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Isolating Soil Drought-Induced Genes from Maize Seedling Leaves Through Suppression Subtractive Hybridization 被引量:6

Isolating Soil Drought-Induced Genes from Maize Seedling Leaves Through Suppression Subtractive Hybridization
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摘要 In this study, a forward cDNA library was constructed by suppression subtractive hybridization using seedling leaves of CN165, a drought-tolerant maize inbred line. In the suppression subtractive hybridization (SSH) library, 672 positive clones were picked up randomly. After polymerase chain reaction (PCR) of each clone, all the single clones were sequenced. Totally 598 available sequences were obtained. After cluster analysis of the EST sequences, 80 uniESTs were obtained, among which 57 uniESTs were contigs and 23 uniESTs were singlets. The results of BLASTN showed that all the uniESTs had homologous sequences in the nr database. The BLASTX results indicated that 68 uniESTs had significant protein homology, 8 uniESTs with homology of unknown proteins and putative proteins, and 4 uniESTs without protein homology. Those drought stress-induced genes were involved in many metabolism pathways to regulate plant growth and development under drought stress. In this study, a forward cDNA library was constructed by suppression subtractive hybridization using seedling leaves of CN165, a drought-tolerant maize inbred line. In the suppression subtractive hybridization (SSH) library, 672 positive clones were picked up randomly. After polymerase chain reaction (PCR) of each clone, all the single clones were sequenced. Totally 598 available sequences were obtained. After cluster analysis of the EST sequences, 80 uniESTs were obtained, among which 57 uniESTs were contigs and 23 uniESTs were singlets. The results of BLASTN showed that all the uniESTs had homologous sequences in the nr database. The BLASTX results indicated that 68 uniESTs had significant protein homology, 8 uniESTs with homology of unknown proteins and putative proteins, and 4 uniESTs without protein homology. Those drought stress-induced genes were involved in many metabolism pathways to regulate plant growth and development under drought stress.
出处 《Agricultural Sciences in China》 CAS CSCD 2007年第6期647-651,共5页 中国农业科学(英文版)
关键词 MAIZE drought stress suppression subtractive hybridization (SSH) uniESTs maize, drought stress, suppression subtractive hybridization (SSH), uniESTs
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参考文献3

  • 1A. Tiwari,P. Kumar,S. Singh,S. A. Ansari.Carbonic anhydrase in relation to higher plants[J].Photosynthetica.2005(1)
  • 2Wangxia Wang,Basia Vinocur,Arie Altman.Plant responses to drought, salinity and extreme temperatures: towards genetic engineering for stress tolerance[J].Planta.2003(1)
  • 3K.V. Chaitanya,P.P. Jutur,D. Sundar,A. Ramachandra Reddy.Water stress effects on photosynthesis in different mulberry cultivars[J].Plant Growth Regulation.2003(1)

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