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Transcriptome Phase Distribution Analysis Reveals Diurnal Regulated Biological Processes and Key Pathways in Rice Flag Leaves and Seedling Leaves

机译:转录组相分布分析揭示了水稻旗叶和幼苗叶片的昼夜调控生物过程和关键途径

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摘要

Plant diurnal oscillation is a 24-hour period based variation. The correlation between diurnal genes and biological pathways was widely revealed by microarray analysis in different species. Rice (Oryza sativa) is the major food staple for about half of the world's population. The rice flag leaf is essential in providing photosynthates to the grain filling. However, there is still no comprehensive view about the diurnal transcriptome for rice leaves. In this study, we applied rice microarray to monitor the rhythmically expressed genes in rice seedling and flag leaves. We developed a new computational analysis approach and identified 6,266 (10.96%) diurnal probe sets in seedling leaves, 13,773 (24.08%) diurnal probe sets in flag leaves. About 65% of overall transcription factors were identified as flag leaf preferred. In seedling leaves, the peak of phase distribution was from 2:00am to 4:00am, whereas in flag leaves, the peak was from 8:00pm to 2:00am. The diurnal phase distribution analysis of gene ontology (GO) and cis-element enrichment indicated that, some important processes were waken by the light, such as photosynthesis and abiotic stimulus, while some genes related to the nuclear and ribosome involved processes were active mostly during the switch time of light to dark. The starch and sucrose metabolism pathway genes also showed diurnal phase. We conducted comparison analysis between Arabidopsis and rice leaf transcriptome throughout the diurnal cycle. In summary, our analysis approach is feasible for relatively unbiased identification of diurnal transcripts, efficiently detecting some special periodic patterns with non-sinusoidal periodic patterns. Compared to the rice flag leaves, the gene transcription levels of seedling leaves were relatively limited to the diurnal rhythm. Our comprehensive microarray analysis of seedling and flag leaves of rice provided an overview of the rice diurnal transcriptome and indicated some diurnal regulated biological processes and key functional pathways in rice.
机译:植物的昼夜振荡是基于24小时周期的变化。不同物种的微阵列分析广泛揭示了昼夜基因与生物途径之间的相关性。稻米(Oryza sativa)是世界约一半人口的主要食物。稻米旗叶对于为谷物填充物提供光合作用至关重要。然而,关于水稻叶片的昼夜转录组仍然没有全面的认识。在这项研究中,我们应用水稻微阵列监测水稻幼苗和旗叶中有节奏地表达的基因。我们开发了一种新的计算分析方法,并在幼苗叶片中确定了6,266(10.96%)个昼夜探针集,在旗叶中鉴定了13,773(24.08%)个昼夜探针集。总体转录因子的约65%被确定为优选的旗叶。在幼苗叶片中,相分布的峰值是从凌晨2:00至4:00,而在旗叶中,则是从8:00 pm至2:00 am。基因本体(GO)和顺式元素富集的昼夜相位分布分析表明,一些重要的过程被光唤醒,例如光合作用和非生物刺激,而一些与核和核糖体参与过程有关的基因在此期间活跃。光到暗的切换时间。淀粉和蔗糖代谢途径基因也表现为昼夜相。我们在整个昼夜周期中对拟南芥和水稻叶片转录组进行了比较分析。总而言之,我们的分析方法可用于相对无偏差地识别昼夜成绩单,有效地检测具有非正弦周期模式的某些特殊周期模式。与水稻旗叶相比,幼苗叶片的基因转录水平相对受限于昼夜节律。我们对水稻幼苗和旗叶的全面微阵列分析提供了水稻昼夜转录组的概述,并指出了水稻中一些昼夜调控的生物学过程和关键功能途径。

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