研究领域
研究方向
1.植物光合作用及分子调控
2.植物抗逆性的生理及分子机制
3.小麦光合作用与高光效种质的筛选
科研项目
1.国家自然科学基金:高温胁迫下甜菜碱促进光系统II修复循环机理研究(31470341),2015-2018.
2.国家自然科学基金:小麦近等基因系光合速率差异的生理基础及分子机制(31271634),2013-2016.
3.国家自然科学基金:甜菜碱提高转基因植物耐热性的生理及分子机制(30970229),2010-2012.
4.国家自然科学基金:转BADH基因烟草光合作用对干旱强光的响应(30370849),2004-2006.
5.教育部博士点基金:甜菜碱介导的转基因植物的耐热性与钙离子信号转导和热激蛋白的关系(20103702110007),2011-2013.
6.国际合作项目:提高作物对高温干旱胁迫抗性机制及抗性评价新方法:国际表型平台的建立(7-7),2016-2017
7.国际合作项目:利用多学科整合技术研究提高中国和斯洛伐克主要作物对干旱高温的抗性(5-7),2010-2011.
8.国际合作项目:光合机构适应环境胁迫的分子及生态机制(3-7),2005-2006.
9.山东省中青年科学家奖励基金:转BADH基因烟草提高光合作用对高温抗性机制(2006BS02019),2006-2008.
10.参加973项目:“光合作用分子机制与作物高光效品种选育”(2015CB150100),2015-2019.
11.参加973项目:“光合作用分子机理及其在农业生产中应用的基础研究”(2009CB118500),2009-2013.
12.参加国家863课题:小麦重要农艺性状功能基因组研究(2012AA10A309),2012-2015.
国际交流与合作
与斯洛伐克尼特拉农业大学Brestic教授实验室建立合作关系,主要研究光合机构适应环境胁迫的生理及分子机制及小麦抗逆性。
与美国俄勒冈州立大学Chen教授实验室建立合作关系,主要研究甜菜碱提高转基因植物抗逆性的生理及分子机制以及利用基因工程马铃薯抗逆性及产量
近期论文
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1.DandanWei,WenZhang,CuicuiWang,QingweiMeng,GangLi,TonyH.H.Chen,XinghongYang*(2017)Geneticengineeringofthebiosynthesisofglycinebetaineleadstoalleviatesalt-inducedpotassiumeffluxandenhancessalttoleranceintomatoplants.PlantScience,257:74-83
2.DongyueYang,Mengli,NanaMa,XinghongYang**,QingweiMeng*(2017)TomatoSlGGP-LIKEgeneparticipatesinplantresponsestochillingstressandpathogenicinfection.PlantPhysiologyandBiochemistry.112:218-226
3.DongyueYang,NanaMa,KunyangZhuang,ShaoboZhu,ZhongmingLiu,XinghongYang∗(2017)OverexpressionoftomatoSlGGP-LIKEgeneimprovestobaccotolerancetomethylviologenmediatedoxidativestress.JournalofPlantPhysiology,209:31–41
4.YongjiangSun,QingweiGeng,YuanpengDu,XinghongYang,HengZhai(2017)InductionofcyclicelectronflowaroundphotosystemIduringheatstressingrapeleaves.PlantScience,256:65-71
5.YangLiu,JiananLiang,LipingSun,XinghongYang,DequanLi(2016)Group3LEAprotein,ZMLEA3,isinvolvedinprotectionfromlowtemperaturestress.FrontiersinPlantScience,7:1-10
6.MeifangLi,SangjingGuo,XinghongYang,QingweiMeng,X.J.Wei(2016)Exogenousgamma-aminobutyricacidincreasessalttoleranceofwheatbyimprovingphotosynthesisandenhancingactivitiesofantioxidantenzymes.BiologiaPlantarum,60:123-131.2016.1
7.BaoshanWang,MingyangMa,HaiguoLu,QingweiMeng,GangLi,XinghongYang*(2015)Photosynthesis,sucrosemetabolism,andstarchaccumulationintwoNILsofwinterwheat.PhotosynthesisResearch,126:363-373
8.HaiouDou,KunPengXv,QingweiMeng,GangLi,XinghongYang*(2014)PotatoplantsectopicallyexpressingArabidopsisthalianaCBF3exhibitenhancedtolerancetohigh-temperaturestress.PlantCell&Environment,38:61-72
9.Mei-FangLi,Shang-JingGuo,YingXu,QingweiMeng,GangLi,Xing-HongYang*(2014)Glycinebetaine-mediatedpotentiationofHSPgeneexpressioninvolvedcalciumsignalingpathwaysintobaccoexposedtoNaClstress.PhysiologiaPlantarum,150:63-75
10.MeifangLi,ZhimeiLi,ShufenLi,ShangjingGuo,QingwmengMeng,GangLi,XinghongYang*(2014)Geneticengineeringofglycinebetainebiosynthesisreducestheheat-enhancedphotoinhibitionbyenhancingantioxidativedefenseandalleviatinglipidperoxidationintomato.PlantMolBiolRep,32:42-51
11.MarekZivcak,MarianBrestic,ZuzanaBalatova,PetraDrevenakova,KatarianaOlsovska,HazemM.Kalaji,XinghongYang,SuleymanI.Allakhverdiev(2013)Photosyntheticelectrontransportandspecificphotoprotectiveresponseinwheatleavesunderdroughtstress.PhotsynthRes,117:529-546
12.LipingSun,YangLiu,XiangpeiKong,DanZhang,JiaowenPan,YanZhou,LiWang,DequanLi,XinghongYang*(2012)ZmHSP16.9,acytosolicclassIsmallheatshockproteininmaize(Zeamays),confersheattoleranceintransgenictobacco.PlantCellReports,31:1473–1484
13.MeifangLi,LushaJi,XinghongYang,QingweiMeng,ShangjingGuo(2012)TheprotectivemechanismsofCaHSP26intransgenictobaccotoalleviatephotoinhibitionofPSIIduringchillingstress.PlantCellReports,31:1969-1979
14.ShufenLi,FengLi,JianweiWang,WenZhang,QingweiMeng,TonyHHChen,NorioMurataandXinghongYang*(2011)Glycinebetaineenhancesthetoleranceoftomatoplantstohightemperatureduringgerminationofseedsandgrowthofseedlings.PlantCellandEnvironment,34:1931-1943
15.WeiTan,QingweiMeng,MarianBrestic,KatarinaOlsovska,XinghongYang*(2011)Photosynthesisisimprovedbyexogenouscalciuminheat-stressedtobaccoplants.JournalofPlantPhysiology,168:2063-2071
16.NingWang,HailongFeng,QiuyueZhang,XinghongYang,QingweiMeng(2010)Antisense-mediatedsuppressionoftomatozeaxanthinepoxidasealleviatesphotoinhibitionofPSIIandPSIduringchillingstressunderlowirradiance.Photosynthetica,48:409-416
17.FengLi,QingyunWu,YanliSun,LiyanWang,XinghongYang,QingweiMeng(2010)Overexpressionofchloroplasticmonodehydroascorbatereductaseenhancedtolerancetotemperatureandmethylviologen-mediatedoxidativestresses.PhysiologiaPlantarum,139:421-434
18.XinghongYang,ZhengLiang,XiaogangWen,CongmingLu(2008)Geneticengineeringofthebiosynthesisofglycinebetaineleadstoincreasedtoleranceofphotosynthesistosaltstressintransgenictobaccoplants.PlantMolecularBiology,66:73-86
19.JiangZhang,WeiTan,XinghongYang,HongxiaZhang(2008)Plastid-expressedcholinemonooxygenasegeneimprovessaltanddroughttolerancethroughaccumulationofglycinebetaineintobacco.PlantCellReports,27:1113-1124
20.XinghongYang,XiaogangWen,HongmeiGong,QingtaoLu,ZhipanYang,YunlaiTang,ZhengLiang,CongmingLu(2007)GeneticengineeringofthebiosynthesisofglycinebetaineenhancesthermotoleranceofphotosystemIIintobaccoplant.Planta,225:719-733
21.XinghongYang,XiaoyingChen,QiaoyingGe,BinLi,YipingTong,AiminZhang,ZhenshengLi,TingyunKuang,CongmingLu(2007)Characterizationofphotosynthesisofflagleavesinwheathybridanditsparentsgrownunderfieldconditions.JournalofPlantPhysiology,164:318-326
22.XinghongYang,CongmingLu(2006)Effectsofexogenousglycinebetaineongrowth,CO2assimilation,andphotosystemIIphotochemistryofmaizeplants.Physiologia.Plantarum,127:593-602
23.XinghongYang,XiaoyingChen,QiaoyingGe,BinLi,YipingTong,AiminZhang,ZhenshengLi,TingyunKuang,CongmingLu(2006)Toleranceofphotosynthesistophotoinhibition,hightemperatureanddroughtstressinflagleavesofwheat:Acomparisonbetweenahybridizationlineanditsparentsgrownunderfieldconditions.PlantScience,171:389-397
24.XinghongYang,ZhengLiang,CongmingLu(2005)GeneticEngineeringoftheBiosynthesisofGlycinebetaineEnhancesPhotosynthesisagainstHighTemperatureStressinTransgenicTobaccoPlants.PlantPhysiology,138:2299-2309
25.XinghongYang,CongmingLu(2005)Photosynthesisisimprovedbyexogenousglycinebetaineinsalt-stressedmaizeplants.PhysiologiaPlantarum,124:343–352
26.XingjunLi,JihuaHou,KezhiBai,XinghongYang,JinxingLin,ZhenshengLi,TingyunKuang(2004)Activityanddistributionofcarbonicanhydraseinleafandearpartsofwheat(TriticumaestivumL.).PlantScience,166:627-632
27.XinghongYang,WeiWang,QiZou(2001).Photoinhibitioninshadedcottonleavesafterexposingtohighlightandthetimecourseofitsrestoration.ActaBotanicaSinica.43:1255-1259
28.张会玲,MarianBrestic,KatarinaOlsovska,李刚,孟庆伟,杨兴洪*(2015)高温胁迫下不同热敏感性小麦光化学活性和能量分配差异.植物生理学报,51:1142-1150
29.李枝梅,窦海鸥,卫丹丹,孟庆伟,TonyHuihuangCHEN,杨兴洪*(2013)转codA基因提高番茄植株的耐热性.作物学报,39:2046−2054
30.谭伟,李庆亮,罗音,王玮,杨兴洪*(2009)CaCl2预处理对高温胁迫烟草叶片光合作用的影响.中国农业科学,42:3871-3879