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2个水稻器官特异表达基因的鉴定及分析
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作者 周淑芬 刘华清 +5 位作者 林智敏 颜静宛 赵庆欣 陈睿 杨绍华 王锋 《福建农业学报》 CAS 2012年第10期1044-1049,共6页
研究组织特异表达基因对揭示植物生长发育机制具有重要的意义。通过生物信息学、RT-PCR及荧光定量PCR方法鉴定了2个水稻特异表达基因,即Os01g18840叶特异和Os01g28500茎叶颖特异表达基因。通过检测它们在PEG、NaCl、ABA及暗处理下的表... 研究组织特异表达基因对揭示植物生长发育机制具有重要的意义。通过生物信息学、RT-PCR及荧光定量PCR方法鉴定了2个水稻特异表达基因,即Os01g18840叶特异和Os01g28500茎叶颖特异表达基因。通过检测它们在PEG、NaCl、ABA及暗处理下的表达情况,发现在各种胁迫处理下,Os01g18840基因的表达受到抑制,Os01g28500基因的表达受到诱导。进一步分析它们的基因及蛋白结构特点,发现Os01g18840蛋白含有1个卷曲螺旋结构域,是1个中间纤维蛋白;Os01g28500蛋白含有1个SCP类似结构域,是与病原反应相关的蛋白。另外,对它们上游启动子区的顺式元件进行分析,结果表明它们都含有大量的与叶片、叶肉细胞或绿色组织中表达相关的顺式作用元件。 展开更多
关键词 器官特异表达 水稻 基因 顺式元件
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Gene Expression Profiles in Porcine Tissues of Liver and Kidney
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作者 Tatiana Glazko Nataliya Khlopova +2 位作者 Scott Fahrenkrug John Garbe Valeriy Glazko 《Journal of Life Sciences》 2011年第3期192-200,共9页
Microarray technologies are widely used all over the world for the gene expression analysis in various tissues, but still this technology has some limitations. The problem of eliminated reproducibility of the results,... Microarray technologies are widely used all over the world for the gene expression analysis in various tissues, but still this technology has some limitations. The problem of eliminated reproducibility of the results, obtained in different laboratories using different platforms, is very relevant nowadays. For revelation of problems ofmicroarrays, the comparative analysis of hepatic and renal gene expression profiles (GEP) was carried out by using swine protein annotated oligonucleotide microarrays (SPAM). Revealed differences in GEP between kidney and liver of pigs were correlated with functional and histological distinctions of these organs. It was shown that sources of errors in the comparative analysis of organ-specific GEP could be connected to the cross hybridization of one probe to transcripts (cDNA of mRNA) of different genes and to individual variability in gene expression between animals, related with the changeability of influences of exo- and endogenous regulation factors. 展开更多
关键词 Oligonucleotide microarrays gene expression cross hybridization individual variability.
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