46Department ofDepartment ofOutlook for researchIexpectthatmylab’sresearchcouldbecomeanimportantelementinavoidingfoodandenergyshortagesthatareexpectedinthenearfutureifwecanapplyknowledgeobtainedfrombasicplantsciencetobreedsalt-tolerantplants.Outlook for students after graduationManyofthestudentsinmylabchoosetopursuecareerswithcompanieswhoseworkinvolvesplants.Graduatesalsotendtobeinterestedinworkingforthatdevelopdistinctiveenvironmentaltechnologiesorinbecomingteachers.Outlook for researchIbelievethatunderstandingthestateofenvironmentalcontaminationwhiledevelopingpurificationmethodsisessentialforthefutureofhumanity.Throughenvironmentalanalysisandresearchonpurification,Ihopetoobtainresultsinaddressingnumerousenvironmentalproblems.thatproveusefulOutlook for students after graduationIcarryouteducationandresearchtotraininthenextstudentstobecomeleadersgenerationofenvironmentalresearchandmeasures.Graduatesareemployedaspublicofficialsinenvironmentalanalysisandinspection.andbyWild type hkt1;1mutant ProfessorHORIETomoakiProfessorHorietookhiscurrentpositionin2010afterworkingasaresearcherattheUniversityofCalifornia,SanDiego,andasanassistantprofessoronspecialcontractwiththeInstituteofPlantScienceatOkayamaUniversity,andthenasanassociateprofessoratShinshuUniversity.Hisresearchcentersonthebasicmolecularphysiologyofplantsandplantgeneticandcellularengineeringbasedonit.ProfessorMORIWAKIHiroshiProfessorMoriwakitookhiscurrentpositionin2015afterworkingasaresearcherattheOsakaCityInstituteofPublicEnvironmentalSciencesandasanassociateprofessoratFacultyofTextileScienceandTechnologyatShinshuUniversity.Hisareasofresearchincludeenvironmentalchemistryandanalyticalchemistrywithaofenvironmentalpurificationandanalysismethodsaswellasenvironmentalmonitoring.Iamcarryingoutresearchinawiderangeofdomainsrelatedtoenvironmentalcontamination,fromenvironmentalanalysisandtoxicologicaltestingtothedevelopmentofenvironmentalpurificationmethods.Thiseffortincludesnumerousactivities,forexampleanalyzinglitterandsearchingincavesformicroorganismsthatmightbeusefulinenvironmentalpurification.Inrecentyears,mylabhasbeenfocusingonthedevelopmentofenvironmentalpurificationmethodsthatusematerialsproducedbylivingthings.Iinvestigatethemolecularmechanismsbymeansofwhichplantsprotectthemselvesfromsalinitystress(high-saltenvironments)usingtheexperimentalmethodsofmolecularbiology,moleculargenetics,andplantphysiology.Ihopetodevelopinnovativetechnologytogeneratesalt-resistantcropsinordertoincreaseagriculturalyieldsinsalt-affectedareas.ResourcesandandHealthdevelopmentfocusonthecompaniescompaniesengagedMylabfocusesonriceandplantsinthegeniusArabidopsisformolecularphysiologicalstudiesusingwild-typeandNa+transporter-mutantplants.Thepictureshowsanexampleofahydroponiccultureofriceplants.WeanalyzethetargetNa+transporterthatisessentialforplantsalttoleranceintheoocyteexpressionsystemofXenopuslaevis.WeareattemptingtoproducemutagenizedNa+transporters,whichweexpecttoincreasethesalttoleranceofthehostplants.Throughouttheworld,countlesschildrencontractcommunicablediseasesbecausetheydonothaveaccesstosafewater.Inthisway,purificationisanextremelyimportantresearchtopic.WeanalyzedmudfromthemoatofOsakaCastletorecreate350yearsinthehistoryoftheatmosphericenvironment.Theaerialbombingduringthewarcausedthegreatestdamagetotheenvironment.Applied BiologyApplied BiologyLearning from the environment through environmental analysis and developing new environmental purification methods using materials creating by living organismsCreating new plants based on knowledge of basic plant science in order to contribute to the development of a sustainable society
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