东北农业大学学报
東北農業大學學報
동북농업대학학보
JOURNAL OF NORTHEAST AGRICULTURAL UNIVERSITY
2014年
11期
28-36,42
,共10页
李敬蕊%杨丽文%王春燕%高洪波%吴晓蕾
李敬蕊%楊麗文%王春燕%高洪波%吳曉蕾
리경예%양려문%왕춘연%고홍파%오효뢰
γ-氨基丁酸%低氧胁迫%甜瓜%抗氧化酶活性%同工酶表达%基因表达
γ-氨基丁痠%低氧脅迫%甜瓜%抗氧化酶活性%同工酶錶達%基因錶達
γ-안기정산%저양협박%첨과%항양화매활성%동공매표체%기인표체
γ-aminobutyric acid%hypoxia stress%melon%antioxdative enzyme activity%isozyme expression%gene expression
采用营养液水培方法,研究低氧胁迫下外源GABA对甜瓜幼苗抗氧化酶(SOD、POD、CAT和APX)活性和同工酶表达的影响,采用实时荧光定量PCR方法检测幼苗根系抗氧化酶的基因表达特性。结果表明,低氧胁迫处理下,幼苗根系和叶片抗氧化酶活性和同工酶表达均高于对照,且根系CmSOD、CmPOD1、CmPOD2、CmCAT、CmAPX基因均上调表达;低氧胁迫下外源GABA处理显著提高幼苗根系和叶片SOD、CAT和APX活性以及同工酶表达,且根系CmSOD、CmCAT、CmAPX基因相对表达量在0.5~1 d迅速提高并达到最大值,且增加幅度高于低氧胁迫处理。由此可知,GABA通过促进根系抗氧化酶基因快速大量表达,提高抗氧化酶活性和同工酶的表达量,从而缓解低氧胁迫对甜瓜幼苗的伤害。
採用營養液水培方法,研究低氧脅迫下外源GABA對甜瓜幼苗抗氧化酶(SOD、POD、CAT和APX)活性和同工酶錶達的影響,採用實時熒光定量PCR方法檢測幼苗根繫抗氧化酶的基因錶達特性。結果錶明,低氧脅迫處理下,幼苗根繫和葉片抗氧化酶活性和同工酶錶達均高于對照,且根繫CmSOD、CmPOD1、CmPOD2、CmCAT、CmAPX基因均上調錶達;低氧脅迫下外源GABA處理顯著提高幼苗根繫和葉片SOD、CAT和APX活性以及同工酶錶達,且根繫CmSOD、CmCAT、CmAPX基因相對錶達量在0.5~1 d迅速提高併達到最大值,且增加幅度高于低氧脅迫處理。由此可知,GABA通過促進根繫抗氧化酶基因快速大量錶達,提高抗氧化酶活性和同工酶的錶達量,從而緩解低氧脅迫對甜瓜幼苗的傷害。
채용영양액수배방법,연구저양협박하외원GABA대첨과유묘항양화매(SOD、POD、CAT화APX)활성화동공매표체적영향,채용실시형광정량PCR방법검측유묘근계항양화매적기인표체특성。결과표명,저양협박처리하,유묘근계화협편항양화매활성화동공매표체균고우대조,차근계CmSOD、CmPOD1、CmPOD2、CmCAT、CmAPX기인균상조표체;저양협박하외원GABA처리현저제고유묘근계화협편SOD、CAT화APX활성이급동공매표체,차근계CmSOD、CmCAT、CmAPX기인상대표체량재0.5~1 d신속제고병체도최대치,차증가폭도고우저양협박처리。유차가지,GABA통과촉진근계항양화매기인쾌속대량표체,제고항양화매활성화동공매적표체량,종이완해저양협박대첨과유묘적상해。
This paper investigated the effects of exogenous γ-aminobutyric acid on antioxdative enzyme (SOD, POD, CAT and APX) activities and isozyme expression of melon seedlings under hypoxia stress with hydroponics culture. Meanwhile the characteristics of antioxdative enzyme gene expression of melon seedlings roots were detected by the real-time fluorescent quantitative (RT-PCR). The results showed that the antioxdative enzyme activities and isozyme expression in melon seedlings roots and leaves were higher under hypoxia stress than those under normoxic treatment (control) as wel as the gene expression of CmSOD, CmPOD1, CmPOD2, CmCAT, CmAPX in melon roots were up-regulated. Exogenous GABA application under hypoxia stress could significantly increased the activities and isozyme expression of SOD,CAT and APX in seedlings roots and leaves. Futhermore, the gene expression levels of CmSOD, CmCAT, CmAPX in roots rapid increased and reached the maximum value after 0.5-1 d with GABA application under hypoxia stress, that increasing extent higher than hypoxia stress treatment. The results suggested that exogenous GABA al eviated the harm of hypoxia tolerance in melon seedlings by promoting rapidly and largely antioxdative enzyme gene expression as wel as increasing antioxdative enzyme activities and isozyme expression in melon seedlings.