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首页> 外文期刊>Animal >LPAR5, GNAT3 and partial amino acid transporters messenger RNA expression patterns in digestive tracts, metabolic organs and muscle tissues of growing goats
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LPAR5, GNAT3 and partial amino acid transporters messenger RNA expression patterns in digestive tracts, metabolic organs and muscle tissues of growing goats

机译:LPAR5,GNAT3和部分氨基酸转运蛋白在消化道中的信使RNA表达模式,种植山羊的代谢器官和肌肉组织

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摘要

Sufficient amino acid (AA) transport is essential to ensure the normal physiological function and growth of growing animals. The processes of AA sensing and transport in humans and murine animals, but rarely in goats, have been arousing great interest recently. This study was conducted to investigate the messenger RNA expression patterns of lysophosphatidic acid receptor 5 (LPAR5), guanine nucleotide-binding protein α-transducing 3 (GNAT3) and important partial AA transporters in digestive tracts, metabolic organs and muscles of growing goats. The results showed that these genes were widely expressed in goats, and had different expression patterns. LPAR5, GNAT3, solute carrier (SLC38A2), SLC7A7, SLC7A1 and SLC3A1 were rarely expressed in the rumen, but were highly expressed in the abomasum and intestine which are the main sites of AA absorption. GNAT3, SLC38A1, SLC38A2, SLC6A19, SLC7A7 and SLC7A1 showed comparatively high expression in the pancreas and the vital digestive glands, and the relatively high expression of these nine genes were noted in the tibialis posterior, the active muscle in energy metabolism. The correlation analysis showed that there were certain positive correlation among most genes. The current results indicate that the AA sensing and transport occur extensively in the abomasum and small intestine, metabolic organs and muscle tissues of ruminants, and that related genes have tissue specificity.
机译:足够的氨基酸(AA)运输对于确保生长动物的正常生理功能和生长至关重要。人类和鼠动物的AA感应和运输过程,但很少在山羊中,最近一直引起巨大的利益。进行该研究以研究消化道中的消化道,代谢器官和生长山羊的代谢器官和山羊的鸟嘌呤核苷酸结合蛋白α - 转换3(GNAT3)和重要的部分AA转运蛋白的信使RNA表达模式。结果表明,这些基因在山羊中广泛表达,具有不同的表达模式。 LPAR5,GNAT3,溶质载体(SLC38A2),SLC7A7,SLC7A1和SLC3A1很少在瘤胃中表达,但在紫杉木和肠中高度表达,肠道是AA吸收的主要部位。 GNAT3,SLC38A1,SLC38A2,SLC6A19,SLC7A7和SLC7A1在胰腺和重要的消化腺中表现出相对高的表达,并且在胫骨后部,能量代谢中的活性肌肉中发现了这九种基因的相对高的表达。相关分析表明,大多数基因之间存在一定的正相关性。当前结果表明,AA感测和运输广泛地发生在脱菊和小肠,代谢器官和反刍动物的肌肉组织中,并且相关基因具有组织特异性。

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