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首页> 外文期刊>Fish Physiology and Biochemistry >Soybean glycinin decreased growth performance, impaired intestinal health, and amino acid absorption capacity of juvenile grass carp (Ctenopharyngodon idella)
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Soybean glycinin decreased growth performance, impaired intestinal health, and amino acid absorption capacity of juvenile grass carp (Ctenopharyngodon idella)

机译:大豆甘油蛋白减少了生长性能,肠道健康受损,少年草鲤鱼的氨基酸吸收能力(Ctenopharyncodon idella)

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The present study evaluated the influence of dietary soybean glycinin on growth performance, intestinal morphology, free intestinal amino acid (AA) content, and intestinal AA transporter (AAT) mRNA levels in juvenile grass carp (Ctenopharyngodon idella). Results were displayed as follows: (1) 8% dietary glycinin decreased growth performance, inhibited intestinal growth, and caused intestinal histology damage of grass carp; (2) dietary glycinin decreased the content of free neutral AAs including Val, Ser, Tyr, Ala, Pro, and Gln in all intestinal segments, and Thr, Ile, Leu, Phe, and Gly in the MI and DI while downregulated the mRNA levels of corresponding transporters including SLC38A2, SLC6A19b, and SLC6A14 in all intestinal segments, and SLC7A5, SLC7A8, and SLC1A5 in the MI and DI. Dietary glycinin decreased the content of free basic AAs including Arg in the MI and DI and His in all intestinal segments while downregulated cationic AAT SLC7A1 mRNA levels in the MI and DI. Dietary glycinin decreased the content of free acidic AAs including Glu in all intestinal segments and Asp in the MI and DI while decreased mRNA levels of corresponding transporters including SLC1A2a in all intestinal segments and SLC1A3 in the MI and DI; (3) the digestion trial showed that basic subunits of glycinin was hard to digest in the intestine of grass carp; (4) co-administration of glutamine with glycinin partially alleviated the negative effects. Overall, glycinin decreased intestinal AA absorption capacity partly contributed by decreased AATs' mRNA levels and the indigestibility of glycinin.
机译:本研究评估了幼儿草鲤鱼(Ctenopharyncodon Idella)的膳食大豆甘油蛋白对生长性能,肠形态,自由肠道氨基酸(AA)含量的影响(Ctenopharyngodon idella)。结果如下所示:(1)8%膳食甘油蛋白的生长性能降低,抑制肠道生长,并导致草鲤的肠道组织学损伤; (2)膳食甘油蛋白在所有肠道段中的Val,Ser,Tyr,Ala,Pro和Gln中的含量降低,并且在MI和Di中的Thr,ILE,Leu,PhE和Gly,同时下调mRNA包括SLC38a2,SLC6a19b和slc6a14的相应运输器的水平,并且在Mi和di中的所有肠道段中的SLC7a5,SLC7a8和SLC1A5。膳食甘油蛋白减少了在MI和DI的ARG中的游离碱性AA的含量,以及他在所有肠道中,而MI和DI的下调阳离子AAT SLC7A1 mRNA水平。膳食糖蛋白在MI和DI中的所有肠道段和ASP中,包括Glu的游离酸性AA的含量降低,同时在MI和DI的所有肠道段和SLC1A3中降低了相应的转运蛋白的mRNA水平; (3)消化试验表明,在草鲤鱼的肠道中难以消化甘氨酸的基本亚基; (4)谷氨酰胺与甘氨酸的共同施用部分缓解了负面影响。总体而言,糖蛋白减少肠道AA吸收能力部分通过降低的AATS的mRNA水平和甘氨酸的消化力而贡献。

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