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1.
鸡肠道SGLT1和GLUT2 mRNA表达的组织特异性研究   总被引:1,自引:2,他引:1  
运用相对定量RT-PCR方法,研究不同肠段Arbor Acre(AA)肉鸡肠道葡萄糖吸收转运主要载体SGLT1和GLUT2mRNA表达的组织特异性。结果发现。随着肠道空间位置的后移,SGLT1 mRNA的表达量逐步降低。十二指肠SGLT1 mRNA的丰度比结直肠高76.19Vo,差异极显著(P〈0.01);而空肠和回肠SGLT1 mRNA的表达量分别比结直肠高42.86%和38.10%,差异不显著(P〉0.05),但有提高的趋势(P值分别为0.06和0.07)。十二指肠与空肠和回肠相比,SGLTlmRNA的表达量虽然分别高23.33%和27.59%,但差异不显著(P值分别为0.18和0.10)。相对定量分析表明,十二指肠和空肠GLUT2 mRNA丰度非常接近,差异不显著(P〉0.05)。定性研究显示,十二指肠与空肠GLUT2 mRNA丰度高于回肠和结直肠。鸡肠道SGLT1和GLUT2 mRNA表达的组织特异性之生理功能,有待于进一步研究。  相似文献   

2.
In the chicken small intestine, glucose is mainly transported by the apically located sodium/glucose cotransporter 1 (SGLT1) and the basolaterally located glucose transporter 2 (GLUT2). Fructose is transported by the apically located glucose transporter 5 (GLUT5) and similarly by GLUT2. During the early post-hatching period, the intestinal villus surface area (VSA) should be considered as an important factor related to the monosaccharide absorption capacity. Our objective here was to study intestinal monosaccharide absorption by analyzing the effects of age, diet, and breed on monosaccharide transporters and the VSA. The mRNA expression patterns of SGLT1, GLUT2 and GLUT5 genes in broiler and layer chickens were measured from the day of hatching to day 28 using the absolute quantitative real-time PCR. Both the intestinal mRNA expression levels of these genes and the VSA were affected by age. The mRNA expression levels of SGLT1 and GLUT2 were significantly increased from day 1 to day 3 and then decreased from day 3 to day 28. The expression levels of GLUT5 decreased from day 1 to day 7. The broiler chickens VSAs were significantly larger than those of the layer chickens from days 7 to 28. The effect of diet on the gene expression patterns of these monosaccharide transporters and the VSA were not significant. Our results suggest that the expression levels of these monosaccharide transporters are increased rapidly at the beginning of intestinal growth to meet the demands for monosaccharides to support the fast growth of the chick before day 7. As intestinal maturation and VSA increased, the expression levels of these monosaccharide genes decreased to a certain expression level to maintain the intestinal transport capacity and the absorption balance of all other nutrients.  相似文献   

3.
本试验旨在探讨不同比例玉屏风多糖对草鱼肠黏膜形态结构及主要免疫与吸收相关基因表达的影响。试验选择750尾平均体重为(74.50±2.50)g的健康草鱼,随机分为5组,每组6个重复,每个重复25尾。对照组(Ⅰ组)投喂基础饲料,试验组(Ⅱ~Ⅴ组)投喂在基础饲料基础上分别添加0.8、1.2、1.6、2.0 g/kg玉屏风多糖的试验饲料。预试期7 d,正试期28 d。结果表明:1)与对照组相比,在试验第14天时,Ⅴ组的隐窝深度显著降低(P0.05),而绒腺比则显著提高(P0.05)。2)对照组相比,在试验第7天时,Ⅲ和Ⅳ组头肾中白介素-2(IL-2)mRNA相对表达量显著或极显著提高(P0.05或P0.01),Ⅱ、Ⅲ、Ⅳ和Ⅴ组头肾中干扰素γ(IFN-γ)mRNA相对表达量均极显著提高(P0.01),Ⅲ、Ⅳ和Ⅴ组肠道中钠葡萄糖转运蛋白1(SG LT-1)和葡萄糖转运蛋白2(GLUT-2)mRNA相对表达量显著或极显著提高(P0.05或P0.01))。3)与对照组相比,在试验第14天时,Ⅳ和Ⅴ组头肾中IL-2 mRNA相对表达量极显著提高(P0.01),Ⅱ、Ⅲ、Ⅳ和Ⅴ组头肾中IFN-γmRNA相对表达量显著或极显著提高(P0.05或P0.01),Ⅲ、Ⅳ和Ⅴ组肠道中SG LT-1和G LUT-2 mRNA相对表达量极显著提高(P0.01)。4)与对照组相比,在试验第21天时,Ⅳ组头肾中IL-2 mRNA相对表达量显著提高(P0.05),Ⅱ、Ⅲ、Ⅳ和Ⅴ组头肾中IFN-γmRNA相对表达量极显著提高(P0.01),Ⅱ、Ⅲ、Ⅳ和Ⅴ组肠道中SG LT-1和G LUT-2 mRNA相对表达量显著或极显著提高(P0.05或P0.01)。5)与对照组相比,在试验第28天时,Ⅳ和Ⅴ组头肾中IL-2 mRNA相对表达量极显著提高(P0.01),Ⅲ、Ⅳ和Ⅴ组头肾中IFN-γmRNA相对表达量显著或极显著提高(P0.05或P0.01),Ⅱ、Ⅲ、Ⅳ和Ⅴ组肠道中SGLT-1 mRNA相对表达量显著或极显著提高(P0.05或P0.01)。综上所述,在草鱼饲料中添加一定量的玉屏风多糖能够改善肠黏膜形态结构,促进肠道中SGLT-1和GLUT-2基因的表达,调控头肾中IL-2和IFN-γ基因的表达,从而提高肠道吸收功能、增强机体免疫力。从节约饲养成本出发,草鱼饲料中玉屏风多糖最适添加量为1.6 g/kg。  相似文献   

4.
We hypothesized that maternal nutrition during the first 50 d of gestation would influence the abundance of hexose transporters, SLC2A1, SLC2A3, and SLC2A5, and cationic amino acid transporters, SLC7A1 and SLC7A2, in heifer uteroplacental tissues. Angus-cross heifers (n = 43) were estrus synchronized, bred via artificial insemination, and assigned at breeding to 1 of 2 dietary intake groups (CON = 100% of requirements to achieve 0.45 kg/d of BW gain or RES = 60% of CON intake) and ovariohysterectomized on day 16, 34, or 50 of gestation (n = 6 to 9/d) in a completely randomized design with a 2 × 3 factorial arrangement of treatments. Uterine cross-sections were collected from the horn ipsilateral to the corpus luteum, fixed in 10% neutral buffered formalin, sectioned at 5 µm, and stained via immunofluorescence for transporters. For each image, areas of fetal membrane (FM; chorioallantois), luminal epithelium (ENDO), superficial glands (SG), deep glands (DG), and myometrium (MYO) were analyzed separately for relative intensity of fluorescence as an indicator of transporter abundance. Analysis of FM was only conducted for days 34 and 50. No transporters in target areas were influenced by a day × treatment interaction (P ≥ 0.06). In ENDO, all transporters were differentially abundant from days 16 to 50 of gestation (P ≤ 0.04), and SLC7A2 was greater (P = 0.05) for RES vs. CON. In SG, SLC7A1 and SLC7A2 were greater (P ≤ 0.04) at day 34 vs. day 16. In DG, SLC2A3 and SLC7A1 were greater (P ≤ 0.05) for CON vs. RES heifers; furthermore, SLC7A1 was greater (P < 0.01) at day 50 vs. days 16 and 34 of gestation. In MYO, SLC7A1 was greater (P < 0.01) for CON vs. RES and was greater (P = 0.02) at days 34 and 50 vs. day 16. There were no differences in FM (P ≥ 0.06). Analysis of all uterine tissues at day 16 determined that SLC2A1, SLC2A3, and SLC7A2 were all differentially abundant across uterine tissue type (P < 0.01), and SLC7A1 was greater (P = 0.02) for CON vs. RES. Analysis of all uteroplacental tissues at days 34 and 50 demonstrated that all transporters differed (P < 0.01) across uteroplacental tissues, and SLC7A1 was greater (P < 0.01) for CON vs. RES. These data are interpreted to imply that transporters are differentially affected by day of gestation, and that hexose and cationic amino acid transporters are differentially abundant across utero-placental tissue types, and that SLC7A1 is responsive to maternal nutritional treatment.  相似文献   

5.
本研究旨在研究妊娠后期营养限制对母羊胃肠道葡萄糖转运载体相关基因表达的影响。选取20只同期受孕的湘东黑山羊,随机分为2组,即对照组(自由采食)和限饲组(40%采食量限制),每组10只。预试期15 d(妊娠81~95 d),正试期39 d(妊娠96~135 d)。正试期结束后,屠宰并采取瘤胃、十二指肠、空肠、回肠以及盲肠的黏膜样品,利用实时定量PCR技术,检测Na+-葡萄糖共转运载体1(SGLT1)、Na+-葡萄糖共转运载体3(SGLT3)、易化葡萄糖转运载体2(GLUT2)和易化葡萄糖转运载体5(GLUT5)基因表达量。结果表明:限饲组与对照组相比,SGLT1基因表达量在瘤胃显著降低(P0.05),在空肠和回肠中有降低趋势(0.05≤P0.10);GLUT5基因表达量在盲肠显著降低(P0.05);而其他葡萄糖转运载体基因胃肠道表达量在限饲组和对照组差异均不显著(P0.05)。由此可见,母羊妊娠后期营养限制对胃肠道中葡萄糖转运载体基因表达有不同程度的影响,进而引起母羊机体内葡萄糖转运的改变。  相似文献   

6.
Dietary carbohydrates, when digested and absorbed in the small intestine of the horse, provide a substantial fraction of metabolisable energy. However, if levels in diets exceed the capacity of the equine small intestine to digest and absorb them, they reach the hindgut, cause alterations in microbial populations and the metabolite products and predispose the horse to gastrointestinal diseases. We set out to determine, at the molecular level, the mechanisms, properties and the site of expression of carbohydrate digestive and absorptive functions of the equine small intestinal brush-border membrane. We have demonstrated that the disaccharidases sucrase, lactase and maltase are expressed diversely along the length of the intestine and D-glucose is transported across the equine intestinal brush-border membrane by a high affinity, low capacity, Na+/glucose cotransporter type 1 isoform (SGLT1). The highest rate of transport is in duodenum > jejunum > ileum. We have cloned and sequenced the cDNA encoding equine SGLT1 and alignment with SGLT1 of other species indicates 85-89% homology at the nucleotide and 84-87% identity at the amino acid levels. We have shown that there is a good correlation between levels of functional SGLT1 protein and SGLT1 mRNA abundance along the length of the small intestine. This indicates that the major site of glucose absorption in horses maintained on conventional grass-based diets is in the proximal intestine, and the expression of equine intestinal SGLT1 along the proximal to distal axis of the intestine is regulated at the level of mRNA abundance. The data presented in this paper are the first to provide information on the capacity of the equine intestine to digest and absorb soluble carbohydrates and has implications for a better feed management, pharmaceutical intervention and for dietary supplementation in horses following intestinal resection.  相似文献   

7.
This experiment was conducted to study the effects of the diets with different energy and protein levels on mRNA expression of glucose transporters in the small intestine and muscle of Tan sheep. A total of 112 healthy Tan sheep (half male and half female) with similar initial live weight were randomly divided into four groups with four replicates per group and seven sheep per replicate. According to the Feeding Standard of Meat-producing Sheep and Goats (NY/T 816—2004),each group was fed diet with different levels of energy and protein respectively:0.84×standard level (group Ⅰ),0.96×standard level (group Ⅱ),1.08×standard level (group Ⅲ) and 1.20×standard level (group Ⅳ). The test period were divided into two stages by body weight of sheep (29-35 and 36-40 kg). At the end of each stage,one sheep was slaughtered at each replicate,and small intestine and muscle samples were collected to study mRNA relative expression of SGLT1,GLUT4 and GLUT5 genes by Real-time PCR. The results indicated that:SGLT1 gene mRNA expression levels of group Ⅲ was significantly higher than other groups in small intestine at the end of 29-35 kg stage (P< 0.05);At the end of 36-40 kg stage,the SGLT1 gene mRNA expression levels had no significant difference among the four groups (P> 0.05).In muscle,the SGLT1 gene mRNA expression level increased with the rise of energy and protein levels at both stages ,and that of group Ⅳ were the highest.In small intestine,at the end of 29-35 kg stage,the GLUT4 gene mRNA expression levels had no significant difference among the four groups (P> 0.05);At the end of 36-40 kg stage,the GLUT4 gene mRNA expression level increased with the rise of energy and protein levels,and that of group Ⅳ were significantly higher than the other groups (P< 0.05).In muscle,the GLUT4 gene mRNA expression level were the highest in group Ⅳ at both stages,and significantly higher than group Ⅰ (P< 0.05). The GLUT5 gene mRNA expression did not show any regularity at both stages. In conclusion,diets with different levels of energy and protein could significantly affect the mRNA expression of SGLT1 and GLUT4 genes,and affect absorption of glucose in sheep.  相似文献   

8.
试验旨在研究日粮能量及蛋白质水平对滩羊小肠和肌肉组织中主要糖类转运载体mRNA表达的影响。选取112只健康、体重相近的滩羊(公、母各半),随机分为4组,每组4个重复,每个重复7只羊。参考肉羊饲养标准(NY/T 816-2004),分别饲喂不同能量及蛋白质水平日粮,即0.84×标准水平(Ⅰ组)、0.96×标准水平(Ⅱ组)、1.08×标准水平(Ⅲ组)和1.20×标准水平(Ⅳ组)。试验分两个阶段(29~35和36~40 kg),于每个阶段末,每个重复屠宰1只试验羊,取其小肠和肌肉组织样,运用实时荧光定量PCR技术,研究SGLT1、GLUT4、GLUT5基因mRNA的表达量变化。结果显示,在29~35 kg阶段末,Ⅲ组小肠中SGLT1基因mRNA的表达量最高,显著高于其他组(P< 0.05),在36~40 kg阶段末各组间无显著差异(P> 0.05),各组肌肉中SGLT1基因mRNA的表达量在两个阶段都随着能量及蛋白质水平的提高而增加,Ⅳ组均最高;在29~35 kg阶段末,各组间小肠中GLUT4基因mRNA表达量无显著差异(P> 0.05),而在36~40 kg阶段末,GLUT4基因mRNA的表达量随着能量及蛋白质水平的提高而增加,Ⅳ组显著高于其他组(P< 0.05),在肌肉中,Ⅳ组GLUT4基因mRNA在两个阶段末表达量均最高,均显著高于Ⅰ组(P< 0.05);在两个试验阶段,GLUT5基因mRNA的表达量无规律性。综上所述,日粮能量及蛋白质水平会影响滩羊小肠和肌肉中SGLT1、GLUT4基因mRNA的表达量,从而影响机体对葡萄糖的消化吸收。  相似文献   

9.
Most animals adapt readily to increased supplies of carbohydrate in the intestinal lumen by increasing enzymes for degradation and increasing glucose transporter activity. However, the extent of upregulation of Na+-dependent glucose cotransporter 1 (SGLT1) activity and content in response to increased delivery of carbohydrate to the small intestinal lumen of ruminants is unclear. Therefore, an experiment was conducted to determine the effect of glucose and starch hydrolysate on the activity and abundance of SGLT1 in the small intestine of steers. In a randomized complete block design, 40 crossbred beef steers (243+/-2 kg BW) were fed 0.163 Mcal of ME/(kg BW0.75(d; W), 0.215 Mcal of ME/(kg BW0.75 x d; 2M), or 0.163 Mcal ME/(kg BW0.75 x d) and infused for 35 d into the rumen (R) or abomasum (A) with 12.6 g/(kg BW0.75 x d) of starch hydrolysate (S) or into the abomasum with 14.4 g/(kg BW0.75 x d) of glucose (G). Steers were slaughtered, and brush-border membrane vesicles were prepared from the small intestinal samples obtained from five equidistant sites along the intestine. Maltase activity in vesicles and homogenates differed with intestinal sampling site (quadratic, P < 0.001). Steers on the AG treatment yielded a greater intestinal maltase activity (38 nmol glucose x mg protein(-1) x min(-1)) compared with the AS, RS, W, or 2M treatments (34, 26, 23, and 23 nmol glucose x mg protein(-1) x min(-1) respectively [SEM = 3; P = 0.02]). Sodium-dependent glucose uptake averaged 18.4+/-3.94 pmol glucose/(mg protein x s) and was not affected by treatment, but uptake decreased distally along the intestine (P < 0.001). There was no effect of treatment on SGLT1 protein abundance, but SGLT1 protein abundance increased linearly from the duodenum to the ileum (P = 0.05). The inverse relationship between glucose uptake and SGLT1 abundance suggests that the regulation of brush border Na+-dependent glucose transport capacity is complex, involving factors other than the presence of luminal carbohydrate.  相似文献   

10.
Background: Muscle growth depends on the fusion of proliferate satellite cells to existing myofibers. We reported previously that 0-14 day intermittent feeding led to persistent retardation in myofiber hypertrophy. However, how satellite cells respond to such nutritional insult has not been adequately elucidated. Results: One-day-old broiler chicks were allocated to control (Con, ad libitum feeding), intermittent feeding (IF, feed provided on alternate days) and re-feeding (RF, 2 days ad libitum feeding after 12 days of intermittent feeding) groups. Chickens were killed on Day 15 and satellite cells were isolated. When cultured, satellite cells from the IF group demonstrated significant retardation in proliferation and differentiation potential, while RF partly restored the proliferation rate and differentiation potential of the satellite cells. Significant up-regulation of insulin like growth factor I receptor (IGF-IR) (P<0.05) and thyroid hormone receptor α (TRα) (P<0.05), and down-regulation of growth hormone receptor (GHR) (P<0.01) and IGF-I (P<0.01) mRNA expression was observed in freshly isolated IF satellite cells when compared with Con cells. In RF cells, the mRNA expression of IGF-I was higher (P<0.05) and of TRα was lower (P<0.01) than in IF cells, suggesting that RF restored the mRNA expression of TRα and IGF-I, but not of GHR and IGF-IR. The Bax/Bcl-2 ratio tended to increase in the IF group, which was reversed in the RF group (P<0.05), indicating that RF reduced the pro-apoptotic influence of IF. Moreover, no significant effect of T 3 was detected on cell survival in IF cells compared with Con (P<0.001) or RF (P<0.05) cells. Conclusions: These data suggest that early-age feed restriction inhibits the proliferation and differentiation of satellite cells, induces changes in mRNA expression of the GH/IGF-I and thyroid hormone receptors in satellite cells, as well as blunted sensitivity of satellite cells to T3 , and that RF partially reverses these effects. Thus, a moderate nutritional strategy for feed restriction should be chosen in early chick rearing systems.  相似文献   

11.
This study was conducted to investigate absorption characteristics of zinc glycine chelate (Zn–Gly) by evaluating tissues zinc status and the expression of zinc transporters in rats. A total of 24 male rats were randomly allocated to three treatments and administered either saline or 35 mg Zn/kg body weight from zinc sulphate (ZnSO4) or Zn–Gly by feeding tube separately. Four rats per group were slaughtered and tissues were collected at 2 and 6 h after gavage respectively. Our data showed that Zn–Gly did more effectively in increasing (p < 0.05) serum zinc levels, and the activities of serum and liver alkaline phosphatase (ALP) and liver Cu/Zn superoxide dismutase (Cu/Zn SOD) at 2 and 6 h. By 2 h after the zinc load, the mRNA and protein abundance of intestinal metallothionein1 (MT1) and zinc transporter SLC30A1 (ZnT1) were higher (p < 0.05), and zinc transporter SLC39A4 (Zip4) lower (p < 0.05) in ZnSO4 compared to other groups. Zinc transporter SLC39A5 (Zip5) mRNA expression was not zinc responsive, but Zip5 protein abundance was remarkably (p < 0.05) increased in ZnSO4 2 h later. Overall, our results indicated that in short‐term periods, Zn–Gly was more effective in improving body zinc status than ZnSO4, and ZnSO4 did more efficiently on the regulation of zinc transporters in small intestine.  相似文献   

12.
13.
Athletic performance is both a stress factor and an adaptive response to exercise that may be modulated by training, reduce inflammation and help prevent disease. Studies on the endocrinology of exercise and training have demonstrated the existence of an integrated metabolic network of hormone and cytokine regulation. Subsequent molecular studies have shown that repeated bouts of exercise may establish new basal levels of gene expression at rest.The Thoroughbred horse may be a useful ‘exercise model’ for inter-individual comparisons between subjects with homogeneous genetic and environmental backgrounds and similar exercise management practices. In this study, the effects of training and acute effort on gene expression were evaluated with a real time PCR approach in athletic (n = 10) and sedentary horses (n = 9), using a previously characterised panel of genes known to be highly modulated during effort (CXCL2, TLR4, IL1β, IL8, IL1RII, IL18, IL6 and CEBPβ). A ‘rest comparison’ was performed to evaluate a training effect in both groups while a ‘race comparison’ was performed in athletic horses only (before, immediately after, and 12 h after racing) to determine the effect of acute effort.The results indicated that many of the investigated genes (TLR4, IL1β, IL1RII, IL18, IL6 and CEBPβ) were expressed to a greater extent in athletic horses compared to sedentary animals when both were at rest. However, a time-course comparison in the athletic horses revealed that genes exhibiting the highest levels of expression at rest did not show significant changes after the race. The findings suggested that training may exert a conditioning on gene expression at rest leading to a more prompt response to exercise-induced stress in Thoroughbreds.  相似文献   

14.
15.
Modern hyperprolific sows must deal with large litters (16–20 piglets) which reduce piglet birthweight with a concomitant increase in the proportion of small and intrauterine growth retarded piglets. However, larger litters do not only have a greater variation of piglet weights, but also a greater variation in colostrum and milk consumption within the litter. To further understand the impact that body weight has on piglets, the present study aimed to evaluate the degree of physiological weakness of the smallest piglets at birth and during the suckling period (20 d) compared to their middle-weight littermates through their jejunal gene expression. At birth, light piglets showed a downregulation of genes related to immune response (FAXDC2, HSPB1, PPARGC1α), antioxidant enzymes (SOD2m), digestive enzymes (ANPEP, IDO1, SI), and nutrient transporter (SLC39A4) (P < 0.05) but also a tendency for a higher mRNA expression of GBP1 (inflammatory regulator) and HSD11β1 (stress hormone) genes compared to their heavier littermates (P < 0.10). Excluding HSD11β1 gene, all these intestinal gene expression differences initially observed at birth between light and middle-weight piglets were stabilized at the end of the suckling period, when others appeared. Genes involved in barrier function (CLDN1), pro-inflammatory response (CXCL2, IL6, IDO1), and stress hormone signaling (HSD11β1) over-expressed compared to their middle-weight littermates (P < 0.05). In conclusion, at birth and at the end of suckling period, light body weight piglets seem to have a compromised gene expression and therefore impaired nutrient absorption, immune and stress responses compared to their heavier littermates.  相似文献   

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The gastrointestinal epithelium is in close contact with the various components of the chymus, including nutrients, bacteria and toxins. The epithelial barrier has to decide which components are effectively absorbed and which components are extruded. In the small intestine, a nutrient like glucose is mainly absorbed by the sodium linked glucose cotransporter 1 (SGLT1) and the glucose transporter 2 (GLUT2). The expression and activity of both transport proteins is directly linked to the amount of intraluminal glucose. Besides the direct interaction between glucose and the enterocytes, glucose also stimulates different sensory mechanisms within the intestinal wall. The most important types of cells involved in the sensing of intraluminal contents are enteroendocrine cells and neurones of the enteric nervous system. Regarding glucosensing, a distinct type of enteroendocrine cells, the enterochromaffine (EC) cells are involved. Excitation of EC cells by intraluminal glucose results in the release of serotonin (5‐HT), which modulates epithelial functions and activates enteric secretomotorneurones. Enteric neurones are not only activated by 5‐HT, but also directly by glucose. The activation of different cell types and the subsequent crosstalk between these cells may trigger appropriate absorptive and secretory processes within the intestine.  相似文献   

18.
Arabian horses are not only one of the most ancient breeds in the world, but they are also one of the most appreciated racehorse breeds today. The breed generates attention for their phenomenal endurance ability and their capability for gallop racing. Consequently, genetic testing to select the best individuals is attracting ever increasing interests from the Arabian industry. As such, the aim of this study was to further investigate associations between performance and variation at candidate genes suspected of having a key role in Arabian gallop racing performance. Generalized linear models were fit to test associations between eight candidate gene variants and a variety of gallop racing performance traits in a sample of Arabian racehorses (n = 287). Two genes, solute carrier family 16 member 1 (SLC16A1) and acyl-CoA oxidase 1 (ACOX1), were significantly associated with multiple gallop racing performance traits, whereas another gene, actinin alpha 3 (ACTN3) was associated with best race distance. Previously established associations between these three genes and equine metabolism strongly suggest further investigation of these genes, and their relationship with Arabian horse performance is warranted.  相似文献   

19.
本试验旨在研究仔猪断奶后小肠黏膜钠葡萄糖转运蛋白1(SGLTl)和葡萄糖转运蛋白2(GLUT2)mRNA表达的发育性变化规律及谷氨酰胺是否对SGLTl和GLUT2 mRNA的表达产生影响.选择21日龄断奶的杜×长×大仔猪69头,断奶当天屠宰3头猪,其余66头随机分成2组,每组3个重复,每个重复11头仔猪.对照组饲喂基础...  相似文献   

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