Xinjiang Agricultural Sciences ›› 2022, Vol. 59 ›› Issue (11): 2758-2764.DOI: 10.6048/j.issn.1001-4330.2022.11.020
• Equine Exercise Physiology and Healthy Farming • Previous Articles Next Articles
WANG Jie1, MENG Jun1,2, ZENG Yaqi1,2, WANG Jianwen1,2, Tuerxunjiang Wumuraili3, WANG Chuankun1, YUAN Xinxin1, WANG Tongliang1, YAO Xinkui1,2()
Received:
2022-01-11
Online:
2022-11-20
Published:
2022-12-28
Correspondence author:
YAO Xinkui
Supported by:
王洁1, 孟军1,2, 曾亚琦1,2, 王建文1,2, 吐尔逊江·吾木尔艾力3, 王川坤1, 袁鑫鑫1, 王彤亮1, 姚新奎1,2()
通讯作者:
姚新奎
作者简介:
王洁(1996-),女,新疆伊犁人,硕士研究生,研究方向为动物生产学,(E-mail)1547628788@qq.com
基金资助:
CLC Number:
WANG Jie, MENG Jun, ZENG Yaqi, WANG Jianwen, Tuerxunjiang Wumuraili, WANG Chuankun, YUAN Xinxin, WANG Tongliang, YAO Xinkui. The mRNA Expression and Activity of PFKM in Different Tissues of Yili Horses[J]. Xinjiang Agricultural Sciences, 2022, 59(11): 2758-2764.
王洁, 孟军, 曾亚琦, 王建文, 吐尔逊江·吾木尔艾力, 王川坤, 袁鑫鑫, 王彤亮, 姚新奎. 伊犁马PFKM基因表达及酶活性分析[J]. 新疆农业科学, 2022, 59(11): 2758-2764.
基因 Gene | 引物序列 Sequences of primers | 退火温度 Annealing temperature(℃) | 产物长度 Length |
---|---|---|---|
PFKM-F2 | ACTTGGGACTAAAAGGACGCTACC | 60 | 51 |
PFKM-R2 | GCACTGATCTGCTCGAAGCTC | 60 | 51 |
GAPDH-F | GGTGAAGGTCGGAGTAAACG | 60 | 87 |
GAPDH-R | AATGAAGGGGTCATTGATGG | 60 | 87 |
Table 1 PRIMER INFORMATION
基因 Gene | 引物序列 Sequences of primers | 退火温度 Annealing temperature(℃) | 产物长度 Length |
---|---|---|---|
PFKM-F2 | ACTTGGGACTAAAAGGACGCTACC | 60 | 51 |
PFKM-R2 | GCACTGATCTGCTCGAAGCTC | 60 | 51 |
GAPDH-F | GGTGAAGGTCGGAGTAAACG | 60 | 87 |
GAPDH-R | AATGAAGGGGTCATTGATGG | 60 | 87 |
Fig.1 Total RNA extraction results Note:1.Clamping; 2.Trapezius; 3.Latissimus Dorsi; 4.Gluteals Medius; 5.Semitendinosus; 6.Liver; 7.Cardiac; 8.Obliques
项目 Project | 夹肌 Clamping | 斜方肌 Trapezius | 背阔肌 Latissimus Dorsi | 臀中肌 Gluteals Medius | 半腱肌 Semiten dinosus | 肝脏 Liver | 心脏 Cardiac | 腹外斜肌 Obliques |
---|---|---|---|---|---|---|---|---|
6-PFK (mg/L) | 0.263± 0.073CDde | 0.266± 0.088CDde | 0.542± 0.127Bb | 0.336± 0.096Cc | 0.317 ±0.492CDcd | 0.262± 0.076CDde | 1.049± 0.245Aa | 0.253± 0.071De |
Table 2 6-PFK content in different tissues
项目 Project | 夹肌 Clamping | 斜方肌 Trapezius | 背阔肌 Latissimus Dorsi | 臀中肌 Gluteals Medius | 半腱肌 Semiten dinosus | 肝脏 Liver | 心脏 Cardiac | 腹外斜肌 Obliques |
---|---|---|---|---|---|---|---|---|
6-PFK (mg/L) | 0.263± 0.073CDde | 0.266± 0.088CDde | 0.542± 0.127Bb | 0.336± 0.096Cc | 0.317 ±0.492CDcd | 0.262± 0.076CDde | 1.049± 0.245Aa | 0.253± 0.071De |
[1] | 哈尼巴提·沙布开. 发挥优势凝心聚力让新疆现代马业走向世界—在2016年“中国·天山论马”论坛上的讲话[J]. 新疆畜牧业, 2016,(9): 4-7. |
Hanibati Shabukai. Play the advantages to make Xinjiang modern horse industry to the world—Speech at the "China Tianshan Mountain on the Horse" Forum in 2016[J]. Xinjiang Xumuye, 2016,(9): 4-7. | |
[2] | 王建文, 李林玲, 王镜力, 等. 伊犁马ACTN3基因外显子多态性研究[J]. 畜牧兽医学报, 2018, 49(6): 1299-1306. |
WANG Jianwen, LI Linling, WANG Jingli, et al. Analysis on ACTN3 Gene Exon Polymorphism of Yili Horse[J]. Acta Veterinaria Et Zootechnica Sinica, 2018, 49(6): 1299-1306. | |
[3] | 叶再华, 姚新奎, 潘小东, 等. 伊犁马屠宰性能测定及适宜屠宰年龄研究[J]. 新疆农业大学学报, 2008,(3): 13-15. |
YE Zaihua, YAO Xinkui, PAN Xiaodong, et al. Determination of slaughter performance and study on suitable slaughter age of Yili horse[J]. Journal of Xinjiang Agricultural University, 2008,(3): 13-15. | |
[4] |
Gibb A A, Epstein P N, Uchida S, et al. Exercise-Induced Changes in Glucose Metabolism Promote Physiological Cardiac Growth[J]. Circulation, 2017, 136(22): 2144-2157.
DOI PMID |
[5] |
Ausina P, Silva D, Majerowicz D, et al. Insulin specifically regulates expression of liver and muscle phosphofructokinase isoforms[J]. Biomedicine & Pharmacotherapy =Biomedecine & Pharmacotherapie, 2018, 103(4):228-233.
DOI URL |
[6] |
Sun S, Li H, Chen J, Qian Q, Lactic acid: no longer an inert and end-product of glycolysis[J]. Physiology (Bethesda) 2017, 32(6): 453-463.
DOI PMID |
[7] |
Webb B, Forouhar F, Szu F, et al. Structures of human phosphofructokinase-1 and atomic basis of cancer-associated mutations[J]. Nature, 2015, 523(7558): 111-114.
DOI URL |
[8] | 胡萍, 韦芳, 顾青, 等. 6-磷酸果糖激酶-2/果糖-2,6-二磷酸酶(PFKFB3)抑制剂3PO对高糖环境下人脐静脉血管内皮细胞新生血管形成的影响[J]. 眼科新进展, 2019, 39(5): 428-432. |
HU Ping, WEI Fang, GU Qing, et al. Effect of 6-phosphofructokinase-2/fructose-2,6-bisphosphatase (PFKFB3) inhibitor 3PO on angiogenesis of human umbilical vein endothelial cells in high glucose environment[J]. New advances in ophthalmology, 2019, 39(5): 428-432. | |
[9] | Wang J, Qin L, Feng Y, et al. Molecular Characterization, Expression Profile, and Association Study with Meat Quality Traits of Porcine PFKM Gene[J]. Applied Biochemistry & Biotechnology, 2014, 173(7): 1640-1651. |
[10] |
Matarneh S K, Yen C N, Elgin J M, et al. Phosphofructokinase and mitochondria partially explain the high ultimate pH of broiler pectoralis major muscle[J]. Poultry Science, 2018, 97(5): 1808-1817.
DOI PMID |
[11] | Wang J, Qin L, Feng Y, et al. Molecular Characterization, Expression Profile, and Association Study with Meat Quality Traits of Porcine PFKM Gene[J]. Applied Biochemistry & Biotechnology, 2014, 173(7): 1640-1651. |
[12] |
Wenting W, Hongxiang L, Jiamei X, et al. Aqueous Extract of Black Maca Prevents Metabolism Disorder via Regulating the Glycolysis/Gluconeogenesis-TCA Cycle and PPARα Signaling Activation in Golden Hamsters Fed a High-Fat, High-Fructose Diet[J]. Frontiers in Pharmacology, 2018, 9(4): 333-345.
DOI URL |
[13] | 赵一萍, 康德措, 杜明, 等. 蒙古马免疫组织NF-KB信号通路相关基因的表达研究[J]. 中国畜牧杂志, 2022, 58(2):78-81. |
ZHAO yiping, KANG decao, DU Min, et al. Study on expression of NF-kb signaling pathway related genes in Mongolian horse[J]. Chinese Journal of Animal Science, 2022, 58(2): 78-81. | |
[14] |
Moreno-Sánchez R, Marín-Hernández A, Gallardo-Pérez J, et al. Phospho fructokinase type 1 kinetics, isoform expression, and gene polymorphisms in cancer cells[J]. Journal of Cellular Biochemistry, 2012, 113(5):1692-1703.
DOI PMID |
[15] | Xiong X, Ke X, Wang L, et al. Splice variant of growth hormone-releasing hormone receptor drives esophageal squamous cell carcinoma conferring a therapeutic target[J]. Proceedings of the National Academy of Sciences, 2020, 117(12): 13433-13447. |
[16] | Ahsan H, Halpern J, Kibriya M G, et al. A genome-wide association study of early-onset breast cancer identifies PFKM as a novel breast cancer gene and supports a common genetic spectrum for breast cancer at any age[J]. Cancer Epidemiology Biomarkers & Prevention, 2014,(4): 23-24. |
[17] |
Tang H, Lee M, Sharpe O, et al. Oxidative stress-responsive microRNA-320 regulates glycolysis in diverse biological systems[J]. Faseb Journal Official Publication of the Federation of American Societies for Experimental Biology, 2012, 26(11):4710-4721.
DOI URL |
[18] | 卢建雄, 陈粉粉, 杨公社. 调控糖酵解和生脂的重要转录因子:碳水化合物反应元件结合蛋白[J]. 生理科学进展, 2006,(3):266-269. |
LU Jianxiong, CHEN Fanfen, YANG Gongshe. Important transcription factors regulating glycolysis and lipid formation: carbohydrate response element binding protein[J]. Advances in Physiological Science, 2006,(3): 266-269. | |
[19] | Wang J, Qin L, Feng Y, et al. Molecular Characterization, Expression Profile, and Association Study with Meat Quality Traits of Porcine PFKM Gene[J]. Applied Biochemistry & Biotechnology, 2014, 173(7): 1640-1651. |
[20] | 孙慧. miR-141-3p靶向PFKM影响细胞糖代谢参与调控间充质干细胞衰老的作用研究[D]. 长春: 吉林大学, 2021. |
SUN Hui. MIR-141-3P targeting PFKM affects cell glucose metabolism in regulation of Mesenchymal stem cell aging[D]. Changchun: Jilin University, 2021. | |
[21] | M García, Pujol A, Ruzo A, et al. Phosphofructo-1-Kinase Deficiency Leads to a Severe Cardiac and Hematological Disorder in Addition to Skeletal Muscle Glycogenosis[J]. Plos Genetics, 2009, 5(8): 36-42. |
[22] |
Gibb A A, Lorkie P K, Zheng Y T, et al. Integration of flux measurements to resolve changes in anabolic and catabolic metabolism in cardiac myocytes[J]. Biochemical Journal, 2017, 474(16): 2785-2801.
DOI PMID |
[1] | Gulipari Aikebai, SHEN Xuemei, YU Shigang, WANG Gang, YANG Yaling, LIU Wujun. Identification of chicken circMICAL2, tissue expression profile analysis and its functional prediction [J]. Xinjiang Agricultural Sciences, 2024, 61(5): 1284-1291. |
[2] | WANG Kaidi, GAO Chenxu, PEI Wenfeng, YANG Shuxian, ZHANG Wenqing, SONG Jikun, MA Jianjiang, WANG Li, YU Jiwen, CHEN Quanjia. Identification of TRM gene family and fiber quality related excellent haplotype analysis in Gossypium hirsutum L. [J]. Xinjiang Agricultural Sciences, 2024, 61(3): 521-536. |
[3] | ZHANG Wei, YANG Guohui, YU Hui. Effects of 2,4-epibrassinolide on growth and related genes expression of watermelon seedlings under drought Stress [J]. Xinjiang Agricultural Sciences, 2024, 61(3): 615-622. |
[4] | CHANG Xiaokang, ZENG Yaqi, MENG jun, WANG Jianwen, ZHANG Yaang, LI Linling, DENG Haifeng, ZHENG Wenxiang, YAO Xinkui, ZHOU Jing. Effect of endurance exercise on blood physiological indicators in the Yili horse [J]. Xinjiang Agricultural Sciences, 2024, 61(3): 742-748. |
[5] | LIU Ye, WANG Tongliang, MENG Jun, ZENG Yaqi, WANG Jianwen, HENG Shibing, WANG Peiming, YAO Xinkui, FAN Zhiwei. Effects of walking horse with different intensities on performance and blood gas index of Yili Horse in 900 m test race [J]. Xinjiang Agricultural Sciences, 2024, 61(3): 749-756. |
[6] | YANG Liping, WANG Chuankun, SHANG Tingting, ZENG Yaqi, WANG Jianwen, NUO Lufu, MA Kangwei, YAO Xinkui, MENG Jun. Effect of conditioning training on blood-gas indexes in 2,000 m trot race in Yili horses [J]. Xinjiang Agricultural Sciences, 2024, 61(3): 757-765. |
[7] | CHU Min, SHI Yingwu, GU Meiying, YANG Hongmei, HUO Xiangdong, ZHANG Zhidong. Gene modification and expression of α cold-adapted amylase in Aeromonas [J]. Xinjiang Agricultural Sciences, 2024, 61(2): 479-484. |
[8] | MAO Xiaofei, HUANG Shiping, YIN Fangliu, ZENG Youling. Prokaryotic expression of HcALDH7B4 gene enhanced salt tolerance and drought resistance [J]. Xinjiang Agricultural Sciences, 2023, 60(8): 2006-2012. |
[9] | SHAO Panxia, ZHAO Zhun, SHAO Wukui, HAO Xiaoyan, GAO Shengqi, LI Jianping, HU Wenran, HUANG Quansheng. Expression analysis of ZmCDPK22 gene in maize under drought stress [J]. Xinjiang Agricultural Sciences, 2023, 60(6): 1372-1378. |
[10] | GENG Feifei, MENG Chaomin, QING Guixia, ZHOU Jiamin, ZHANG Fuhou, LIU Fengju. Cloning and expression analysis of phosphorus efficient gene GhMYB4 in Gossypium hirsutum L. [J]. Xinjiang Agricultural Sciences, 2023, 60(6): 1406-1412. |
[11] | TANG Bihui, ZHANG Lihua, LI Haiying, ZHANG Chong, JIANG Tinghao, ZHAO Xiaoyu, JIANG Teng, DING Yawen, WU Yingping, ZHAO Quanzhuang. A comparative study on reproductive performance, serum hormone levels and gene expression between Yili goose and hortobágy goose [J]. Xinjiang Agricultural Sciences, 2023, 60(5): 1271-1280. |
[12] | SHANG Jing, PANG Hongbo, WANG Lanlan, LI Xuemei, WANG Yanqiu, LI Yueying. Study on the relationship between auxin and sorghum heterosis [J]. Xinjiang Agricultural Sciences, 2023, 60(4): 841-846. |
[13] | Chen Guo, Hao Xiaoyan, Gao Shengqi, Hu Wenran, Zhao Zhun, Huang Quansheng. Genome-wide identification of the maize calcium-dependent protein kinase and drought expression analysis of the CDPK gene family in maize [J]. Xinjiang Agricultural Sciences, 2023, 60(4): 857-864. |
[14] | ZHANG Shiqi, LI Xiaobin, ZHANG Wenjie, HAN Ming, WANG Shichang, ZHENG Wenxiang, OUYANG Wen, QI Juzhong, YANG Kailun. LC/MS-Based Metabolomics Approach for Exploring Plasma Metabolome Modififications before and after 3,600 m Speed Race in Yili horse [J]. Xinjiang Agricultural Sciences, 2023, 60(2): 501-510. |
[15] | WANG Hui, DONG Yongmei, GUO Weifeng, CAO Xinchuan, GUO Jincheng, XIE Zongming, HE Liangrong. Analysis of the difference of transcription groups of upland cotton under heat stress [J]. Xinjiang Agricultural Sciences, 2023, 60(11): 2618-2626. |
Viewed | ||||||||||||||||||||||||||||||||||||||||||||||||||
Full text 52
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
Abstract 203
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||