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Comparative Transcriptome Analysis of Gene Expression Patterns in Tomato Under Dynamic Light Conditions

机译:动态光照条件下番茄基因表达模式的转录组比较分析

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摘要

Plants grown under highly variable natural light regimes differ strongly from plants grown under constant light (CL) regimes. Plant phenotype and adaptation responses are important for plant biomass and fitness. However, the underlying regulatory mechanisms are still poorly understood, particularly from a transcriptional perspective. To investigate the influence of different light regimes on tomato plants, three dynamic light (DL) regimes were designed, using a CL regime as control. Morphological, photosynthetic, and transcriptional differences after five weeks of treatment were compared. Leaf area, plant height, shoot /root weight, total chlorophyll content, photosynthetic rate, and stomatal conductance all significantly decreased in response to DL regimes. The biggest expression difference was found between the treatment with the highest light intensity at the middle of the day with a total of 1080 significantly up-/down-regulated genes. A total of 177 common differentially expressed genes were identified between DL and CL conditions. Finally, significant differences were observed in the levels of gene expression between DL and CL treatments in multiple pathways, predominantly of plant–pathogen interactions, plant hormone signal transductions, metabolites, and photosynthesis. These results expand the understanding of plant development and photosynthetic regulations under DL conditions by multiple pathways.
机译:在高度可变的自然光照下生长的植物与在恒定光照(CL)下生长的植物有很大的不同。植物表型和适应性反应对于植物生物量和适应性很重要。然而,尤其是从转录的角度,对潜在的调节机制仍知之甚少。为了研究不同光照方式对番茄植株的影响,设计了三种动态光照(DL)方式,以CL方式为对照。比较了治疗五周后的形态,光合和转录差异。响应于DL方案,叶面积,株高,枝条/根重,总叶绿素含量,光合速率和气孔导度均显着降低。发现在一天中的最高光照强度与总共1080个显着上调/下调基因的处理之间存在最大的表达差异。在DL和CL条件之间共鉴定出177个共同的差异表达基因。最后,在多种途径的DL和CL处理之间观察到基因表达水平的显着差异,主要是植物与病原体的相互作用,植物激素信号转导,代谢产物和光合作用。这些结果通过多种途径扩展了对DL条件下植物发育和光合作用调控的理解。

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