首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Comparative Transcriptome Analysis of Genes Involved in GA-GID1-DELLA Regulatory Module in Symbiotic and Asymbiotic Seed Germination of Anoectochilus roxburghii (Wall.) Lindl. (Orchidaceae)
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Comparative Transcriptome Analysis of Genes Involved in GA-GID1-DELLA Regulatory Module in Symbiotic and Asymbiotic Seed Germination of Anoectochilus roxburghii (Wall.) Lindl. (Orchidaceae)

机译:拟南芥(Wall。)Lindl的共生和非共生种子萌发中涉及GA-GID1-DELLA调节模块的基因的比较转录组分析。 (兰科)

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摘要

Anoectochilus roxburghii (Wall.) Lindl. (Orchidaceae) is an endangered medicinal plant in China, also called “King Medicine”. Due to lacking of sufficient nutrients in dust-like seeds, orchid species depend on mycorrhizal fungi for seed germination in the wild. As part of a conservation plan for the species, research on seed germination is necessary. However, the molecular mechanism of seed germination and underlying orchid-fungus interactions during symbiotic germination are poorly understood. In this study, Illumina HiSeq 4000 transcriptome sequencing was performed to generate a substantial sequence dataset of germinating A. roxburghii seed. A mean of 44,214,845 clean reads were obtained from each sample. 173,781 unigenes with a mean length of 653 nt were obtained. A total of 51,514 (29.64%) sequences were annotated, among these, 49 unigenes encoding proteins involved in GA-GID1-DELLA regulatory module, including 31 unigenes involved in GA metabolism pathway, 5 unigenes encoding GID1, 11 unigenes for DELLA and 2 unigenes for GID2. A total of 11,881 genes showed significant differential expression in the symbiotic germinating seed sample compared with the asymbiotic germinating seed sample, of which six were involved in the GA-GID1-DELLA regulatory module, and suggested that they might be induced or suppressed by fungi. These results will help us understand better the molecular mechanism of orchid seed germination and orchid-fungus symbiosis.
机译:Anoectochilus roxburghii(墙壁)Lindl。 (兰科)是中国的一种濒危药用植物,也被称为“国王药”。由于粉尘样种子中缺乏足够的营养,兰花物种依靠菌根真菌在野外发芽。作为该物种保护计划的一部分,必须对种子发芽进行研究。然而,对种子发芽和共生发芽过程中潜在的兰花-真菌相互作用的分子机制了解甚少。在这项研究中,进行了Illumina HiSeq 4000转录组测序,以生成发芽的曲霉种子的大量序列数据集。从每个样品中获得平均44,214,845次干净读数。获得了173,781个平均长度为653 nt的单基因。共注释了51,514个(29.64%)序列,其中49个编码GA-GID1-DELLA调控模块的蛋白的单基因,包括31个参与GA代谢途径的蛋白,编码GID1的5个蛋白,DELLA的11个和2个蛋白。对于GID2。与非共生发芽种子样品相比,共生共发芽种子样品中共有11,881个基因表现出显着差异表达,其中有6个基因参与了GA-GID1-DELLA调控模块,表明它们可能被真菌诱导或抑制。这些结果将有助于我们更好地了解兰花种子发芽和兰花-真菌共生的分子机制。

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