期刊文献+

H_2O_2和NO对反季节龙眼成花及AP1基因表达的影响

Effect of H_2O_2 and NO on AP1 Gene Expression and Out of Season Flower Bud Formation in Longan
在线阅读 下载PDF
导出
摘要 为阐明H2O2和NO对龙眼成花及AP1基因表达的影响,选用9年生反季节储良龙眼结合H2O2和NO促进剂及信号阻断剂喷施,分析成花及AP1基因表达量的动态变化。结果表明,反季节龙眼AP1基因在成花过程中表达量上升,而SNP和MV处理均不同程度上调了侧花原基形成时顶芽和叶片中AP1基因的表达,尤以SNP处理效果最为显著;DMTU处理显著抑制了侧花原基形成时顶芽和叶片中AP1基因的表达,L-NNA处理对侧花原基形成时叶片AP1基因表达有轻微的抑制作用,对顶芽AP1基因表达影响不大。结合龙眼成花情况,推断加强NO、H2O2信号有助于促进龙眼成花,而阻断H2O2信号将抑制龙眼成花。 To analysis the effect of H2O2 and NO on floral bud formation and AP1 gene expression,the solution of H2O2 and NO enhancer,and signal transduction blockers were sprayed on 9-year-old‘Chuliang'longan trees at out of season.Results showed that AP1 gene expression was increased.SNP and MV were more or less raised the expression of AP1 gene,especially the effect of SNP was the most significant.DMTU effectively inhibited the expression of AP1 gene.L-NNA slightly inhibited the expression of AP1 gene in leaves.However,it had little effect on expression of AP1 gene in terminal buds.Combined with the flower formation in longan,we speculated that increase of the NO and H2O2 signal could contribute to the formation of the flower in longan,while blocking the H2O2 signal would suppress the formation of flower.
出处 《中国南方果树》 北大核心 2016年第1期13-17,共5页 South China Fruits
基金 中央级公益性科研院所基本科研业务费专项资金(1630032014017) 现代农业产业技术体系专项资金项目(CARS-33-25) 公益性行业(农业)科研专项"农业野生植物资源保护利用技术研究与示范"(201003021)资助
关键词 龙眼 成花 H2O2 NO AP1基因 longan flower bud formation hydrogen peroxide(H2O2) nitric oxide(NO) AP1 gene
  • 相关文献

参考文献20

  • 1黄旭明,陆洁梅,王惠聪.氯酸盐在龙眼生产上的运用和研究现状[J].中国南方果树,2004,33(3):29-30. 被引量:10
  • 2AIRAKI M,I.ETERRIER M,MATEOS R M,et al. Metabolism of reactive oxygen species and reactive nitrogen species in pepper (Capsicum annuum L. ) plants under low temperature stress[J]. Plant Cell Environment,2012,35(2) :281-295.
  • 3PASTORI G,FOYER (C H, MUI.LINEAUX P. Low temperature-induced changes in the distribution of H2 O2 and antioxidants between the bundle sheath and mesophyll cells of maize leaves[J]. Experimental Bot- any,2000,51(342): 107-113.
  • 4VANDERAUWERA S, ZIMMERMANN P, ROM- BAUTA S, et al. Genome wide analysis of hydrogen peroxide-regulated gene expression in Arabidopsis re- veals a high light-induced transcriptional cluster in- volved in anthoeyanin biosynthesis[J].Plant Physiol- ogy,2005,139(2) :806-821.
  • 5ZAFRA A,RODRIC-UEZ-GARCIA M I, ALCHE J D. Cellular localization of ROS and NO in olive repro- ductive tissues during flower development [J]. BMC Plant Biology, 2010,10 : 36.
  • 6I.()KHANDE S D,OGAWA K,TANAKA A,et al. Effect of temperature on ascorbate peroxidase activity and flowering of Arabidopsis thaliana ecotypes under different light conditions[J]. Plant Physiology, 2003, 160(1):57- 64.
  • 7BALAZADEH S,JASPERT N.ARIF M,et al. Ex- pression of ROS-responsive genes and transcription factors after metabolic formation of H2O2 in chloro- plasts[J]. Frontiers m Planl Science, 2012,3 : 234.
  • 8DEL R D, SERAFINI M, PELI.EGRINI N. Selected methodologies to assess oxidative/antioxidant status in vivo: a critical review[J]. Nutrition Metabolism and Cardiovascular Diseases,2002,12(6):343-351.
  • 9ZHOU B, LI N,ZHANG Z, et al. Hydrogen peroxide and nitric oxide promote reproductive growth in Litchi chinensis [J]~. Biologia Plantarum, 2012,56 ( 2 ): 321-329.
  • 10KAUFMANN K, NAGASAKI M, JAUREGUI R,Modelling the molecular interactions in the flower de- velopmental network of Arabidopsis thaliana [ J ]. Studies in Health Technology and Informaties, 2011, 162:279-297.

二级参考文献74

  • 1杨东霞.不同浓度Na_2SO_3处理对大花惠兰叶片内SOD、CAT活性的影响[J].辽东学院学报(自然科学版),2007,14(2):77-79. 被引量:3
  • 2[13]Shepard K A,Purugganan M D.The genetics of plant morpho logical evolution.Curr Opin Plant Biol,2002,5:49 ~ 55.
  • 3[14]Ruiz-Garcia L,Maduéno F,Wilkinson M,Haughn G,Salinas J,Martines-Zapater J M.Different roles of flowering-time genes in the activation of floral initiation genes in Arabidopsis.Plant Cell,1997,9:1921~1934.
  • 4[15]Coen E S,Carpenter R.The metamorphosis.Plant Cell,1993,5:1175~1181.
  • 5[16]Chen L J,Cheng J G,Castle L,Sung Z R.EMF genes regulate Arabidopsis inflorescence development.Plant Cell,1997,9:2011~2024.
  • 6[17]Yanofsky M F.Floral meristems to floral organ:Genes control ling early events in Arabidopsis flower development.Annu Rev Plant Physiol Plant Mol Biol,1995,46:167~ 188.
  • 7[18]Shannon S,Meeks-Wagner Dry.Genetic interaction that regu lates inflorescence development in Arabidopsis.Plant Cell,1993,5:639~655.
  • 8[19]Mandel M A,Yanofsky M F.A gene triggering flower forma tion in Arabidopsis.Nature,1995a,377:522~524.
  • 9[20]Mizukami Y,Ma H.Determination of Arabidopsis floral meri stem identity by AGAMOUS.Plant Cell,1997,9:393 ~ 408.
  • 10[21]Mandel M A,Yanofsky M F.The Arabidopsis AGL8 MADS box gene is expressed in inflorescence meristems and is nega tively regulated by APETALA1.Plant Cell,1995b,7:1763~ 1771.

共引文献49

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部