐derived peptides. No peptidergic‐immunoreactive cell body was observed. Immunoreactive fibres were widely distributed, although in most of the brainstem nuclei the density of the peptidergic fibres was low or very low. In general, the distribution of the immunoreactive fibres containing the peptides studied was very similar. A close anatomical relationship occurred among the fibres containing alpha‐neoendorphin, ACTH or beta‐endorphin (1–27), suggesting a functional interaction among the three peptides in many of the brainstem nuclei. The number of fibres belonging to the prodynorphin system was higher than that of the pro‐opiomelanocortin system. A moderate/low density of immunoreactive fibres was observed in 65.11% (for alpha‐neoendorphin (1–27)), 18.18% (for ACTH) and 13.95% (for beta‐endorphin) of the brainstem nuclei/tracts. In the alpaca brainstem, a high density of immunoreactive fibres was not observed. The neuroanatomical distribution of the immunoreactive fibres suggests that the peptides studied are involved in auditory, motor, gastric, feeding, vigilance, stress, respiratory and cardiovascular mechanisms, taste response, sleep‐waking cycle and the control of pain transmission. 相似文献
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Fracture of the medial intercondylar eminence of the tibia in horses treated by arthroscopic fragment removal (21 horses)
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