首页> 外文期刊>Chinese science bulletin >Gene expression profiling under different photoperiod/ temperature conditions in a photoperiod-/thermo-sensitive genic male sterile line of rice (Oryza sativa L.)
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Gene expression profiling under different photoperiod/ temperature conditions in a photoperiod-/thermo-sensitive genic male sterile line of rice (Oryza sativa L.)

机译:水稻(Oryza sativa L.)光周期/热敏感性基因雄性不育系在不同光周期/温度条件下的基因表达谱

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摘要

Peiai 64S is a photoperiod- and thermo-sensitive genie male sterile (PTSGMS) line of rice,which is male sterile at long day/high temperature and partial fertile at short day/low temperature.A cDNA array representing 3328 unique rice genes was used to profile the gene expression patterns in the young panicles of Peiai 64S under these two conditions.The statistical data showed that up to 14.60 percent of genes exhibited up-or down-regulated expressions in the plants at long day/high temperature compared with plants at short day/low temperature.Only four genes were up-regulated while, 462 genes down-regulated.Real-time PCR with all the up-regulated and 9 randomly selected down-regulated genes confirmed the differential expressions detected by the array, indicating that the constructed cDNA array is reliable.These differently expressed genes participated in almost all cell biological responses.Analysis of up- and down-regulated genes revealed distinctive changes between the mRNA abundances of MMK1 and MMK2,both of which are analogs of MAPK,and significant down-regulation of several transcription factors. It was suggested that changes that occurred in the MAPK signal transduction pathway might disturb the transcription control necessary for morphogenesis of pollens and corresponding phys- iological functions.
机译:Peiai 64S是水稻的光周期和热敏基因雄性不育系(PTSGMS),在长日/高温下均为雄性不育,在短日/低温下为部分不育。使用了代表3328个独特水稻基因的cDNA阵列在这两种条件下,Peiai 64S幼穗中的基因表达模式均发生了变化。统计数据显示,与高温时相比,在白天/高温下,高达14.60%的基因在植物中表现出上调或下调的表达。白天/低温短时,仅四个基因被上调,而462个基因被下调。所有上调的基因和9个随机选择的下调基因的实时PCR证实了阵列检测到的差异表达。这些不同表达的基因参与了几乎所有的细胞生物学反应。对上调和下调基因的分析揭示了mRNA丰度之间的明显变化。都是MAPK的类似物MMK1和MMK2的一部分,并且显着下调了一些转录因子。有人认为,MAPK信号转导途径中发生的变化可能会干扰花粉形态发生和相应生理功能所必需的转录控制。

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