|Table of Contents|

Advances in Application and Seguencing Methods of Transcriptome(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2017年12
Page:
192-198
Research Field:
Publishing date:

Info

Title:
Advances in Application and Seguencing Methods of Transcriptome
Author(s):
YAO Na12LIU Xiuming12DONG Yuanyuan1WANG Nan1MENG Lulu1LI Haiyan12
(1.Ministry of Education Engineering Research Center of Bioreactor and Pharmaceutical Development,Jilin Agricultural University,Changchun,Jilin 130118;2.College of Life Sciences,Jilin Agricultural University,Changchun,Jilin 130118)
Keywords:
transcriptomesequencing454 sequencingSolexaSOLiD
PACS:
-
DOI:
10.11937/bfyy.201712043
Abstract:
Transcriptome is the basis of the research of structure and function of genes,transcriptome sequencing technology has made great progress in recent years and been applied to many plants and animals species.It has been widely applied to unknown gene mining,molecular regulation and related metabolic pathways for its lots of known sequence.This study reviewed methods of transcriptome,development of transcriptome sequencing and its application in plants and animals,we discussed the problem of tanscriptome and the development trend in the future.

References:

 

[1]VELCULESCU V E,ZHANG L,ZHOU W,et al.Characterization of the yeast transcriptome[J].Cell,1997,88(2):243-251.

[2]周华,张新,刘腾云,等.高通量转录组测序的数据分析与基因发掘[J].江西科学,2012,30(5):607-611.

[3]吴琼,孙超,陈士林,等.转录组学在药用植物研究中的应用[J].世界科学技术(中医药现代化)2010,12(3):457-461.

[4]薛建江,邱景富.病原菌感染宿主的转录组学研究进展[J].河北北方学院学报(医学版),2007,24(5):63-66.

[5]COSTA VANGELINI Cde FEIS Iet al.Uncovering the complexity of transcriptomes with RNA-Seq[J].J Biomed Biotechnol2010627):853-916.

[6]RUAN YLE BER PNG H H,et al.Interrogating the transcriptome[J].Trends Biotechnol,200422:23-30.

[7]WANG Z,GERSTEIN M,SNYDER M.RNA-SeqA revolutionary tool for transcriptomics[J].Nat Rev Genet,200910:57-63.

[8]VELCULESCU V EZHANG LVOGELSTEIN Bet al.Serial analysis of gene expression[J].Science1995270(5235):484-487.

[9]岳桂东,高强,罗龙海,等.高通量测序技术在动植物研究领域中的应用[J].中国科学:生命科学,2012,42(2):107-124.

[10]刘思言,沈铖武,王丕武.基因芯片技术在植物中的应用研究进展[J].广东农业科学,2013(8):136-138.

[11]RAMSAY G.DNA chips:State of the art[J].Nature Biotechnology,199816(1):40-44.

[12]张骞,盛军.基因芯片技术的发展和应用[J].中国医学科学学报,2008,30(3):344-347.

[13]姜庆利.检测柯萨奇病毒、副流感病毒基因芯片的建立[D].长春:吉林大学,2013.

[14]MARK D.Serial analysis of gene expression:ESTs get smaller[J].Bioessays,199618(4):261-262.

[15]NIELSEN K L,HGH A L,EMMERSEN J.Deep SAGE-digital transcriptomics with high sensitivitysimple experimental protocol and multiplexing of samples[J].Nucleic Acids Res,2006,34:133.

[16]MOLINA CZAMAN-ALLAH MKHAN F.The salt-responsive transcriptome of chickpea roots and nodules via deep Super SAGE[J].BMC Plant Biol,2011(11):31.

[17]CHUM W WKWAN H SAU C H,et al.Cataloging and profiling genes expressed in Lentinula edodes fruiting body by massive cDNA pyrosequencing and Long SAGE[J].Fungal Genet Biol,2011,48:359-369.

[18]王大力,黄大鹏.基因表达系列分析技术研究进展[J].动物医学进展,200930(4):69-72.

[19]鲍忠赞,张彩霞,徐世清,等.应用基因表达系列分析 (SAGE) 技术研究高温处理前后家蚕的基因表达差异[J].蚕业科学,2012,38(3):456-467.

[20]邓永键,郝飞.基因表达系列分析及其应用前景[J].免疫学杂志,2003,19(4)315-321.

[21]刘红亮,郑丽明,刘青青,等.非模式生物转录组研究[J].遗传,2013,35(8)955-970.

[22]井赵斌,魏琳,俞靓,等.转录组测序及其在牧草基因资源发掘中的应用前景[J].草业科学,2011,287):1364-1369.

[23]祁云霞,刘永斌,荣威恒.转录组研究新技术:RNA-Seq 及其应用[J].遗传,2011,33(11):1191-1202.

[24]张春兰,秦孜娟,王桂芝,.转录组与RNA-Seq技术[J].生物技术通报,2012(12):51-56.

[25]WALL P KLEEBENS-MACK JCHANDERBALI A Set al.Comparison of next generation sequencing technologies for transcriptome characterization[J].BMC Genomics2009(10):347.

[26]ADAMS M DKELLEY J MGOCAYNE J Det al.Complementary DNA sequencingexpressed sequence tags and human genome project[J].Science,1991,252(5013):1651-1656.

[27]BOUCK AVISION T.The molecular ecologists guide to expressed sequence tags[J].Mol Ecol,200716(5)907-924.

[28]MARGULIES MEGHOLM MALTMAN W Eet al.Genome sequencing in microfabricated high-density picolitre reactors[J].Nature,2005437(7057):376-380.

[29]PORRECA G JZHANG KLI J Bet al.Multiplex amplification of large sets of human exons[J].Nat Methods20074(11):931-936.

[30]张全芳,李军,范仲学,等.高通量测序技术在农业研究中的应用[J].山东农业科学,201345(1)137-140.

[31]WANG Z W,JIANG C,WEN Qet al.Deep sequencing of the Camellia chekiangoleosa transcriptome revealed candidate genes for anthocyan in biosynthesis[J].Gene2014538(1):1-7.

[32]李滢,孙超,罗红梅,等.基于高通量测序454 GS FLX 的丹参转录组学研究[J].药学学报,201045(4)524-529.

[33]ALAGNA FAGOSTINO N DTORCHIA Let al.Comparative 454 pyrosequencing of transcripts from two olive genotypes during fruit development[J].BMC Genomics,2009(10):399.

[34]HE L,XU X,LI Yet al.Transcriptome analysis of buds and leaves using 454 pyrosequencing to discover genes associated with the biosynthesis of active ingredients in Lonicera japonica Thunb.[J].PLoS One20138(4):e62922.

[35]BHATTACHARYYA D,SINHA R,HAZRA Set al.De novo transcriptome analysis using 454 pyrosequencing of the Himalayan Mayapple,Podophyllum hexandrum[J].BMC Genomics,2013(14):748.

[36]DUARTE J,RIVIERE N,BARANGER Aet al.Transcriptome sequencing for high throughput SNP development and genetic mapping in pea[J].BMC Genomics201415(1):126.

[37]WANG XL,LI Y,LIAO Let al.Isolation and characterization of microsatellite markers for Axonopus compressus(Sw.) Beauv.(Poaceae) using 454 sequencing technology[J].Genet Mol Res,2015,14(2):4696-4702.

[38]WANG F,CHEN H,LI Xet al.Mining and identification of polyunsaturated fatty acid synthesis genes active during camelina seed development using 454 pyrosequencing[J].BMC Plant Biol,2015(15):147.

[39]ZHU G,YANG F,SHI Set al.Transcriptome characterization of cymbidium sinense Dharma using 454 pyrosequencing and its application in the identification of genes associated with leaf color variation[J].PLoS One,201510(6):e0128592.

[40]MOELLER S,WHRMANN T,HUETTEL Bet al.Development of 18 polymorphic microsatellite markers for Vinca minor (Apocynaceae) via 454 pyrosequencing[J].Appl Plant Sci,20153(5):1500015.

[41]陈新.榛子花芽转录组文库的Solexa测序及冷调节基因的表达谱分析[D].北京:中国林业科学研究院,2011.

[42]XU Q,ZHANG Y,CHEN Yet al.Identification and differential expression of microRNAs in ovaries of laying and broody geese (Anser cygnoides) by Solexa sequencing[J].PLoS One,20149(2):e87920.

[43]MI X,WEI Z,ZHOU Zet al.dentification and profiling of sex-biased microRNAs from sea urchin Strongylocentrotus nudus gonad by Solexadeep sequencing[J].Comp Biochem Physiol Part D Genomics Proteomics,201410C:1-8.

[44]XIAO J,ZHONG H,ZHOU Yet al.Identification and characterization of microRNAs in ovary and testis of Nile tilapia (Oreochromis niloticus) by using solexa sequencing technology[J].PLoS One,20149(1):e86821.

[45]ZHOU Y,CHEN L,FAN Xet al.De novo assembly of auricularia polytricha transcriptome using illumina sequencing for gene discovery and ssr marker identification[J].PLoS One,20149(3):e91740.

[46]WU Q,XU L,GUO Jet al.Transcriptome profile analysis of sugarcane responses to Sporisorium scitaminea infection using Solexa sequencing technology[J].Biomed Res Int2013:298920.

[47]ZHAO ZWU GWANG Jet al.Next-generation sequencing-based transcriptome analysis of Helicoverpa armigera larvae immune-primed with Photorhabdus luminescens TT01[J].PLoS One20138(11):e80146.

[48]YI SGAO Z XZHAO Het al.Identification and characterization of microRNAs involved in growth of blunt snout bream (Megalobrama amblycephala) by Solexa sequencing[J].BMC Genomics2013(14):754.

[49]KANG KZHONG JJIANG Let al.Identification of microRNA-Like RNAs in the filamentous fungus Trichoderma reesei by Solexa sequencing[J].PLoS One,20138(10):e76288.

[50]WANG FLI HZHANG Yet al.MicroRNA expression analysis of rosette and folding leaves in Chinese cabbage using high-throughput Solexasequencing[J].Gene201332(2):222-229.

[51]PAN Y ZWU S GDAI H Cet al.Solexa sequencing of microRNAs on chromium metabolism in broiler chicks[J].Nutrigenet Nutrigenomics20136(3):137-153.

[52]YUAN CWANG XGENG Ret al.Discovery of cashmere goat (Capra hircus) microRNAs in skin and hair follicles by Solexa sequencing[J].BMC Genomics2013(14):511.

[53]张绍鹏,金健,胡炳雄,等.珍稀药用植物珠子参的转录组测序及分析[J].中国中药杂志,2015,40(1)2084-2089.

[54]RAVEENDAR S,NA Y W,LEE J Ret al.The complete chloroplast genome of Capsicum annuum var.glabriusculum using illumina sequencing[J].Molecules,2015,20(7):13080-13088.

[55]MITRA SFRSTER-FROMME KDAMMS-MACHADO Aet al.Analysis of the intestinal microbiota using SOLiD 16S rRNA gene sequencing and SOLiD shotgun sequencing[J].BMC Genomics20135:S16.

[56]李小白,向林,罗洁,等.转录组测序(RNA-seq)策略及其数据在分子标记开发上的应用[J].中国细胞生物学学报,2013,35(5):720-726.

[57]WANG LLI PBRUTNELL T P.Exploring plant transcriptomes using ultra high-throughput sequencing[J].Brief Funct Genomics2010,9(2):118-128.

[58]YAN HZHANG HCHEN Met al.Transcriptome and gene expression analysis during flower blooming in Rosa chinensis Pallida[J].Gene2013,540(1):96-103.

[59]GIORDANO ACOGAN NOKAUR Set al.Gene discovery and molecular marker developmentbased on high-throughput transcript sequencing of paspalum dilatatum poir[J].PLoS One,20149(2):e85050.

[60]CHE RSUN YWANG Ret al.Transcriptomic analysis of endangered chinese salamanderidentification of immunesex and reproduction-related genes and genetic markers[J].PLoS One,2014,9(1)e87940.

[61]NG D WSHI XNAH Get al.High-throughput RNA-seq for allelic or locus-specific expression analysis in Arabidopsis-related specieshybridsand allotetraploids[J].Methods Mol Biol,2014,1112:33-48.

[62]LIU RDONG YFAN Get al.Discovery of genes related to witches broom disease in Paulownia tomentosa×Paulownia fortunei by a de novo assembled transcriptome[J].PLoS One,2013,8(11):e80238.

[63]HSU J CCHIEN T YHU C Cet al.Discovery of genes related to insecticide resistance in Bactrocera dorsalis by functional genomic analysis of a de novo assembled transcriptome[J].PLoS One,2012,7(8):e40950.

[64]KAYA H BCETIN OKAYA Het al.SNP discovery by illumina-based transcriptome sequencing of the olive and the genetic characterization of Turkish olive genotypes revealed by AFLPSSR and SNP markers[J].PLoS One,2013,8(9):e73674.

[65]ZOU DCHEN XZOU D.Sequencingde novo assemblyannotation and SSR and SNP detection of sabaigrass (Eulaliopsis binata)transcriptome[J].Genomics2013102(1):57-62.

[66]NICOLA MPISANI CBOUCHET J Pet al.Discovery of a large set of SNP and SSR genetic markers by high-throughput sequencing of pepper (Capsicum annuum)[J].Net Mol Res201211(3):2295-2300.

[67]WEI LLI SLIU Set al.Transcriptome analysis of Houttuynia cordata Thunb.by Illumina paired-end RNA sequencing and SSR marker discovery[J].PLoS One20149(1):e84105.

[68]LIU ZCHEN TMA Let al.Global transcriptome sequencing using the illumina platform and the development of EST-SSR markers in autotetraploid alfalfa[J].PLoS One,2013,8(12):e83549.

[69]李满堂,张仕林,邓鹏,.洋葱转录组 SSR 信息分析及其多态性研究,园艺学报,2015,42(6):1103-1111.

[70]WANG YPAN YLIU Zet al.De novo transcriptome sequencing of radish (Raphanus sativus L.) and analysis of major genes involved in glucosinolate metabolism[J].BMC Genomics,2013,14:836.

[71]LI EWANG SLI Cet al.Transcriptome sequencing revealed the genes and pathways involved in salinity stress of Chinese mitten crabEriocheir sinensis[J].Physiol Genomics,2014,46(5):177-190.

[72]刘英华,陈瑛.高通量测序技术的最新研究进展[J].中国妇幼保健,2013,28(13):1990-1992.

Memo

Memo:
-
Last Update: 2017-06-27