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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Gene and metabolite profiling reveals flowering and survival strategies in Himalayan Rhododendron arboreum
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Gene and metabolite profiling reveals flowering and survival strategies in Himalayan Rhododendron arboreum

机译:基因和代谢物分析揭示了喜马拉雅杜鹃花的开花和生存策略

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Rhododendron arboreum inhabits the Himalayan climate otherwise detrimental to many species, though the underlying survival mechanism remains unclear. Such temperate species have an inherent endurance towards freezing temperature which is prerequisite for an initiation and transition to flowering phase. Orchestrating the molecular architecture is vital towards managing distinct abiotic signals. To determine the molecular factors directing growth, development, and tolerance under environmental extremes in the species, the high-throughput transcriptome and metabolome data from vegetative as well as cold-acclimatized flowering season tissues were generated. Firstly, the de novo assembly pertaining to the foliar and floral tissues comprising of 157,427 unigenes was examined for a comparative analysis. 4149 of 12,577 transcripts observed with a significant fluctuating expression corresponded to seasonal retorts. Following the interactive network, 525 genes were distinguished as the epicenters of sense, response, and tolerance. Secondly, liquid chromatography coupled to mass spectrometry was adopted to profile the extent of metabolite richness across the tissues of two seasons. Taking into account the formula-based mappings offered by MetaboSearch tool, 421 unique ions obtained were annotated to 173 KEGG compounds, especially secondary metabolites. Moreover, by integrating the transcript and metabolite annotations, it was found that right from active metabolism, signaling, development, and their regulations, supplementary response to abiotic/biotic stimuli was induced. A multifaceted response displayed during flowering not only sponsored the climatic encounters but brought the shift from vegetative to reproductive growth. Overall, this comprehensive approach following transcriptome and non-targeted metabolome elucidated the contribution of genetic and metabolic factors in environmental responses.
机译:杜鹃花栖息于喜马拉雅气候,否则依赖于许多物种,尽管潜在的生存机制仍然不清楚。这种温带物种具有抗冷冻温度的固有耐久性,这是对开花阶段引发和过渡的先决条件。协调分子结构对于管理不同的非生物信号至关重要。为了确定物种环境极端的生长,发育和耐受性的分子因素,产生了来自植物的高通量转录组和代谢数据以及冷适应的开花季节组织。首先,研究了与叶面和花组织有关的叶外组件,用于对比较分析进行比较分析。用显着波动表达观察到的12,577转录物中的4149个具有显着波动的表达式对应于季节性蒸馏。在交互式网络之后,将525个基因视为感觉,反应和耐受的震中。其次,采用液相色谱法偶联至质谱法在两个季节组织中剖到代谢物丰富程度。考虑到由MetaboSearch工具提供的基于公式的映射,获得的421个独特的离子被注释为173kegg化合物,尤其是次级代谢物。此外,通过整合转录物和代谢物注释,发现从活性新陈代谢,信号,发展和规定,诱导对非生物/生物刺激的补充反应。在开花期间显示的多方面反应不仅赞助了气候遭遇,而且将从植物转移到生殖生长。总的来说,转录组和非靶向代谢物后的这种综合方法阐明了遗传和代谢因素在环境反应中的贡献。

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