[1] 焦晶凯, 莫蓓红, 高红艳.microRNA功能研究新进展[J].中国畜牧兽医, 2013, 40(2):45-49.
[2] REDDY A M, ZHENG Y, JAGADEESWARAN G, et al.Cloning, characterization and expression analysis of porcine microRNAs[J].BMC Genomics, 2009, 10:65.
[3] CHO I S, KIM J, SEO H Y, et al.Cloning and characterization of microRNAs from porcine skeletal muscle and adipose tissue[J].Molecular Biology Reports, 2010, 37(7):3567-3574.

[4] SHARBATI-TEHRANI S, KUTZ-LOHROFF B, SCHOLVEN J, et al.Concatameric cloning of porcine microRNA molecules after assembly PCR[J].Biochemical and Biophysical Research Communications, 2008, 375(3):484-489.

[5] 丛立新, 张金玉, 赵志辉.miRNA的鉴定及检测方法的概述[J].饲料工业, 2014, 35(3):58-60.
[6] SAWERA M, GORODKIN J, CIRERA S, et al.Mapping and expression studies of the mir17-92 cluster on pig Chromosome 11[J].Mammalian Genome, 2005, 16(8):594-598.

[7] ZHOU B, LIU H L, SHI F X, et al.MicroRNA expression profiles of porcine skeletal muscle[J].Animal Genetics, 2010, 41(5):499-508.

[8] HUA Y J, TU K, TANG Z Y, et al.Comparison of normalization methods with microRNA microarray[J].Genomics, 2008, 92(2):122-128.

[9] SHARBATI S, FRIEDLÄNDER M R, SHARBATI J, et al.Deciphering the porcine intestinal microRNA transcriptome[J].BMC Genomics, 2010, 11:275.
[10] PODOLSKA A, KACZKOWSKI B, KAMP BUSK P, et al.MicroRNA expression profiling of the porcine developing brain[J].PLoS One, 2011, 6(1):e14494.
[11] XIE F L, HUANG S Q, GUO K, et al.Computational identification of novel microRNAs and targets in Brassica napus[J].FEBS Letters, 2007, 581(7):1464-1474.

[12] XIE S S, HUANG T H, SHEN Y, et al.Identification and characterization of microRNAs from porcine skeletal muscle[J].Animal Genetics, 2010, 41(2):179-190.

[13] LI G X, LI Y J, LI X J, et al.MicroRNA identity and abundance in developing swine adipose tissue as determined by Solexa sequencing[J].Journal of Cellular Biochemistry, 2011, 112(5):1318-1328.

[14] LI M, LIU Y, WANG T, et al.Repertoire of porcine microRNAs in adult ovary and testis by deep sequencing[J].International Journal of Biological Sciences, 2011, 7(7):1045-1055.
[15] TIMONEDA O, BALCELLS I, NÙÑEZ J L, et al.MiRNA expression profile analysis in kidney of different porcine breeds[J].PLoS One, 2013, 8(1):e55402.
[16] BAI Y, HUANG J M, LIU G, et al.A comprehensive microRNA expression profile of the backfat tissue from castrated and intact full-sib pair male pigs[J].BMC Genomics, 2014, 15:47.
[17] REDSHAW Z, SWEETMAN D, LOUGHNA P T.The effects of age upon the expression of three miRNAs in muscle stem cells isolated from two different porcine skeletal muscles[J].Differentiation, 2014, 88(4/5):117-123.
[18] YANG Y L, LI Y, LIANG R Y, et al.Dynamic expression of microRNA-127 during porcine prenatal and postnatal skeletal muscle development[J].Journal of Integrative Agriculture, 2014, 13(6):1331-1339.

[19] CAI Z W, ZHANG L F, JIANG X L, et al.Differential miRNA expression profiles in the Longissimus dorsi muscle between intact and castrated male pigs[J].Research in Veterinary Science, 2015, 99:99-104.
[20] LI H Y, CHEN X, GUAN L Z, et al.MiRNA-181a regulates adipogenesis by targeting tumor necrosis factor-α (TNF-α) in the porcine model[J].PLoS One, 2013, 8(10):e71568.
[21] JEONG B C, KANG I H, KOH J T.MicroRNA-302a inhibits adipogenesis by suppressing peroxisome proliferator-activated receptor γ expression[J].FEBS Letters, 2014, 588(18):3427-3434.

[22] GU Y R, LI M Z, WANG T, et al.Lactation-related microRNA expression profiles of porcine breast milk exosomes[J].PLoS One, 2012, 7(8):e43691.
[23] CHEN T, XI Q Y, YE R S, et al.Exploration of microRNAs in porcine milk exosomes[J].BMC Genomics, 2014, 15:100.
[24] LIU J Y, YAO W, YAO Y, et al.MiR-92a inhibits porcine ovarian granulosa cell apoptosis by targeting Smad7 gene[J].FEBS Letters, 2014, 588(23):4497-4503.

[25] YE R S, XI Q Y, QI Q, et al.Differentially expressed miRNAs after GnRH treatment and their potential roles in FSH regulation in porcine anterior pituitary cell[J].PLoS One, 2013, 8(2):e57156.
[26] QI Q E, XI Q Y, YE R S, et al.Alteration of the miRNA expression profile in male porcine anterior pituitary cells in response to GHRH and CST and analysis of the potential roles for miRNAs in regulating GH[J].Growth Hormone & IGF Research, 2015, 25(2):66-74.

[27] GUO X K, ZHANG Q, GAO L, et al.Increasing expression of microRNA 181 inhibits porcine reproductive and respiratory syndrome virus replication and has implications for controlling virus infection[J].Journal of Virology, 2013, 87(2):1159-1171.

[28] WANG D, CAO L, XU Z, et al.MiR-125b reduces porcine reproductive and respiratory syndrome virus replication by negatively regulating the NF-κB pathway[J].PLoS One, 2013, 8(2):e55838.
[29] LI L W, WEI Z Z, ZHOU Y J, et al.Host miR-26a suppresses replication of porcine reproductive and respiratory syndrome virus by upregulating type Ⅰ interferons[J].Virus Research, 2015, 195(2):86-94.
[30] ZHANG Q, GUO X K, GAO L, et al.MicroRNA-23 inhibits PRRSV replication by directly targeting PRRSV RNA and possibly by upregulating type Ⅰ interferons[J].Virology, 2014, 450-451:182-195.
[31] WU J, PENG X, ZHOU A, et al.MiR-506 inhibits PRRSV replication in MARC-145 cells via CD151[J].Molecular and Cellular Biochemistry, 2014, 394(1/2):275-281.
[32] HICKS J A, YOO D, LIU H C.Characterization of the microRNAome in porcine reproductive and respiratory syndrome virus infected macrophages[J].PLoS One, 2013, 8(12):e82054.
[33] HOEKE L, SHARBATI J, PAWAR K, et al.Intestinal salmonella typhimurium infection leads to miR-29a induced caveolin 2 regulation[J].PLoS One, 2013, 8(6):e67300.
[34] PODOLSKA A, ANTHON C, BAK M, et al.Profiling microRNAs in lung tissue from pigs infected with Actinobacillus pleuropneumoniae[J].BMC Genomics, 2012, 13:459.
[35] HUANG J, MA G J, FU L L, et al.Pseudorabies viral replication is inhibited by a novel target of miR-21[J].Virology, 2014, 456-457:319-328.