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1.
肉鸡肠道NHE2 mRNA表达的组织特异性与发育性变化   总被引:1,自引:0,他引:1  
选用遗传背景相同的1日龄父母代雄性Arbor Acre(AA)肉雏鸡120羽,随机分为4个重复,采用相对定量RT-PCR方法,以30日龄AA肉鸡肠道RNA为模板,研究肉鸡肠道钠/氢交换载体2(Sodium hydrogen exchanger 2,NHE2)mRNA表达的组织特异性;以AA肉鸡十二指肠和空肠RNA为模板,研究肉鸡肠道NHE2mRNA表达的发育性变化。结果显示:①AA肉鸡十二指肠和空肠NHE2 mRNA的表达丰度显著高于回肠和结直肠(P〈0.05),而十二指肠和空肠之间、回肠和结直肠之间无显著差异(P〉0.05);②AA肉鸡NHE2 mRNA在十二指肠及空肠中的表达具有相同的发育模式,2~16日龄升高,30~44日龄下降,55日龄略微回升;在16和30日龄时的表达丰度显著高于2、44和58日龄(P〈0.05)。以上结果说明:AA肉鸡肠道近端NHE2 mRNA的表达丰度显著高于远端(P〈0.05)。AA肉鸡十二指肠及空肠NHE2 mRNA的表达具有相同的发育模式,表明NHE2mRNA表达受到发育阶段的调控,且在十二指肠和空肠间具有稳定性。  相似文献   

2.
鸡不同肠段碱性氨基酸转运载体mRNA表达的差异性研究   总被引:6,自引:4,他引:6  
为研究肉鸡肠道不同肠段碱性氨基酸转运载体rBAT(系统b0, )、y LAT2(系统y L)、CAT1(系统y )、CAT4(系统y )mRNA表达的差异性,以快大型黄羽肉鸡为动物模型,采集30日龄接近平均体重黄羽肉鸡的十二指肠、空肠、回肠和结直肠样品,采用相对定量RT-PCR方法研究不同肠段rBAT、y LAT2、CAT1、CAT4mRNA表达丰度。结果显示:结直肠rBAT、y LAT2的mRNA表达丰度极显著低于十二指肠、空肠和回肠(P<0.01),其在回肠表达丰度高于空肠、十二指肠,差异不显著(P>0.05)。结直肠CAT1 mRNA表达丰度极显著高于十二指肠、空肠和回肠(P<0.01),回肠极显著高于空肠(P<0.01),高出十二指肠27.9%(P=0.111)。结直肠CAT4 mRNA的表达丰度极显著高于其他各个肠段(P<0.01),十二指肠、空肠、回肠CAT4 mRNA的表达丰度依次降低,但相互之间无显著差异。结果表明,位于肠上皮黏膜细胞顶端的碱性氨基酸转运系统b0, 和基底部位的系统y L转运载体mRNA的表达在肠道中的分布类似,显著区别于系统y 。  相似文献   

3.
旨在研究家兔小肠不同区段营养物质转运载体相关基因的分布规律。本研究选取110日龄体重相近的健康白色獭兔10只,屠宰后采集十二指肠、空肠、回肠样品,采用real-time PCR研究家兔不同肠段小肽转运载体Pep T1,氨基酸转运载体CAT1、B~0AT、EAAT3、rBAT,葡萄糖转运载体SGLT1、GLUT2、GLUT5,以及脂肪酸转运载体FATP4的mRNA表达丰度。结果显示,小肽转运载体Pep T1 mRNA在十二指肠表达量最高,空肠略低;碱性氨基酸转运载体CAT1、兼性氨基酸转运载体rBAT和中性氨基酸转运载体B~0AT mRNA的表达量均在回肠最高,空肠次之;酸性氨基酸转运载体EAAT3 mRNA的表达量在空肠和回肠均较高;葡萄糖转运载体SGLT1和GLUT5 mRNA的表达量在十二指肠和空肠均较高;葡萄糖转运载体GLUT2和脂肪酸转运载体FATP4 mRNA的表达量则是空肠最高,十二指肠次之。结果表明,家兔肠道转运吸收小肽、葡萄糖和脂肪酸的主要部位是小肠前半段,转运吸收氨基酸的主要部位是小肠后半段。  相似文献   

4.
肉鸡肠道PepT1 mRNA表达的肠段差异性与发育性变化   总被引:1,自引:0,他引:1  
选用遗传背景相同的1日龄父母代雄性Arbor Acre(AA)鸡和父母代雄性岭南黄肉雏鸡各120羽,采用相对定量RT-PCR方法,以30 d时岭南黄鸡肠道样品为模板,研究肉鸡肠道寡肽转运载体1(Peptide transporter 1,PepT1)mRNA表达的肠段差异性;以AA肉鸡和岭南黄鸡十二指肠和空肠样品为模板,研究不同品种肉鸡肠道PepT1 mRNA表达的发育性变化。结果显示:(1)岭南黄肉鸡肠道PepT1 mRNA的表达丰度从十二指肠、空肠、回肠到结直肠依次降低,其中十二指肠显著高于结直肠(P<0.05);(2)AA鸡和岭南黄肉鸡PepT1 mRNA在十二指肠及空肠中的表达具有相同的发育模式,16 d表达丰度最高,16~44 d逐渐下降,58 d略微回升;不同基因型之间PepT1 mRNA丰度比较,AA鸡和岭南黄肉鸡两品种间PepT1 mRNA的表达没有显著差异(P>0.05)。以上结果说明:(1)随着肠道空间位置的后移,岭南黄肉鸡肠道PepT1 mRNA的表达丰度逐渐降低,其中十二指肠的表达丰度显著高于结直肠(P<0.05);(2)不同品种肉鸡十二指肠及空肠PepT1 mRNA的表达具有相同的发育模式,且同日龄两品种间的表达丰度未见明显差异,表明PepT1 mRNA表达受到发育阶段的调控,但品种间具有稳定性。  相似文献   

5.
本研究旨在探讨不同品种猪肠道碱性氨基酸转运载体(CAT1)mRNA表达的组织特异性和发育规律。试验选取1、7、26、30、60、90和150日龄长白和蓝塘公猪各5头(同一品种同一日龄且体重接近),共70头,测体重后屠宰,采集十二指肠、空肠、回肠和结肠组织样品。以18S基因为内标,用实时荧光定量RT-PCR法(SYBR Green Ⅰ试剂盒)检测CAT mRNA在60日龄长白猪十二指肠、空肠、回肠和结肠表达的组织特异性,以及在长白和蓝塘猪不同日龄其十二指肠、空肠、回肠表达的发育性变化。结果显示:60日龄长白猪CAT1 mRNA的表达丰度从十二指肠到回肠呈逐渐升高的趋势,到结肠开始下降,回肠极显著高于其他3个肠段(P〈0.01),十二指肠最低;十二指肠和空肠CAT mRNA的表达在1~26d(即哺乳期)都呈上升的趋势,随后都开始有所下降;蓝塘猪十二指肠CAT1 mRNA的表达丰度在150d时显著低于其他各个阶段(P〈0.05),而长白猪90和150d都显著低于其他各阶段(P〈0.05);空肠CAT1 mRNA的表达在26~150d各阶段都差异不显著,而26d显著高于1和7d(P〈0.05);1~60d长白和蓝塘猪回肠CAT1 mRNA的表达都呈逐渐上升的趋势,60d后都显著下降(P〈0.05)。两品种猪不同日龄时十二指肠和空肠CAT1 mRNA的表达量都没有显著差异(P〉0.05);长白猪回肠CAT mRNA表达在26d时显著高于蓝塘猪(P〈0.05);在90和150d时,长白猪都显著低于蓝塘猪(P〈0.05),其他各阶段没有显著差异。结果说明,CAT mRNA在不同肠段及不同发育阶段的表达存在明显的差异,这可能与肠腔中氨基酸的浓度和氨基酸的需要水平及相关激素水平有关。  相似文献   

6.
旨在探讨猪肠道钠氢交换载体(NHE3)mRNA表达的肠段特异性和发育模式,为NHE在养猪生产中的应用提供理论依据。选取遗传背景相同的1、7、26、30、60、90和150 d蓝塘和长白公猪各5头,测体质量后屠宰,取十二指肠、空肠、回肠和结肠组织样品;以18S rRNA为内标基因,用实时荧光定量PCR法检测NHE3 mRNA在60 d长白猪表达的肠段特异性及其在蓝塘和长白猪肠道表达的发育模式。结果显示:长白猪肠道NHE3 mRNA的表达丰度为结肠、十二指肠、空肠和回肠依次降低,且结肠显著高于空肠和回肠(P〈0.05)。不同猪种NHE3mRNA在十二指肠和空肠的表达模式相似;蓝塘和长白猪NHE3 mRNA的表达丰度分别在7和30 d(十二指肠)、7和26 d(空肠)达最高水平(P〈0.05)。不同猪种结肠NHE3 mRNA的表达模式不同,分别与其在十二指肠和空肠的发育呈现不同的模式;蓝塘猪结肠NHE3 mRNA的表达丰度在26、90和150 d时显著低于长白猪(P〈0.05)。以上结果说明,猪肠道NHE3 mRNA的表达受到发育阶段、品种和肠段的调控,且在十二指肠和空肠间具有品种稳定性。  相似文献   

7.
为探讨糖皮质激素对肉仔鸡空肠葡萄糖转运影响的机理,采用实时荧光定量方法研究了长期注射糖皮质激素类药物地塞米松对肉仔鸡空肠上皮细胞钠葡萄糖共转运载体(SGLT1)和葡萄糖易化转运载体(GLUT2)mRNA表达的影响.试验选取21日龄体重相近的AA肉仔鸡24只,随机分为4组,其中3个试验组每只腹部皮下注射地塞米松生理盐水注射液1mL(剂量分别为每1kg体重0.1mg,1mg和5mg),对照组注射等体积的生理盐水,连续7天.结果显示各地塞米松处理组间SGLT1 mRNA的表达量无显著差异(P>0.05),但各处理组SGLT1 mRNA的表达量均显著低于对照组(P<0.05);注射地塞米松显著影响了GLUT2 mRNA的表达量(P<0.05).其中0.1和1 mg/kg体重地塞米松处理组的GLUT2 mRNA表达量均显著高于对照组(P<0.05),5 mg/kg地塞米松处理组GLUT2 mRNA表达量略高于对照组(P>0.05).结果表明糖皮质激素可能通过改变SGLT1和GLUT2转录水平的表达来实现对肉仔鸡空肠葡萄糖转运的调节.  相似文献   

8.
本试验旨在研究蛋鸡十二指肠、空肠、回肠小肽转运载体mRNA表达的差异性.选用相同背景的健康成年蛋鸡10只,从十二指肠、空肠、回肠组织提取RNA样品,采用相对定量RT-PCR,对蛋鸡小肠各段肽转运载体mRNA表达的差异性进行评定.结果表明,蛋鸡空肠PepT1 mRNA的表达水平显著高于十二指肠(P<0.05),与回肠比差异不显著(P>0.05),十二指肠PepT1 mRNA的表达水平与回肠之间无显著差异(P>0.05).  相似文献   

9.
选用遗传背景相同的1日龄父母代雄性Arbor Acre(AA)和父母代雄性岭南黄肉雏鸡各160羽,采用相对定量RT-PCR方法,以AA肉鸡和岭南黄肉鸡十二指肠、空肠和回肠样品为模板,研究不同品种肉鸡肠道碱性氨基酸转运载体rBAT和y^+LAT2 mRNA表达的发育性变化。结果显示:十二指肠和空肠rBAT和y^+LAT2 mRNA表达的发育性变化与回肠有着较大的差异。不同品种肉鸡rBAT和y^+LAT2 mRNA在十二指肠和空肠的表达具有相同的发育模式,从2-30d不断升高,44d下降,55d回升;岭南黄肉鸡rBAT和y^+LAT2 mRNA表达丰度的变化幅度小于AA肉鸡,AA肉鸡rBAT和y^+LAT2 mRNA表达丰度在2-30d时均高于岭南黄肉鸡。回肠rBAT和y^+LAT2 mRNA表达的发育性变化在岭南黄肉鸡和AA肉鸡间有显著差别,岭南黄肉鸡回肠rBAT和y^+LAT2 mRNA表达在后期(30-58d)高于前期(2-16d);而AA肉鸡回肠rBAT和y^+LAT2 mRNA表达在58d显著高于其它时间点,在16d时最低。以上结果说明:(1)十二指肠和空肠rBAT、y^+LAT2 mRNA表达的发育性变化与回肠有着较大的差异,这表明肠道近端和远端在碱性氨基酸吸收的功能上可能有差异;(2)不同品种肉鸡十二指肠和空肠rBAT、y^+LAT2 mRNA的表达具有相同的发育模式,但在时间点上有一定的差异,而与回肠的表达模式不同,表明rBAT和y^+LAT2 mRNA的表达受到发育阶段、品种和肠段的影响;(3)回肠rBAT和y^+LAT2 mRNA表达的发育性变化在岭南黄肉鸡和AA肉鸡间有显著差别。  相似文献   

10.
本试验旨在研究罗伊氏乳杆菌LR1对断奶仔猪血清生化指标和肠道营养物质转运载体mRNA表达的影响。选取144头初始体重为(6.49±0.01) kg的21日龄杜×长×大断奶仔猪,随机分为3组,每组8个重复,每个重复6头。对照组饲喂基础饲粮,抗生素组饲喂基础饲粮+100 mg/kg喹乙醇+75 mg/kg金霉素,罗伊氏乳杆菌组饲喂基础饲粮+5×1010CFU/kg罗伊氏乳杆菌LR1。试验期为14 d。结果显示:1)与对照组相比,饲粮添加抗生素显著提高了血清葡萄糖(GLU)的含量(P0.05),且显著降低了血清尿素氮(UN)的含量(P0.05)。2)与对照组相比,饲粮添加罗伊氏乳杆菌LR1显著提高了十二指肠胃动素(MLN)和空肠胆囊收缩素(CCK)的mRNA表达量(P0.05);饲粮添加抗生素显著提高了十二指肠MLN的mRNA表达量(P0.05)。3)与对照组相比,饲粮添加罗伊氏乳杆菌LR1显著提高了十二指肠Na+依赖性谷氨酰胺载体2(ASCT2)、阳离子氨基酸运载体1(CAT1)、小肽转运体1(PepT1)和空肠中性和碱性氨基酸转运载体(rBAT)以及空肠与回肠y+L氨基酸转运体1 (y+LAT1)的mRNA表达量(P 0.05);饲粮添加抗生素显著提高了空肠y+LAT1、CAT1、PepT1和空肠与回肠哺乳动物雷帕霉素靶蛋白(mTOR)的mRNA表达量(P0.05)。4)与对照组相比,饲粮添加罗伊氏乳杆菌LR1显著提高了十二指肠小肠脂肪酸结合蛋白(I-FABP)、乙酰辅酶A羧化酶α(ACCα)、脂肪酸合成酶(FASN)和十二指肠与空肠脂肪酸结合蛋白3(FABP3)以及十二指肠、空肠与回肠过氧化物体增殖物激活受体γ(PPARγ)的mRNA表达量(P0.05);饲粮添加抗生素显著提高了空肠ACCα的mRNA表达量(P0.05)。5)与对照组相比,饲粮添加罗伊氏乳杆菌LR1显著提高了空肠和回肠钠-葡萄糖协同转运蛋白1(SGLT1)的mRNA表达量(P0.05);饲粮添加抗生素显著提高了十二指肠SGLT1、钠-葡萄糖协同转运蛋白3(SGLT3)的mRNA表达量(P0.05)。综上所述,饲粮中添加5×1010CFU/kg罗伊氏乳杆菌LR1对断奶仔猪的肠道营养物质转运具有良好的促进作用,表现为促进断奶仔猪肠道物理消化和化学消化,促进小肽、氨基酸及脂肪酸吸收转运,增强脂肪酸的合成。罗伊氏乳杆菌LR1在替代猪饲用抗生素方面具有巨大潜力,可用于开发新型猪饲料抗生素替代物。  相似文献   

11.
An experiment was conducted to determine the effect of dietary phytic acid (PA) and phytase supplementation on small intestinal histomorphology and Na-dependent glucose transporter 1 (SGLT1) gene expression in piglets. Twenty-four piglets with an average initial BW of 7.60 ± 0.73 kg were randomly assigned to 3 experimental diets, to give 8 piglets per diet. The diets were a casein-cornstarch-based diet that was supplemented with 0 or 2% PA, or 2% PA (as Na phytate) plus an Escherichia coli-derived phytase at 500 phytase units/kg. The basal diet was formulated to meet the 1998 NRC energy, digestible AA, mineral, and vitamin requirements for piglets. After 10 d of feeding, the piglets were killed to determine small intestinal histomorphology and small intestinal SGLT1 gene expression. Phytic acid supplementation did not affect (P > 0.1) villus height (VH) and the VH-to-crypt depth (CD) ratio, but did decrease (P < 0.05) CD in the jejunum. Phytase supplementation did not affect (P > 0.1) VH, CD, and the VH-to-CD ratio. Phytic acid supplementation reduced SGLT1 gene expression in the duodenum, jejunum, and ileum by 1.1-, 5.4-, and 2.4-fold, respectively. Phytase supplementation increased SGLT1 gene expression in the jejunum by 2.6-fold, but reduced SGLT1 gene expression in the duodenum and ileum by 2.0- and 4.0-fold, respectively. In conclusion, PA reduced CD in the jejunum and SGLT1 gene expression in the duodenum, jejunum, and ileum, whereas phytase supplementation increased the expression of SGLT1 in the jejunum. The reduced SGLT1 gene expression by PA implies that PA reduces nutrient utilization in pigs partly through reduced expression of SGLT1, which is involved in glucose and Na absorption. The increased expression of SGLT1 in the jejunum by phytase supplementation implies that phytase alleviated the negative effects of PA partly through increased expression of SGLT1.  相似文献   

12.
13.
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   

14.
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   

15.
试验旨在克隆山羊碱性氨基酸转运载体基因SLC3A1 cDNA序列,探究其表达的组织特异性及其在小肠中的表达发育模式。参考GenBank已发表的绵羊、牛SLC3A1基因mRNA序列设计引物,克隆山羊SLC3A1基因的cDNA序列,采用实时荧光定量PCR的方法分析其在1日龄山羊11种组织及其在1日龄、6月龄、8月龄、10月龄、12月龄山羊十二指肠、空肠、回肠中的mRNA表达情况。结果表明,成功克隆得到了山羊SLC3A1基因cDNA序列,其与绵羊、牛、野猪、人、小鼠、大鼠的同源性分别为99%、97%、88%、86%、80%和79%。SLC3A1基因转录表达有明显的组织特异性,其在1日龄山羊肾脏、回肠、空肠、结肠中表达量依次降低(P<0.05),其他组织中表达量很低。同一月龄山羊,SLC3A1基因在不同肠段的表达量数值上回肠>空肠>十二指肠。SLC3A1基因在不同月龄山羊十二指肠表达量以1日龄山羊为最高(P<0.05),6~12月龄山羊相同肠段之间表达量无显著差异(P>0.05);空肠表达量随山羊年龄的增加均呈现逐步降低的趋势;回肠表达量在各个月龄山羊之间差异不显著(P>0.05)。结果说明,山羊碱性氨基酸转运载体基因SLC3A1的主要表达部位在肾脏和肠道,推测b0,+碱性氨基酸转运系统转运氨基酸的主要部位为肾脏和肠道。SLC3A1基因在山羊小肠受肠段和发育阶段的影响,具有不同的表达发育模式。  相似文献   

16.
The objective of this study was to clone caprine cationic amino acid transporter gene SLC3A1 and investigate its mRNA expression in different tissues and its development regularity in small intestine.The cDNA sequence of caprine SLC3A1 gene was cloned with the primer which was designed according to mRNA sequence of Ovis aries and Bos taurus in GenBank.Then its expression was quantified by Real-time PCR in 11 tissues from goats at the age of day 1 and duodenum,jejunum and ileum from goats at the age of day 1,month 6,month 8,month 10 and month 12.The results indicated that cDNA sequence of SLC3A1 gene was obtained,and its homology with SLC3A1 gene in Ovis aries,Bos taurus,Sus scrofa,Homo sapiens,Mus musculus and Rattus norvegicus were 99%,97%,88%,86%,80%,79%,respectively.SLC3A1 gene was expressed in all of these collected tissues,whereas the expression level varied from tissues.Specifically,its expression in kidney,jejunum,ileum and colon were significant higher than that in other tissues at the age of day 1 and decreased systematically (P<0.05).The expression of SLC3A1 in small intestine at the same age of goat was ileum>jejunum>duodenum.SLC3A1 gene expression in duodenum at the age of day 1 was significant higher than that at the other ages (P<0.05),it decreased with age in jejunum,and there was no significant difference among ileum with age (P>0.05). In conclusion,SLC3A1 gene and b0,+ cationic amino acid transporter system were mainly expressed in kidney and intestine.The expression of SLC3A1 gene was differentially regulated and distributed by developmental stages and segments of small intestine in goat.  相似文献   

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