OALib Journal期刊
ISSN: 2333-9721
费用:99美元
|
|
|
纤维素类草本能源植物的研究现状
DOI: 10.3724/SP.J.1145.2014.00162, PP. 162-168
Keywords: 纤维素,草本能源植物,遗传改良,基因工程,燃料乙醇
Abstract:
纤维素类草本能源植物具有很高的生物质产量、纤维素和半纤维素含量,对环境友好,是目前最有发展前途的生物质资源之一,欧洲和美国将其作为首选的生物质能源植物.本文介绍了柳枝稷(panicumvirgatum)、芒草(miscanthusspp.)、芦竹(arundodonaxlinn)等几种主要纤维素类草本能源植物具有产量高、适应性强、用途广泛等特点;综述了纤维素类草本能源植物在国内外的研究概况,以及基因工程技术在降低植物木质素含量及在植物中过表达纤维素降解酶类方面的应用;进一步指出在我国存在纤维素类草本能源植物资源评估、选育滞后,相关技术还不完善等问题,进行充分开发利用将在缓解能源紧张、解决环境问题、促进农业和经济发展等方面有着良好的前景.
References
[1] | 5.lewandowskii,scurlockjmo,lindvalle,christoum.thedevelopmentandcurrentstatusofperennialrhizomatousgrassesasenergycropsintheusandeurope[j].biomassbioenergy,2003,25(4):355-361
|
[2] | 6.杜菲,杨富裕,caslermd,张蕴薇.美国能源草柳枝稷的研究进展[j].安徽农业科学,2010,38(35):20334-20339[duf,yangfy,caslermd,zhangyw.theresearchprogressofswitchgrass-energygrassinamerica[j].janhuiagricsci,2010,38(35):20334-
|
[3] | 7.范希峰,左海涛,侯新村,武菊英.芒和荻作为草本能源植物的潜力分析[j].中国农学通报,2010,26(14):381-387[fanxf,zuoht,hongxc,wujy.potentialofmiscanthusspp.andtriarrhenaspp.herbaceousenergyplants[j].chinagricscibull,2010,26(14):381-
|
[4] | 10.范希峰,侯新村,武菊英,朱毅.我国北方能源草研究进展及发展潜力[j].中国农业大学学报,2012,17(6):150-158[fanxf,houxc,wujy,zhuy.researchprogressanddevelopmentpotentialanalysisofbioenergygrassinthenorthofchina[j].jchinaagricuniv,2012,17(6):150-
|
[5] | 11.范希峰,侯新村,朱毅,武菊英.杂交狼尾草作为能源植物的产量和品质特性[j].中国草地学报,2012,34(1):48-52[fanxf,houxc,zhuy,wujy.biomassyieldandqualityofhybridpennisetum[j].chinjgrassl,2012,34(1):48-
|
[6] | 12.宁祖林,陈慧娟,王珠娜,张卓文,邱迎君.几种高大禾草热值和灰分动态变化研究[j].草业学报,2010,19(2):241-247[ningzl,chenhj,wangzn,zhangzw,qiuyj.astudyonthedynamicchangeofgrosscaloricvalueandashcontentoftheseveraltallgrasses[j].actapratacultsin,2010,19(2):241-
|
[7] | 13.潘一晨,李阳,王艳.能源禾草的初步筛选[j].沈阳师范大学学报(自然科学版),2011,29(4):571-573[panyc,liy,wangy.preliminaryselectionofenergygrasses[j].jshengyangnormuniv(natsci),2011,29(4):571-
|
[8] | 14.宗俊勤,郭爱桂,陈静波,刘建秀.7种多年生禾草作为能源植物潜力的研究[j].草业科学,2012,29(5):809-813[zongjq,guoag,chenjb,liujx.astudyonbiomasspotentialsofperennialgramineousenergyplants[j].pratacultsci,2012,29(5):809-
|
[9] | 19.阮奇城,祁建发,胡开辉,方平平,徐建堂,陶爱芬,林海红,林国龙.红麻秸杆高效预处理方法的选择[j].中国农学通报,2011,27(15):112-116[luanqc,qijf,hukh,fangpp,xujt,taoaf,linhh,lingl.efficientpretreatmentofkenafstalkforfuelethanol[j].chinagricscibull,2011,27(15):112-
|
[10] | 20.李高扬,李建龙,王艳,潘永年,窦观一.优良能源植物筛选及评价指标探讨[j].可再生能源,2007,25(6):84-89[ligy,lijl,wangy,panyn,dougy.studyontheselectionandevaluationonfineenergyplants[j].renewenergyresour,2007,25(6):84-
|
[11] | 21.himmelme,adneyws,bakerjo,elanderr,mcmillanjd,nievesra,sheehanjj,thomassr,vinzanttb,zhangm.advancedbioethanolproductiontechnologies:aperspective[j].fuelchembiomass,1997,666:2-45
|
[12] | 22.himmelme,dingsy,johnsondk,adneyws,nimlosmr,bradyjw.biomassrecalcitrance:engineeringplantsandenzymesforbiofuelsproduction[j].science,2007,315:804-807
|
[13] | 23.sticklenmb.plantgeneticengineeringforbiofuelproduction:towardsaffordablecellulosicethanol[j].natrevgenet,2008,9:433-443
|
[14] | 24.prinsmj,ptasinskikj,jansssenfjjg.exergeticoptimizationofaproductionprocessoffischer-tropschfuelsfrombiomass[j].fuelprocesstechnol,2004,86:375-389
|
[15] | 25.lil,zhouy,chengx,sunj,maritajm,ralphj,chiangvl.combinatorialmodificationofmultiplelignintraitsintreesthroughmultigenecotransformation[j].procnatlacadsciusa,2003,100(8):4939-4946
|
[16] | 26.bleeka,choijw,o’connellap,schuchw,lewisng,bolwellgp.alingin-sepcificperoxidaseintobaccowhoseantisensesuppressionleadstovasculartissuemodification[j].phytochemistry,2003,64(1):163-176
|
[17] | 27.fuc,mielenzjr,xiaox,gey,hamiltoncy,rodriguezm,chenf,fostonm,ragauskasa,boutonj,dixonra,wangzy.geneticmanipulationofligninreducesrecalcitranceandimprovesethanolproductionfromswitchgrass[j].procnatlacadsciusa,2011,108(9):3803-3808
|
[18] | 28.sticklenm,teymourif,maqbools,salehih,ransomc,biswasg,ahmadr,daleb.productionofmicrobialhydrolysisenzymesinbiomasscropsviageneticengineering[c].2ndinternationalukrainianconferenceonbiomassforenergy,ukrainian,2004.133,20-22
|
[19] | 30.biswasgcg,ransomc,sticklenm.expressionofbiologicallyactiveacidothermuscellulolyticusendoglucanaseintransgenicmaizeplants[j].plantsci,2006,171(5):617-623
|
[20] | 32.orabyh,venkateshb,daleb,ahmadr,ransomc,oehmkej,sticklenm.enhancedconversionofplantbiomassintoglucoseusingtrangenicriceproductedendoglucanaseforcellulosicethanol[j].transgenres,2007,16:739-749
|
[21] | 37.miyagaway,tamoim,shigeokas.overexpressionofacyanobacterialfructose-1,6-/sedoheptulose-1,7-bisphosphataseintobaccoenhancesphotosynthesisandgrowth[j].natbiotechnol,2001,19:965-969
|
[22] | 39.黄剑坚,韩维栋.我国主要木本能源植物的研究现状及利用前景[j].广东林业科技,2006,22(4):105-110[huangjj,hanwd.thecurrentresearchandperspectiveutilizationontheenergytreespeciesinchina[j].guangdongforscitechnol,2006,22(4):105-
|
[23] | 40.李高扬,李建龙,王艳,潘永年,窦观一.利用高产牧草柳枝稷生产清洁生物质能源的研究进展[j].草业科学,2008,25(5):15-21[ligy,lijl,wangy,panyn,dougy.researchprogressonthecleanbioenergyproductionfromhighyieldpanicumvirgatum[j].pratacultsci,2008,25(5):15-
|
[24] | 1.langa,kopetzh,parkera.australia:biomassenergyholdsbigpromise[j].nature,2012,488:590-591
|
[25] | 2.杨世诚.绿色能源:植物是明天[j].森林与人类,2000,5:11-12
|
[26] | 3.费世民,张旭东,杨灌英,周金星,刘福云.国内外能源植物资源及其开发利用现状[j].四川林业科技,2005,26(3):20-26[feism,zhangxd,yanggy,zhoujx,liufy.ondomesticandinternationalsituationofenergyplantresourcesandtheirexploitation[j].jsichuanforscitechnol,2005,26(3):20-
|
[27] | 4.中国油脂植物编写委员会.中国油脂植物[m].北京:科学出版社,1987
|
[28] | 8.胡婷春,熊兴耀.新型能源植物――芒的研究进展[j].农产品加工(学刊),2010,208(5):23-26[hutc,xiongxy.researchprogressonthenewenergyplant:miscanthus[j].acadperiodfarmprodprocess,2010,208(5):23-
|
[29] | 9.余醉,李建龙,李高扬.芦竹作为清洁生物质能源牧草开发的潜力分析[j].草业科学,2009,26(6):62-69[yuz,lijl,ligy.analysisonthepotentialcapacityofexploitinggiantreedasanenergyforage[j].pratacultsci,2009,26(6):62-
|
[30] | 15.周强,於丙军.潜在木质纤维素能源植物香根草的初步研究[j].植物资源与环境学报,2012,21(1):98-103[zhouq,yubj.preliminarystudyonvetiveriazizanioidesusingasapotentiallignocellulosicenergyplant[j].jplantresourenviron,2012,21(1):98-
|
[31] | 16.何明雄,胡启春,罗安靖,茆灿泉,祝其丽,潘科,李清.人工湿地植物生物质资源能源化利用潜力评估[j].应用与环境生物学报,2011,17(4):527-531[hemx,huqc,luoaj,maocq,zhuql,pank,liq.assessmentofconstructedwetlandplantbiomassforenergyutilization[j].chinjapplenvironbiol,2011,17(4):527-
|
[32] | 17.余醉,李高扬,李建龙,薛峰.不同预处理对草本芦竹生产燃料乙醇糖化效果比较[j].贵州农业科学,2008,36(6):117-119[yuz,ligy,lijl,xuef.theeffectofdifferentpretreatmentmethodsonhydrolysisofcelluloseandsemi-celluloseofarundodonax[j].guizhouagricultsci,2008,36(6):117-
|
[33] | 18.阮奇城,祁建发,胡开辉,曹秀华,林国荣,王典.红麻秸杆发酵转化燃料乙醇[j].福建农林大学学报(自然科学版),2012,41(1):78-82[luanqc,qijf,hukh,caoxh,lingr,wangd.bioconversionoffuelethanolfromkenafstalk[j].jfujianagricforuniv(natsci),2012,41(1):78-
|
[34] | 29.orabyh,venkateshb,daleb,ahmadr,ransomc,oehmkej,sticklenm.enhancedconversionofplantbiomassintoglucoseusingtrangenicriceproductedendoglucanaseforcellulosicethanol[j].transgenicres,2007,16:739-749
|
[35] | 31.teymourif,alizadehh,laureano-perezl,daleb,sticklenm.effectsofammoniafiberexplosiontreatmentonactivityofendoglucanasefromacidothermuscellulolyticusintransgenicplant[j].applbiochembiotechnol,2004,116:1183-1191
|
[36] | 33.meics,parksh,sabzikarr,qicf,ransomc,sticklenm.greentissue-specificproductionofamicrobialendo-cellulaseinmaize(zeamaysl.)endoplasmic-reticulumandmitochondriaconvertscelluloseintofermentablesugars[j].jchemtechnolbiotechnol,2009,84:689-695
|
[37] | 34.jungs,kims,baeh,limhs,baehj.expressionofthermostablebacterialβ-glucosidase(bglb)intransgenictobaccoplants[j].bioresourcetechnol,2010,101:7144-7150
|
[38] | 35.kum,chod,lix,jiaodm,pintom,miyaom,matsuokam.introductionofgenesencodingc4photosynthesisenzymesintoriceplants:physiologicalconsequences[j].novartisfoundsymp,2001,236:100-116
|
[39] | 36.lieman-hurwitzj,rachmilevitchs,mittlerr,marcusy,kaplana.enhancedphotosynthesisandgrowthoftransgenicplantsthatexpressictb,ageneinvolvedinhco3-accumulationincyanobacteria[j].plantbiotechj,2003,1:43-50
|
[40] | 38.wangt,lul,zhangcg,taylorc,thompsonje.pleiotropiceffectsofsuppressingdeoxyhypusinesynthaseexpressioninarabidopsisthaliana[j].plantmolbiol,2003,52:1223-1235
|
[41] | 41.程序.能源牧草堪当未来生物能源之大任[j].草业学报,2008,17(3):1-5
|
Full-Text
|
|
Contact Us
service@oalib.com QQ:3279437679 
WhatsApp +8615387084133
|
|