|本期目录/Table of Contents|

[1]孔维欢,熊燊源,代蓉,等.TLR4基因在绵羊不同生理状态下子宫内膜组织中的mRNA表达[J].江苏农业科学,2019,47(01):35-39.
 Kong Weihuan,et al.mRNA expression of TLR4 gene in ovine endometrium under different physiological conditions[J].Jiangsu Agricultural Sciences,2019,47(01):35-39.
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TLR4基因在绵羊不同生理状态下
子宫内膜组织中的mRNA表达
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第47卷
期数:
2019年第01期
页码:
35-39
栏目:
生物技术
出版日期:
2019-01-05

文章信息/Info

Title:
mRNA expression of TLR4 gene in ovine endometrium under different physiological conditions
作者:
孔维欢12 熊燊源12 代蓉2 万鹏程2 石国庆2
1.石河子大学动物科技学院,石河子 832000;2.新疆农垦科学院畜牧兽医研究所,石河子 832000
Author(s):
Kong Weihuanet al
关键词:
TLR4基因绵羊胚胎附植期发情周期子宫内膜
Keywords:
-
分类号:
S826.1
DOI:
-
文献标志码:
A
摘要:
为了研究Toll样受体4(Toll-like receptor 4,TLR4)在绵羊胚胎附植期和发情周期子宫内膜中mRNA的表达模式。采用半定量RT-PCR和实时荧光定量RT-PCR分别检测妊娠21 d母羊全身组织和妊娠9、13、17、21、25 d 的母羊子宫内膜组织TLR4基因的表达以及绵羊卵泡期与黄体期母羊子宫内膜组织TLR4基因的表达。结果表明,TLR4基因在肝脏、脾脏、卵巢、输卵管、子宫、小肠、膀胱、肌肉及松果体等组织出现表达,其中在输卵管、卵巢、子宫、膀胱、脾脏及松果体中表达量较高,在肝脏、小肠、肌肉中表达较弱,而在心脏、垂体、脂肪等组织中不表达。从妊娠9 d开始,绵羊胚胎TLR4基因表达量呈逐渐下降趋势;至胚胎附植点17 d,TLR4基因表达量最低,之后又呈现上升趋势,到25 d达到峰值。不管是在细毛羊还是在湖羊子宫内膜组织中检测,TLR4基因黄体期的表达水平均显著高于卵泡期(P<0.05)。说明TLR4的mRNA表达具有组织特异性,在胚胎附植期绵羊子宫内膜中呈现先低后高的趋势,以及其在绵羊发情周期中表达出现黄体期显著高于卵泡期现象,也初步说明了TLR4可能在胚胎附植早期和发情周期中均发挥一定作用。
Abstract:
-

参考文献/References:

[1]Palm E,Demirel I,Bengtsson T,et al. The role of toll-like and protease-activated receptors in the expression of cytokines by gingival fibroblasts stimulated with the periodontal pathogen Porphyromonas gingivalis[J]. Cytokine,2015,76(2):424-432.
[2]Johnston D G,Corr S C. Toll-Like receptor signalling and the control of intestinal barrier function[J]. Methods in Molecular Biology,2016,1390:287-300.
[3]Liew F Y,Xu D,Brint E K,et al. Negative regulation of toll-like receptor-mediated immune responses[J]. Nature Reviews Immunology,2005,5(6):446-458.
[4]王玉华. 子宫内膜癌发病相关因素及治疗进展[J]. 医学理论与实践,2013,26(5):593-594,596.
[5]Romero R,Espinoza J,Gonalves L F,et al. Inflammation in preterm and term labour and delivery[J]. Seminars in Fetal & Neonatal Medicine,2006,11(5):317-326.
[6]Croy B A,Chantakru S,Esadeg S,et al. Decidual natural killer cells:key regulators of placental development (a review)[J]. Journal of Reproductive Immunology,2002,57(1/2):151-168.
[7]Pioli P A,Amiel E,Schaefer T M,et al. Differential expression of toll-like receptors (TLR)-2 and (TLR)-4 in tissues of the human female reproductive tract[J]. Infection and Immunity,2004,72(10):5799-5806.
[8]Nishimura M,Naito S. Tissue-specific mRNA expression profiles of human toll-like receptors and related genes[J]. Biological & Pharmaceutical Bulletin,2005,28(5):886-892.
[9]Zacharowski K,Zacharowski P A,Koch A,et al. Toll-like receptor 4 plays a crucial role in the immune-adrenal response to systemic inflammatory response syndrome[J]. Proceedings of the National Academy of Sciences of the United States of America,2006,103(16):6392-6397.
[10]Takeda K,Akira S. Toll-like receptors in innate immunity[J]. International Immunology,2005,17:1-14.
[11]Pan H,Wu X. Hypoxia attenuates inflammatory mediators production induced by Acanthamoeba via Toll-like receptor 4 signaling in human corneal epithelial cells[J]. Biochemical and Biophysical Research Communications,2012,420(3):685-691.
[12]聂奎,曾兴艳,王裕文,等. 兔TLR2、TLR4部分cDNA 克隆及其在组织中的分布[J]. 中国兽医杂志,2011,47(3):12-14.
[13]周作勇,聂奎,宋振辉,等. 雏鸡不同组织TLR1、TLR2、TLR4、TLR5和TLR15 mRNA转录水平相对定量研究[J]. 畜牧兽医学报,2010,41(11):1453-1459.
[14]Higgs R,Cormican P,Cahalane S,et al. Induction of a novel chicken Toll-like receptor follwing Salmonella enterica serovar typhimurium infection[J]. Infection and Immunity,2006,74:1692-1698.
[15]Alvarez B,Revilla C,Chamorro S,et al. Molecular cloning,characterization and tissue expression of porcine Toll-like receptor 4[J]. Developmental and Comparative Immunology,2006,30(4):345-355.
[16]Nishimura M,Naito S. Tissue-specific mRNA expression profiles of human toll-like receptors and related genes[J]. Biological & Pharmaceutical Bulletin,2005,28(5):886-892.
[17]Spencer T E,Johnson G A,Bazer F W,et al. Implantation mechanisms:insights from the sheep[J]. Reproduction,2004,128(6):657-668.
[18]熊燊源,万鹏程,石文艳,等. 绵羊胚胎附植分子调控研究进展[J]. 生命科学,2012,24(10):1105-1113.
[19]Kannaki T R S M,Verma P. C. Toll-like receptors and their role in animal reproduction[J]. Animal Reproduction Science,2011,125(1/2/3/4):1-12.
[20]Zhang Z,Schluesener H J. Mammalian toll-like receptors:from endogenous ligands to tissue regeneration[J]. Cellular and Molecular Life Sciences,2006,63(24):2901-2907.
[21]Givan A L,White H D,Stern J E,et al. Flow cytometric analysis of leukocytes in the human female reproductive tract:comparison of fallopian tube,uterus,cervix,and vagina[J]. American Journal of Reproductive Immunology,1997,38(5):350-359.
[22]Hunt J S. Immunologically relevant cells in the uterus[J]. Biology of Reproduction,1994,50(3):461-466.
[23]Aflatoonian R,Tuckerman E,Elliott S L,et al. Menstrual cycle-dependent changes of toll-like receptors in endometrium[J]. Human Reproduction,2007,22(2):586-593.
[24]Jorgenson R L,Young S L,Lange M J,et al. Human endometrial epithelial cells cyclically express toll-like receptor 3 and exhibit TLR3-dependent responses to dsRNA[J]. Human Immunology,2005,66(5):469-482.

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备注/Memo

备注/Memo:
收稿日期:2017-09-15
基金项目:国家重点研发计划(编号:2017YFD0501904);新疆生产建设兵团科技攻关与成果转化计划(编号:2016AC027);国家绒毛用羊产业技术体系建设项目(编号:CARS-40-07)。
作者简介:孔维欢(1989—),男,河南濮阳人,硕士,主要从事动物遗传育种与繁殖研究。E-mail:919282632@qq.com
通信作者:石国庆,博士,研究员,博士生导师,主要从事绵羊繁育与家畜胚胎生物技术研究,E-mail:nkkxyxms
更新日期/Last Update: 2019-01-05