Introgressions from Oryza rufipogon Increase Photosynthetic Efficiency of KMR3 Rice Lines

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摘要 TounderstandthewildOryzagenomeeffectonphotosynthesisanditsrelationtototaldrymatteraccumulationinanelitericevariety,asetof40stableintrogressionlines(ILs)BC3F8derivedfromacrossofOryzasativa(KMR3)×Oryzarufipogon(WR120)weregrownunderwellwateredconditions.Leafgasexchangemeasurementsandleafchlorophyllestimateswereconductedatthefloweringstage.Theresultsrevealedsignificantvariationsinnetphotosyntheticrate(Pn),transpirationrate(E),transpirationefficiency(Pn/E)andcarboxylationefficiency(Pn/Ci).PnshowedsignificantpositivecorrelationwithE,stomatalconductance(gs),Pn/Ciandtotalcanopydrymatter.SpecificleafareaandleafthicknesswerenotsignificantlycorrelatedwithPn.Thirty-sevenoutof40ILsshowedhigherPnthanKMR3[11.28μmol/(m2·s)],and20ILsshowedhigherPnthanWR120[15.08μmol/(m2·s)].ThelineIL194showedthehighestPn[21.62μmol/(m2·s)]withincreasedtotalcanopydrymatterfollowedbylinesIL381,IL106,IL363-12,IL198,IL86-18andIL50,whichexhibitedPnabove18.0μmol/(m2·s).TheILswithenhancedPnareapotentialsourcefordevelopingricevarietiesandhybridswithhigherbiomassandyield.
机构地区 不详
出处 《水稻科学:英文版》 2017年2期
出版日期 2017年02月12日(中国期刊网平台首次上网日期,不代表论文的发表时间)
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