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Expression dynamics of metabolic and regulatory components across stages of panicle and seed development in indica rice

机译:in稻穗和种子发育各阶段代谢和调控成分的表达动态

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Carefully analyzed expression profiles can serve as a valuable reference for deciphering gene functions.We exploited the potential of whole genome microarrays to measure the spatial and temporal expression profiles of rice genes in 19 stages of vegetative and reproductive development. We could verify expression of 22,980 genes in at least one of the tissues. Differential expression analysis with respect to five vegetative tissues and preceding stages of development revealed reproductive stage-preferential/-specific genes. By using subtractive logic, we identified 354 and 456 genes expressing specifically during panicle and seed development, respectively. The metabolic/ hormonal pathways and transcription factor families playing key role in reproductive development were elucidated after overlaying the expression data on the public databases and manually curated list of transcription factors, respectively. During floral meristem differentiation (P1) and male meiosis (P3), the genes involved in jasmonic acid and phenylpropanoid biosynthesis were significantly upregulated. P6 stage of panicle, containing mature gametophytes, exhibited enrichment of transcripts involved in homogalacturonon degradation. Genes regulating auxin biosynthesis were induced during early seed development. We validated the stage-specificity of regulatory regions of three panicle-specific genes, OsAGO3, OsSub42, and RTS, and an early seed-specific gene, XYH, in transgenic rice. The data generated here provides a snapshot of the underlying complexity of the gene networks regulating rice reproductive development.
机译:仔细分析的表达谱可为破译基因功能提供有价值的参考。我们利用全基因组微阵列技术来测量水稻基因在营养和生殖发育的19个阶段的时空表达谱。我们可以验证至少一个组织中22,980个基因的表达。关于五个营养组织和发育前期的差异表达分析揭示了生殖期优先/特异性基因。通过使用减法逻辑,我们确定了分别在穗和种子发育期间特异性表达的354和456个基因。在将表达数据分别覆盖在公共数据库和人工整理的转录因子列表上之后,阐明了在生殖发育中起关键作用的代谢/激素途径和转录因子家族。在花分生组织分化(P1)和雄性减数分裂(P3)期间,与茉莉酸和苯丙烷类生物合成有关的基因被显着上调。圆锥花序的P6期,包含成熟的配子体,表现出参与同型半乳糖醛酸降解的转录物的富集。在早期种子发育过程中诱导了调节生长素生物合成的基因。我们验证了转基因水稻中三个穗特异性基因OsAGO3,OsSub42和RTS以及早期种子特异性基因XYH调控区域的阶段特异性。此处产生的数据提供了调节水稻生殖发育的基因网络潜在复杂性的快照。

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