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首页> 外文期刊>Botanical Studies >Transcriptomic analyses reveal clathrin-mediated endocytosis involved in symbiotic seed germination of Gastrodia elata
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Transcriptomic analyses reveal clathrin-mediated endocytosis involved in symbiotic seed germination of Gastrodia elata

机译:转录组学分析显示网格蛋白介导的内吞作用与天麻共生种子萌发有关

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Background Gastrodia elata is a well-known medicinal orchid. In nature, the germination rate of G. elata is extremely poor, because there is no endosperm within the mature seed. It is crucial for G. elata to obtain nutrition from mycorrhizal fungi ( Mycena ) at the early-stage of germination. After germination, the seed gives rise to a protocorm. However, there are no “omic” studies on understanding the interaction between Gastrodia and Mycena . Here, we used transcriptomic approaches to explore changes in seed germination of G. elata . ResultsBased on RNA-Seq, a total of ~221 million clean reads were assembled denovo into 139,756 unigenes, including 42,140 unigenes that were annotated in public databases. Meanwhile, 1750 unigenes were identified as differentially expressed genes. Most of these differentially expressed genes were putatively involved in energy metabolism, plant defense, molecular signaling, and secondary metabolism. Additionally, numerous genes involved in clathrin-mediated endocytosis were identified from our data. Most of these genes (e.g., clathrin, adaptor protein, dynamin, HSC70) were basally expressed in seeds and highly expressed in protocorms. ConclusionsOur data suggested that clathrin-mediated endocytosis could play important roles in symbiotic seed germination of G. elata with Mycena infections.
机译:背景天麻是一种著名的药用兰花。在自然界中,G。elata的发芽率极低,因为成熟种子中没有胚乳。在萌发初期,G。elata从菌根真菌(Mycena)获得营养至关重要。发芽后,种子产生原球茎。但是,没有关于了解天麻和Mycena之间相互作用的“组学”研究。在这里,我们使用转录组学方法来探索G. elata种子发芽的变化。结果基于RNA-Seq,总共将约2.21亿个干净读段组装到139,756个单基因中,其中包括在公共数据库中注释的42,140个单基因。同时,鉴定出1750个单基因作为差异表达基因。这些差异表达的基因大多数都推测参与能量代谢,植物防御,分子信号传导和次级代谢。此外,从我们的数据中鉴定出许多与网格蛋白介导的胞吞作用有关的基因。这些基因中的大多数(例如网格蛋白,衔接蛋白,动力蛋白,HSC70)在种子中基本表达,并在原球茎中高度表达。结论我们的数据表明网格蛋白介导的内吞作用在Mycena感染的G. elata共生种子萌发中可能起重要作用。

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