期刊文献+

转DREB1A基因地被菊花Fall Color后代综合性状及耐寒性检测 被引量:3

Analysis of Comprehensive Traits and Cold Tolerance in DREB1A Transgenic Progeny of Chrysanthemum Fall Color
下载PDF
导出
摘要 以转35S和rd29A启动子驱动的AtDREB1A基因地被菊花植株为试材,以组织培养微扦插的方式进行繁殖,对获得的转基因各株系无性后代进行性状观察及自然低温条件下的抗性检测。结果表明,转基因株系以茎段为外植体进行组织培养扩繁,植株在大田中移栽成活率高且能够正常生长,与野生型相比,转基因植株株高、冠幅、分枝角度性状存在表型差异,而花期、花色不存在表型差异;转基因各株系在低温胁迫下相对电导率和膜伤害率均明显降低,表明转基因株系增强了对低温的胁迫耐性;2007年冬季转基因株系存活率高,露地越冬能力也明显增强。 In the previous work,we have got the rd29A: AtDREB1A and 35S: AtDREBIA (Dehydration Responsive Element Binding Protein) transgenic groundcover chrysanthemum Fall Color, the lines have stronger tolerance to cold, drought and high salt stress than wild type (WT) plants. In this study,these transgenic lines propagated with tissue culture were used to observe the character and to test the tolerance under low temperature condition. The results showed that using the stem segments as explant,the propagated plants grew well with high transplant survival rate in field, compared with WT plants, the transgenie lines showed phenotypie differences in height, crown width, and branching angle but no differences in flowering time and flower color; the transgenic plants exhibited tolerance to cold stress with obviously lower relative electric conductivity and membrane damage rate of leaves as well as higher survival rate and enhanced overwintering ability in 2007.
出处 《西北农业学报》 CAS CSCD 北大核心 2010年第6期163-169,共7页 Acta Agriculturae Boreali-occidentalis Sinica
基金 国家林业局“948”项目(2006-4-14)
关键词 地被菊花 DREB1A基因 性状 抗寒性 Groundcover chrysanthemum DREB1A gene Phenotype Cold tolerance
  • 相关文献

参考文献17

  • 1王彭伟,陈俊愉.地被菊新品种选育研究[J].园艺学报,1990,17(3):223-228. 被引量:60
  • 2Liu Q,Kasuga M,Sakuma Y,et al.Two transcription factors,DREB1 and DREB2,with an EREBP/AP2 DNA binding domain seperate two cellular signal transduction pathways in drought and low temperature-responsive gene expression,respectively,in Arabidopsis[J].Plant Cell,1998,10:1391-1406.
  • 3Kasuga M,Miura S,Shinozaki K,et al.Acombination of the Arabidopsis DREB1A gene,stress-inducible rd29A promoter improved drought,low-temperature stress tolerance in tobacco by gene transfer[J].Plant Cell Physiol,2004,45:346-350.
  • 4Riechmann J L,Heard J,Martin G,et al.Arabidopsis transcriptional factors:genome-wide comparative analysis amongeukaryotes[J].Science,2000,290:2105-2109.
  • 5Shirasawa N,Iwai T,Nakamura S,et al.Transformation and transgene expression of Chrysanthemum(Dendranthema grandifllora(Ramat.)Kitamura)[J].Bull Miyagi Prefect Agric Res Cent,2000,67:15-20.
  • 6Karle R.Transient expression of a foreign gene in Chrysanthemum protoplasts[J].Latvijas Zinatnu Akademijas,1993(1):62-64.
  • 7Jeong J H,Chakrabarty D,Kim S J,et al.Transformation of Chrysanthemum(Dendranthema grandiilorum Kitamura cv Cheonsu by constitutive expression of rice OsMADS1 gene[J].J Kor Soc Hortic Sci,2002,43:382-386.
  • 8Aswath Chenna Reddy,Sug Youn Mo,Sun Hyung Kim,et al.IbMADS4 regulates the vegetative shoot development in transgenic Chrysanthemum(Dendrathema grandiflora (Ramat.)Kitamura)[J].Plant Science,2004(166):847-854.
  • 9邵寒霜,李继红,郑学勤,陈守才.拟南芥LFY cDNA的克隆及转化菊花的研究[J].Acta Botanica Sinica,1999,41(3):268-271. 被引量:80
  • 10蒋细旺,包满珠,吴家和,张献龙,田颖川.农杆菌介导Cry1Ac基因转化菊花[J].园艺学报,2005,32(1):65-69. 被引量:18

二级参考文献64

共引文献176

同被引文献71

引证文献3

二级引证文献8

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