[1] 张霞.日粮不同营养水平对绒山羊机体代谢及肠道营养物质感应的影响[D].硕士学位论文.呼和浩特:内蒙古农业大学,2014.
[2] 张航,刘强,王聪,等.2-甲基丁酸对犊牛小肠酶活及葡萄糖转运载体基因表达的影响[J].中国农业科学,2016,49(5):979-987.
[3] 徐庆,田科雄.反刍动物葡萄糖代谢研究进展[J].饲料博览,2009(8):17-20.
[4] 刘小刚,李大彪,侯先志,等.营养限制及补偿对羔羊小肠黏膜生长发育的影响[J].中国农业科学,2011,44(17):3613-3621.
[5] 吴端钦,贺志雄,汤少勋,等.母羊妊娠后期营养限制对羔羊肉质及相关基因表达量的影响[J].生命科学研究,2013,17(2):151-155.
[6] SCHMITTGEN T D,LIVAK K J.Analyzing real-time PCR data by the comparative CT method[J].Nature Protocols,2008,3(6):1101-1108.

[7] 何莞嫣,粟灵皓,宋卓,等.肠道葡萄糖转运体的研究进展[J].湖南农业科学,2013(7):8-11.
[8] KELLETT G L,BROT-LAROCHE E,MACE O J,et al.Sugar absorption in the intestine:the role of GLUT2[J].Annual Review of Nutrition,2008,28:35-54.
[9] KALSI K K,BAKER E O,FRASER O,et al.Glucose homeostasis across human airway epithelial cell monolayers:role of diffusion,transport and metabolism[J].Pflügers Archiv:European Journal of Physiology,2008,457(5):1061-1070.

[10] WRIGHT E M,LOO D D F,HIRAYAMA B A.Biology of human sodium glucose transporters[J].Physiological Reviews,2011,91(2):733-794.

[11] YOSHIKAWA T,INOUE R,MATSUMOTO M,et al.Comparative expression of hexose transporters (SGLT1,GLUT1,GLUT2 and GLUT5) throughout the mouse gastrointestinal tract[J].Histochemistry and Cell Biology,2011,135(2):183-194.

[12] TOLHURST G,REIMANN F,GRIBBLE F M.Intestinal sensing of nutrients[J].Handbook of Experimental Pharmacology,2012,209:309-335.
[13] BAUER M L,HARMON D L,MCLEOD K R,et al.Adaptation to small intestinal starch assimilation and glucose transport in ruminants[J].Journal of Animal Science,1995,73(6):1828-1838.

[14] LIU J,LIU Z,GAO L,et al.Nutrient-intake-level-dependent regulation of intestinal development in newborn intrauterine growth-restricted piglets via glucagon-like peptide-2[J].Animal,2016,10(10):1645-1654.

[15] DÍEZ-SAMPEDRO A,HIRAYAMA B A,OSSWALD C,et al.A glucose sensor hiding in a family of transporters[J].Proceedings of the National Academy of Sciences of the United States of America,2003,100(20):11753-11758.

[16] DÍEZ-SAMPEDRO A,BARCELONA S.Sugar binding residue affects apparent Na
+ affinity and transport stoichiometry in mouse sodium/glucose cotransporter type 3B[J].Journal of Biological Chemistry,2011,286(10):7975-7982.

[17] KELLETT G L.Comment on:Gorboulev et al.Na
+-
D-glucose cotransporter SGLT1 is pivotal for intestinal glucose absorption and glucose-dependent incretin secretion.[J].Diabetes,2012,61(6):e4.
[18] MORIYA R,SHIRAKURA T,ITO J,et al.Activation of sodium-glucose cotransporter 1 ameliorates hyperglycemia by mediating incretin secretion in mice[J].American Journal of Physiology:Endocrinology and Metabolism,2009,297(6):E1358-E1365.
[19] CANI P D,HOLST J J,DRUCKER D J, et al.GLUT2 and the incretin receptors are involved in glucose-induced incretin secretion[J].Molecular and Cellular Endocrinology,2007,276(1/2):18-23.
[20] MACE O J,SCHINDLER M,PATEL S.The regulation of K- and L-cell activity by GLUT2 and the calcium-sensing receptor CasR in rat small intestine[J].The Journal of Physiology,2012,590(12):2917-2936.

[21] REIMANN F,HABIB A M,TOLHURST G,et al.Glucose sensing in L cells:a primary cell study[J].Cell Metabolism,2009,8(6):532-539.
[22] BARONE S,SINGH A K,ZUO J,et al.Slc2a5(GLUT5) is essential for the absorption of fructose in the intestine and generation of fructose-induced hypertension[J].The Journal of Biological Chemistry,2009,284:5056-5066.