基于cDNA-AFLP及MSAP技术分析西瓜同源二倍体和四倍体低温胁迫差异表达
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河北省自然科学基金项目(C2007000547)


Depend on cDNA-AFLP and MSAP Technical Analysis of Homologous Diploid and Tetraploid Watermelon Under Cold Stress
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Natural Science Foundation of Hebei Province (C2007000547)

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    摘要:

    为了研究西瓜二倍体及同源四倍体在低温胁迫下的分子机制,以西瓜‘京欣’1号母本83166(二倍体)及其同源四倍体为材料,利用MSAP及cDNA-AFLP技术研究低温处理前后基因表达的差异,并对差异带进行克隆、测序和比对。22对MSAP引物扩增得到1564个位点,其中二倍体经低温处理后总甲基化率下降2.8%,四倍体下降6.4%。将12条差异带与西瓜基因组数据库比对,有7条带确定是西瓜基因组序列。26对cDNA-AFLP引物组合扩增出1267条带,其中二倍体上调表达占48.2%,下调表达占51.8%;四倍体上调表达占58.6%,下调表达占41.4%。23条差异带在NCBI中找到了同源序列基因,包括假定蛋白(39.13%)、能量与代谢(43.48%)、物质运输(8.70%)、转录相关(4.35%)以及逆境相关(4.35%),另有10条无同源序列。低温胁迫后,四倍体去甲基化率与上调表达量均高于二倍体,而且四倍体诱导出的差异基因参与了物质的能量代谢调控及逆境胁迫过程,说明四倍体较二倍体有更强的耐冷性。

    Abstract:

    The purpose of this study focused on molecular mechanism under low temperature of homologous diploid and tetraploid watermelon seeding. Homologous diploid and tetraploid of female Jingxin 83166 were used as materials. Genes different expression using MSAP andlevel were analysised under low temperature stress and different bands were selected to be cloned, sequenced and compared.A total of 1564 locus were amplied using 22 MSAP primer combinations. Declining levels in the total methylation was 2.8% and 6.4% of the diploid and the tetraploid of watermelon, respectively. Blast 12 different bands in watermelon genome database,and 7 bands were identified as watermelon genome sequence. After being screened with 26 cDNA-AFLP primer combinations, 1267 bands were amplied, including 48.2% with up-regulated expression, 51.8% with down-regulated expression in the diploid of watermelon,58.6% with up-regulated expression,41.4% with down-regulated expression in the tetraploid of watermelon. NCBI Blast search showed that 23 bands were homologous functional genes,including hypothetical protein(39.13%),energy and metabolism protein(43.48%),material transportation protein(8.70%),transcription relation protein(4.35%)and stress-related protein(4.35%),and other 10 bands with remained unknown function. Under low temperature stress,the methylation rate and up-regulated genes of the tetraploid of watermelon were greater than the diploid of watermelon, the tetraploid of watermelon induced genes involved in energy and metabolism and stress-related process, illustrating that the tetraploid of watermelon had stronger resistance than the diploid of watermelon.

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杨炳艳,刘云婷,胡文靖,等.基于cDNA-AFLP及MSAP技术分析西瓜同源二倍体和四倍体低温胁迫差异表达[J].植物遗传资源学报,2015,16(6):1298-1306.

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  • 收稿日期:2015-01-13
  • 最后修改日期:2015-06-16
  • 录用日期:2015-06-17
  • 在线发布日期: 2015-11-04
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