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混合盐碱胁迫对芸芥生长发育和生理性状的影响
引用本文:范惠玲,白生文,刘钊,李振洲,何志军,朱雪峰,秦明岗.混合盐碱胁迫对芸芥生长发育和生理性状的影响[J].中国油料作物学报,2018,40(4):544.
作者姓名:范惠玲  白生文  刘钊  李振洲  何志军  朱雪峰  秦明岗
作者单位:河西学院农业与生物技术学院,甘肃张掖,734000
基金项目:甘肃省高等学校科研项目(2017A-083);河西学院校长科研创新基金项目(XZ2015-13)
摘    要:为评价不同生长期芸芥对混合盐碱胁迫的耐受性及相应的生理机制,采用不同浓度的混合盐碱溶液分别进行种子萌发期、苗期及成株期胁迫试验。结果表明:(1)在种子萌发期,低浓度(20和30mmol·L-1)混合盐碱胁迫仅延迟了芸芥种子的萌发时间,对种子活力的影响较小;40 mmol·L-1盐碱胁迫下,发芽势和发芽率均显著低于对照值;≥50 mmol·L-1盐碱处理下,种子完全丧失活力。(2)苗期叶片相对含水量与盐碱浓度和胁迫时间均呈负相关,盐碱浓度≥40 mmol·L-1,相对含水量显著下降,而丙二醛含量显著升高;随盐碱浓度增加及胁迫时间延长,叶片可溶性糖和脯氨酸含量总体呈增加趋势,而可溶性蛋白含量却逐渐降低,说明芸芥幼苗对盐碱胁迫的适应在一定程度上主要取决于可溶性糖和脯氨酸等有机物质的积累;(3)成株期低浓度胁迫对株高和开花期影响不显著,≥40 mmol·L-1盐碱胁迫时,株高降低,开花期延迟,单株角果数少,部分种子很瘪或只能看到败育残基。60 mmol·L-1胁迫下植株能存活,但不能开花结实,70 mmol·L-1胁迫则严重抑制了营养生长和生殖生长,甚至死亡。混合盐碱胁迫对芸芥根长、鲜重、干重和含水量均有一定的抑制作用,对根重影响显著,低浓度胁迫促进根的伸长,盐碱浓度≥40 mmol·L-1时,根长逐渐变短,显著低于对照。总之,萌发期和成株期芸芥对NaCl +Na2SO4 + NaHCO3+Na2CO3混合盐碱胁迫的耐受性不同,苗期可溶性糖和脯氨酸作为主要的调节物质在芸芥适应较高浓度盐碱逆境中起到了重要作用。

关 键 词:芸芥  混合盐碱  萌发期  幼苗期  成株期  生长发育  生理机制  

Effectsofmixedsalt-alkalineongrowthandphysiologicalcharacteristicsinErucasativa
FANHui-ling,BAISheng-wen,LIUZhao,LIZhen-zhou,HEZhi-jun,ZHUXue-feng,QINMing-gang.Effectsofmixedsalt-alkalineongrowthandphysiologicalcharacteristicsinErucasativa[J].Chinese Journal of Oil Crop Sciences,2018,40(4):544.
Authors:FANHui-ling  BAISheng-wen  LIUZhao  LIZhen-zhou  HEZhi-jun  ZHUXue-feng  QINMing-gang
Institution:CollegeofAgricultureandBiotechnology,HexiUniversity,Zhangye734099,China
Abstract:ToassessthetoleranceofE.sativatomixedsalt-alkalineindifferentgrowthphase,andtoreveal physiologicalmechanismsrespondingtosalt-alkalinestress,theexperimentswereconductedusingdifferentcon centrationofsalt-alkalineduringgermination,seedlingstageandadultstage.Ourresultsshowedthat:(1)At germinationstage,initialgerminationwasdelayedbuttheseedvigorwasnotlostwhenstressedunderlowconcen trationof20mmol·L-1and30mmol·L-1mixedsalt-alkaline.Under40mmol·L-1salt-alkalinestress,the germinationpotentialityandgerminationrateweresignificantlylowerthanthatofthecontrolgroup.Whenthecon centrationwashigherthan50mmol·L-1,theseedvigorwerelostcompletely.(2)Relativewatercontentofleaves (RWC)hadnegativecorrelationwiththelevelofsalt-alkalineconcentrationandthestresstime.Whenthesaltalkalineconcentrationwashigherthan40mmol ·L-1,RWCwasdecreasedsignificantly,butmalondialdehyde (MDA)contentwasincreasedobviously.Bothprolineandsolublesugarcontentweresignificantlyincreasedwith theincreasingofsalt-alkalineconcentrationandtimeprolong,butthesolubleproteincontentwasreducedgradu ally,whichindicatedthattheadaptationofE.sativaseedlingtosaline-alkalistressdependedpartlyontheaccu mulationoforganicmaterialsuchassolublesugarandprolineetc.(3)Atadultstage,effectsofsalt-alkaline stressonplantheightandfloweringperiodwereconsidered,therewerenosignificantlydifferencebetweentheex perimentalgroupandcontrolgroupwhenconcentrationofsalt-alkalinewaslow(20and30mmol·L-1).When salt-alkalineconcentrationwas40mmol·L-1to50mmol·L-1,comparedwithCK,theexperimentalgrouppres entedshorterplantsheight,delayedfloweringperiodandlessnumberofefficienthornsperplant.E.sativafailedto seedwhentheconcentrationofsalt-alkalinewas60mmol·L-1.Vegetativeandreproductivegrowthwereinhibitedseriously,orevendeathastheconcentrationofsalt-alkalinewas70mmol·L-1.Rootlength,freshweight, dryweightandwatercontentwereinhibitedundersalt-alkalinestressofdifferentconcentrations,especiallythe freshrootweight.Whentheconcentrationwaslessthan30mmol·L-1,rootlengthwaslongerthanCK,whileit wassignificantlyshorterthanCKwhentheconcentrationwashigherthan40mmol·L-1.Inconclusion,salt-al kaline(NaCl+Na2SO4+NaHCO3+Na2CO3)toleranceinE.sativaatgerminationstageandadultstageweredifferent,solublesugarandprolineasthemainorganicsubstancesplayedanimportantroleinadaptingtohighsaltalkalinestress.
Keywords:Erucasativa  mixedsalt-alkaline  germinationstage  seedlingstage  adultstage  growthand development  physiologicalmechanisms  
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