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1.ChengLL#,WangLQ#,WeiLY,WuY,AftabAlam,XuCB,WangYT,TuYY,PengLC,XiaT*(2019).EmployingwheatmutantstrawdistinctiveforCdphytoremediationandcellulosicethanolcoproductionundercombinedmildchemicalpretreatments.GreenChemistry.2019((IF:9.4、1区SCI,#共同第一作者)
2.HuangJF,XiaT,LiGH,LiXL,LiY,WangYT,WangYM,ChenYY,XieGS,BaiFW,PengLC,WangLQ*(2019).Overproductionofnativeendo-β-1,4-glucanasesleadstolargelyenhancedbiomasssaccharificationandbioethanolproductionbyspecificmodificationofcellulosefeaturesintransgenicrice.BiotechnologyforBiofuels.2019,12:11(IF6.3、1区SCI,*通讯作者)
3.HuZ,ZhangGF,AliMuhammad,RanaAbdulSamad,WangYM,JonathanD.Walton,HeYQ,PengLC,WangLQ*(2018).Geneticlocisimultaneouslycontrollingligninmonomersandbiomassdigestibilityofricestraw.ScientificReports.DOI:10.1038/s41598-018-21741-y(*通讯作者)
4.HuZ,ZhangGF,ChenYY,WangYM,HeYQ,PengLC,WangLQ*.(2018).Determinationofligninmonomercontentsinricestrawusingvisibleandnear-infraredreflectancespectroscopy.Bioresources.DOI:10.15376/biores.13.2.3284-3299(*通讯作者)
5.LiY,LiuP,HuangJF,ZhangR,HuZ,FengSQ,WangYQ,WangLQ,XiaT*,PengLC*.(2018).Mildchemicalpretreatmentsaresufficientforbioethanolproductioninthetransgenicricestrawsoverproducingglucosidase.GreenChemistry.DOI:10.1039/C8GC00694F(IF:9.125)
6.FanCF,FengSQ,HuangJF,WangYQ,WuLM,LiXK,WangLQ,XiaT,LiJY,CaiXW,PengLC*.(2017).AtCesA8-drivenOsSUS3expressionleadstolargelyenhancedbiomasssaccharifcationandlodgingresistancebydistinctivelyalteringlignocellulosefeaturesinrice.BiotechnologyforBiofuels.DOI:10.1186/s13068-017-0911-0
7.Zahoor,SunD,LiY,WangJ,TuYY,WangYQ,HuZ,ZhouSG,WangLQ,XieGS,HuangJJ,AftabAlam,PengLC*.(2017).Biomasssaccharificationislargelyenhancedbyalteringwallpolymerfeaturesandreducingsiliconaccumulationinricecultivarsharvestedfromnitrogenfertilizersupply.BioresourceTechnology.243957–965.
8.Zahoor,TuYY,WangLQ,XiaT,SunD,ZhouSG,WangYQ,ZhangHP,ZhangT,MeysamMadadi,PengLC*.(2017).Mildchemicalpretreatmentsaresufficientforcompletesaccharificationofsteam-explodedresiduesandhighethanolproductionindesirablewheataccessions.BioresourceTechnology.243319–326.
9.LiXK#,GuoK#,ZhuXB,ChenP,LiY,XieGS,WangLQ,WangYT,PerssonS*andPengLC*.Domesticationofricehasreducedtheoccurrenceoftransposableelementswithingenecodingregions.BMCGenomics,2017,18:55DOI10.1186/s12864-016-3454-z.
10.ZhangML,WeiF,GuoK,HuZ,LiYY,XieGS,WangYT,CaiXW,PengLCandWangLQ*.ANovelFC116/BC10MutationDistinctivelyCausesAlterationintheExpressionoftheGenesforCellWallPolymerSynthesisinRice.FrontiersinPlantScience.2016,7:1366.doi:10.3389/fpls.2016.01366(*通讯作者)
11.WuZL,HaoHH,Zahoor,TuYY,HuZ,WeiF,LiuYY,ZhouYX,WangYT,XieGS,GaoCB,CaiXW,PengLCandWangLQ*.DiverseCellWallCompositionandVariedBiomassDigestibilityinWheatStrawforBioenergyFeedstock.BiomassandBioengery,2014(5-YearImpactFactor:4.164)(*通讯作者)
12.GuoK,ZouWH,FengYQ,ZhangML,ZhangJ,TuF,XieGS,WangLQ,WangYT,SebastianKlie,StaffanPerssonandPengLC*.Anintegratedgenomicandmetabolomicframeworkforcellwallbiologyinrice.BMCGenomics,15:596,2014(5-yearIF:4.5)
13.PengB,WangLQ*,FanCC,JiangGH,LuoLJ,LiYBandHeYQ*.Comparativemappingofchalkinesscomponentsinriceusingfivepopulationsacrosstwoenvironments.BMCGenetics,15:49,2014(IF:2.49,*共同通讯作者)
14.PengB#,KongHL#,LiYB,WangLQ,ZhongM,SunL,GaoGJ,ZhangQL,LuoLJ,WangGW,XieWB,ChenJX,YaoW,PengY,LeiL,LianXM,XiaoJH,XuCG,,LiXHandHeYQ*.OsAAP6functionsasanimportantregulatorofgrainproteincontentandnutritionalqualityinrice.NATURECOMMUNICATIONS,2014(IF:10.742)
15.WuZL,ZhangML,WangLQ*,TuYY,ZhangJ,XieGS,ZouWH,LiFC,GuoK,LiQ,GaoCB,PengLC*.Biomassdigestibilityispredominantlyaffectedbythreefactorsofwallpolymerfeaturesdistinctiveinwheataccessionsandricemutants.BiotechnologyforBiofuels,6:183,2013(IF6.5,*共同通讯作者)
16.XieG,YangB,XuZ,LiF,GuoK,XuZ,LiFC,GuoK,ZhangML,WangLQ,ZouWF,WangYT,PengLC*.GlobalIdentificationofMultipleOsGH9FamilyMembersandTheirInvolvementinCelluloseCrystallinityModificationinRice.PLoSONE8(1):e50171.doi:10.1371/journal.pone.0050171,2013
17.WangLQ#,GuoK#,LiY,TuYY,HuHZ,WangBR,CuiXC,PengLC.ExpressionprofilingandintegrativeanalysisoftheCESA/CSLsuperfamilyinrice.BMCplantbiology,2010,10:282(IF:4.09#同等贡献第一作者)
18.WangLQ,ZhongM,LiXH,YuanDJ,XuYB,LiuHF,HeYQ,LuoLJ,ZhangQF.TheQTLcontrollingaminoacidcontentingrainsofrice(Oryzasativa)areco-localizedwiththeregionsinvolvedintheaminoacidmetabolismpathway.Molecularbreeding,2008,21:127-137(第一作者)
19.WangLQ,LiuWJ,XuYB,HeYQ,LuoLJ,ZhangQF.Geneticbasisof17traitsandviscosityparameterscharacterizingtheeatingandcookingqualityofthericegrain.TheorApplGenet,2007,115:463-476(第一作者)
20.ZhongM#,WangLQ#,YuanDJ,LuoLJ,HeYQ.IdentificationofQTLAffectingProteinandAminoAcidContentinRice.RiceScience,2011,18(3)(#同等贡献第一作者)
21.LiYB,WuCJ,JiangGH,WangLQ,HeYQ.Dynamicanalysesofriceblastresistancefortheassessmentofgeneticandenvironmentaleffects.Plantbreeding,2007,126:541-547
22.TianR,JiangGH,ShenLH,WangLQ,HeYQ.MappingquantitativetraitlociunderlyingthecookingandeatingqualityofriceusingaDHpopulation.Molecularbreeding,2005,15:117-124
23.ZhuXB,ZhangGF,WangYM,Staffanpersson,XieGS,WangLQ.Rapid,T-vectorMediated,DirectionalCloningofShortCore-attLAttachedPCRProductsintoGatewaySystem.ChineseJournalofBiochemistryandMolecularBiology,2018(中国生物化学与分子生物学报,*通讯作者)
24.胡炜晨,张同,胡振,王令强*.禾本科植物细胞壁合成调控研究进展[J].江苏农业学报,2017(*通讯作者)
25.李旭凯,彭良才,王令强*.pep_pattern.pl,搜索蛋白质序列模体的perl脚本.华中农业大学学报,4:1-6,2014(*通讯作者)
26.刘扬洋,马丽,周玉霞,刘雪琴,王令强*.2,4-D,Dicamba和KT对小麦成熟胚离体培养的影响.麦类作物学报,34(8):1044-1048,2014(*通讯作者)
27.李旭凯,郭凯,彭良才,王令强*.ChooseMaterials.pl,控制变量挑选实验材料的perl脚本.生物信息学,2013,11(3):186-191(*通讯作者)
28.王川丽,王令强,牟同敏*.水稻脆性突变体nbc(t)的主要特性和脆性基因的初步定位.华中农业大学学报,31:159-164,2012
29.孔会利,刘文俊,王令强,高冠军,何予卿*.水稻株高QTLQph1的精细定位.华中农业大学学报,31:265-269,2012
30.刘文俊,王令强,何予卿.利用两个相关群体定位和比较水稻株高和抽穗期QTL.华中农业大学学报,2007,26:161-166
31.钟明,王令强,罗利军,何予卿.利用RIL群体比较定位糙米和精米蛋白质含量的QTL.分子植物育种,2007,5:631-638
32.黄天带,吴江生,王令强,华玉伟.甘蓝型油菜矮秆突变体的遗传及其矮秆基因的RAPD标记.农业生物技术学报,2006,14:942-945
33.彭良才,王炳锐,夏涛,王令强.植物细胞壁功能基因组学与生物能源作物选育.遗传,2007,29(10)