Scientia Agricultura Sinica ›› 2022, Vol. 55 ›› Issue (3): 589-601.doi: 10.3864/j.issn.0578-1752.2022.03.013
• ANIMAL SCIENCE·VETERINARY SCIENCE·RESOURCE INSECT • Previous Articles Next Articles
SHU JingTing1(
),SHAN YanJu1,JI GaiGe1,ZHANG Ming1,TU YunJie1,LIU YiFan1,JU XiaoJun1,SHENG ZhongWei1,TANG YanFei2,LI Hua3,ZOU JianMin1,*(
)
| [1] |
LEFAUCHEUR L.A second look into fiber typing--relation to meat quality. Meat Science, 2010, 84(2): 257-270.
doi: 10.1016/j.meatsci.2009.05.004 |
| [2] |
DOMINISSINI D, MOSHITCH-MOSHKOVITZ S, SCHWARTZ S, SALMON-DIVON M, UNGAR L, OSENBERG S, CESARKS K, JACOB-HIRSCH J, AMARIGLIO N, KUPIEC M, et al.Topology of the human and mouse m6A RNA methylomes revealed by m6A-seq. Nature, 2012, 485(7397): 201-206.
doi: 10.1038/nature11112 |
| [3] |
LIN Z, HSU P J, XING X D, FANG J H, LU Z K, ZOU Q, ZHANG K J, ZHANG X, ZHOU Y C, ZHANG T, et al.Mettl3-/Mettl14-mediated mRNA N(6)-methyladenosine modulates murine spermatogenesis. Cell Research, 2017, 27: 1216-1230.
doi: 10.1038/cr.2017.117 |
| [4] |
ZHAO B X S, ROUNDTREE I A, HE C. Post-transcriptional gene regulation by mRNA modifications. Nature Reviews Molecular Cell Biology, 2017, 18: 31-42.
doi: 10.1038/nrm.2016.132 |
| [5] |
ASHMORE C R, DOERR L.Comparative aspects of muscle fiber types in different species. Experimental Neurology, 1971, 31: 408-418.
doi: 10.1016/0014-4886(71)90243-3 |
| [6] |
ZIERATH J R, HAWLEY J A.Skeletal muscle fiber type: influence on contractile and metabolic properties. PLoS Biology, 2004, 2(10): e348.
doi: 10.1371/journal.pbio.0020348 |
| [7] |
SCHIAFFINO S, SANDRI M, MURGIA M.Activity-dependent signaling pathways controlling muscle diversity and plasticity. Physiology, 2007, 22: 269-278.
doi: 10.1152/physiol.00009.2007 |
| [8] | BOKAR J A, SHAMBAUGH M E, POLAYES D, MATERA A G, ROTTMAN F M.Purification and cDNA cloning of the AdoMet- binding subunit of the human mRNA (N6-adenosine)-methyltransferase. RNA, 1997, 3(11): 1233-1247. |
| [9] |
BOKAR J A, RATH-SHAMBAUGH M E, LUDWICZAK R, NARAYAN P, ROTTMAN F. Characterization and partial purification of mRNA n6-adenosine methyltransferase from hela cell nuclei. internal mrna methylation requires a multisubunit complex. Journal of Biological Chemistry, 1994, 269(26), 17697-17704.
doi: 10.1016/S0021-9258(17)32497-3 |
| [10] |
FU Y, DOMINISSINI D, RECHAVI G, HE C.Gene expression regulation mediated through reversible m6A RNA methylation. Nature Reviews Genetics, 2014, 15(5):293-306.
doi: 10.1038/nrg3724 |
| [11] |
ROUNDTREE I A, EVANS M E, PAN T, HE C.Dynamic RNA modifications in gene expression regulation. Cell, 2017, 169(7): 1187-1200.
doi: 10.1016/j.cell.2017.05.045 |
| [12] |
BI Z, LIU Y H, ZHAO Y L, YAO Y X, WU R F, LIU Q, WANG Y Z, WANG X X.A dynamic reversible RNA N(6)-methyladenosine modification: current status and perspectives. Journal of Cellular Physiology, 2019, 234(6): 1-9.
doi: 10.1002/jcp.v234.1 |
| [13] |
WANG X, FENG J, XUE Y, GUAN Z Y, ZHANG D L, LIU Z, GONG Z, WANG Q, HUANG J B, TANG C, et al.Structural basis of N(6)-adenosine methylation by the METTL3-METTL14 complex. Nature, 2016, 534: 575-578.
doi: 10.1038/nature18298 |
| [14] |
Ping X L, SUN B F, WANG L, XIAO W, YANG X, WANG W J, ADHIKARI S, SHI Y, LV Y, CHEN Y S, ZHAO X, LI A, YANG Y, DAHAL U, LOU X M, LIU X, HUANG J, YUAN W P, ZHU X F, CHENG T, ZHAO Y L, WANG X Q, DANIELSEN J M R, LIU F, YANG Y G. Mammalian WTAP is a regulatory subunit of the RNA N6-methyladenosine methyltransferase. Cell Research, 2014, 24(2): 177-189.
doi: 10.1038/cr.2014.3 |
| [15] |
YUE Y, LIU J, CUI X, CAO J, LUO G, ZHANG Z, CHENG T, GAO M, SHU X, MA H, et al.VIRMA mediates preferential m(6)a mRNA methylation in 3'UTR and near stop codon and associates with alternative polyadenylation. Cell Discovery, 2018, 4: 10.
doi: 10.1038/s41421-018-0019-0 |
| [16] |
CHEN J N, CHEN Y, WEI Y Y, RAZA M A, ZOU Q, XI X Y, ZHU L, TANG G Q, JIANG Y Z, LI X W.Regulation of m6A RNA methylation and its effect on myogenic differentiation in murine myoblasts. Molecular Biology, 2019, 53(3): 384-392.
doi: 10.1134/S002689331903004X |
| [17] |
KUDOU K, KOMATSU T, NOGAMI J, MAEHARA K, HARADA A, SAEKI H, OKI E, MAEHARA Y, OHKAWA Y.The requirement of Mettl3-promoted MyoD mRNA maintenance in proliferative myoblasts for skeletal muscle differentiation. Open Biology, 2017, 7(9): 170119.
doi: 10.1098/rsob.170119 |
| [18] | 罗克. 家禽解剖学与组织学. 福州: 福建科学技术出版社. 1983: 27-44. |
| LUO K.Anatomy and Histology of Poultry. Fuzhou: Fujian Science and Technology Press. 1983: 27-44. (in Chinese) | |
| [19] | LUO W, WU H, YE Y, LI Z, HAO S, KONG L, ZHENG X, LIN S, NIE Q, ZHANG X.The transient expression of miR-203 and its inhibiting effects on skeletal muscle cell proliferation and differentiation. Cell Death & Disease, 2014, 5: e1347. |
| [20] |
XU T S, XU Z J, LU L Z, ZENG T, GU L H, HUANG Y Z, ZHANG S J, YANG P, WEN Y F, LIN D J, XING M P, HUANG L L, LIU G J, CHAO Z, SUN W P.Transcriptome-wide study revealed m6A regulation of embryonic muscle development in Dingan goose (Anser cygnoides orientalis). BMC Genomics, 2021, 22: 270.
doi: 10.1186/s12864-021-07556-8 |
| [21] |
TAO X, CHEN J, JIANG Y, WEI Y Y, CHEN Y, XU H M, ZHU L, TANG G Q, LI M Z, JIANG A A, et al.Transcriptome-wide N ( 6) -methyladenosine methylome profiling of porcine muscle and adipose tissues reveals a potential mechanism for transcriptional regulation and differential methylation pattern. BMC Genomics, 2017, 18(1): 336.
doi: 10.1186/s12864-017-3719-1 |
| [22] |
SUZUKI A, TSUCHIYA T, OHWADA S, TAMATE H.Distribution of myofiber types in thigh muscles of chickens. Journal of Morphology, 1985, 185: 145-154.
doi: 10.1002/(ISSN)1097-4687 |
| [23] |
SHU J T, XIAO Q, SHAN Y J, ZHANG M, TU Y J, JI G G, SHENG Z W, ZOU J M.Oxidative and glycolytic skeletal muscles show marked differences in gene expression profile in Chinese Qingyuan partridge chickens. PLoS ONE, 2017, 12(8): e0183118.
doi: 10.1371/journal.pone.0183118 |
| [24] |
LIU J Z, YUE Y N, HAN D L, WANG X, FU Y, ZHANG L, JIA G F, YU M, LU Z K, DENG X.A METTL3-METTL14 complex mediates mammalian nuclear RNA N6-adenosine methylation. Nature Chemical Biology, 2014, 10(2): 93-95.
doi: 10.1038/nchembio.1432 |
| [25] |
SCHWARTZ S, MUMBACH M R, JOVANOVIC M, WANG T, MACIAG K, BUSHKIN G G, MERTINS P, TER-OVANESYAN D, HABIB N, CACCHIARELLI D, et al.Perturbation of m6A writers reveals two distinct classes of mRNA methylation at internaland 5' Sites. Cell Reports, 2014, 8(1): 284-296.
doi: 10.1016/j.celrep.2014.05.048 |
| [26] |
PING X L, SUN B F, WANG L, XIAO W, YANG X, WANG W J, YANG Y C.Mammalian WTAP is a regulatory subunit of the RNA N6-methyladenosine methyltransferase. Cell Research, 2014, 24(2): 177-189.
doi: 10.1038/cr.2014.3 |
| [27] |
WU L, WU D, NING J, LIU W, ZHANG D.Changes of N6- methyladenosine modulators promote breast cancer progression. BMC Cancer, 2019, 19: 326.
doi: 10.1186/s12885-019-5538-z |
| [28] |
PEDRO J B, BENOIT M, JINKAI W, QU K, ZHANG J J, LI L J, DONNA M B, CHANG H Y. m6A RNA modification controls cell fate transition in mammalian embryonic stem cells. Cell Stem Cell, 2014, 15(6): 707-719.
doi: 10.1016/j.stem.2014.09.019 |
| [29] | 魏巍. KIAA1429 在小鼠胚胎发育过程中的功能研究[D]. 南宁: 广西大学, 2017. |
| WEI W.Study on the function of KIAA1429 in mouse embryo development [D]. Nanning: Guangxi University, 2017. (in Chinese) | |
| [30] |
SHAN Y J, JI G G, ZOU J M, ZHANG M, TU Y J, LIU Y F, JU X J, SHU J T.PGC-1α differentially regulates the mRNA expression profiles of genes related to myofiber type specificity in chicken. Journal of Integrative Agriculture, 2020, 19(8): 2083-2094.
doi: 10.1016/S2095-3119(20)63177-X |
| [31] |
SABOURIN L A, RUDNICKI M A.The molecular regulation of myogenesis. Clinical Genetics, 2010, 57: 16-25.
doi: 10.1034/j.1399-0004.2000.570103.x |
| [32] |
GEULA S, MOSHITCH-MOSHKOVITZ S, DOMINISSINI D, MANSOUR A A, KOL NITZAN, SALMAN-DIVON M, HERSHKOVITZ V, PEER E, MOR N, MANOR Y S, et al.Stem cells. m6A mRNA methylation facilitates resolution of naive pluripotency toward differentiation. Science, 2015, 347(6225): 1002-1006.
doi: 10.1126/science.1261417 |
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