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Organ-specific gene expression and genetic transformation for improving rice

机译:改善水稻的器官特异性基因表达和遗传转化

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Organ-specific expression of the genes isolated from the chloroplast genome of indica rice has been shown to involve quantitative and qualitative changes in mRNAs, This in turn depends largely on the quantity of the template and signal components suchas calcium and protein phosphatases/kinases. To isolate nuclear genes and promoters specific to inflorescence and roots, organ-specific cDNA libraries were made from indica rice. These have either been employed for differential screening or cDNA cloneshave been randomly picked and tested for organ-specific expression. An analysis of such cDNAs has revealed that 12 cDNAs are new to rice and five of them do not show homoiogy to any known sequence from the databases, Genomic clones of several have been isolated to delineate organ-specific promoters by employing the transgenic rice/tobacco system. An Agrobacterium-mediated high-frequency transformation system for elite indica variety Pusa Basmati 1 has been established. The system has been used to analyze the activity of a new promoter and to introduce agronomically useful genes in rice.
机译:已经显示出从籼稻叶绿体基因组分离的基因的特异性基因的表达涉及MRNA的定量和定性变化,这又取决于模板的量和信号组分MEDOS钙和蛋白质磷酸酶/激酶。为了分离核基因和特异性的核基因和促进剂,由籼稻制成器官特异性cDNA文库。这些已经用于用于差异筛选或cDNA克隆,被随机挑选和测试用于器官特异性表达。这种CDNA的分析表明,12个CDNA是水稻新的,其中五个并未向数据库中的任何已知序列显示HOMOIGY,几种基因组克隆通过使用转基因水稻/烟草描绘特异性启动子。系统。已经建立了一种农杆菌介导的精英籼稻品种PUSA Basmati 1的高频变换系统。该系统已被用于分析新启动子的活动并在水稻中引入农艺上有用的基因。

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