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首页> 外文期刊>Phytochemistry >Development of bioinformatic tools to support EST-sequencing, in silico- and microarray-based transcriptome profiling in mycorrhizal symbioses
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Development of bioinformatic tools to support EST-sequencing, in silico- and microarray-based transcriptome profiling in mycorrhizal symbioses

机译:开发生物信息学工具以支持菌根共生中的EST测序,基于计算机和微阵列的转录组分析

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摘要

The great majority of terrestrial plants enters a beneficial arbuscular mycorrhiza (AM) or ectomycorrhiza (ECM) symbiosis with soil fungi. In the SPP 1084 "MolMyk: Molecular Basics of Mycorrhizal Symbioses", high-throughput EST- sequencing was performed to obtain snapshots of the plant and fungal transcriptome in mycorrhizal roots and in extraradical hyphae. To focus activities, the interactions between Medicago truncatula and Glomus intraradices as well as Populus tremula and Amanita muscaria were selected as models for AM and ECM symbioses, respectively. Together, almost, 20.000 expressed sequence tags (ESTs) were generated from different random and suppressive subtractive hybridization (SSH) cDNA libraries, providing a comprehensive overview of the mycorrhizal transcriptome. To automatically cluster and annotate EST-sequences, the BioMake and SAMS software tools were developed. In connection with the eNorthern software SteN, plant genes with a predicted mycorrhiza-induced expression were identified. To support experimental transcriptome profiling, macro- and microarray tools have been constructed for the two model mycorrhizae, based either on PCR-amplified cDNAs or 70mer oligonucleotides. These arrays were used to profile the transcriptome of AM and ECM roots under different conditions, and the data obtained were uploaded to the ArrayLIMS and EMMA databases that are designed to store and evaluate expression profiles from DNA arrays. Together, the EST- and transcriptome databases can be mined to identify candidate genes for targeted functional studies.
机译:绝大多数陆生植物与土壤真菌进入有益的丛枝菌根(AM)或外生菌根(ECM)共生关系。在SPP 1084“ MolMyk:菌根共生体的分子基础”中,进行了高通量EST测序,以获取菌根和根外菌丝中植物和真菌转录组的快照。为了重点开展活动,分别选择了Medi藜苜蓿和格洛姆斯辐射根之间的相互作用以及毛白杨和鹅膏菌(Amanita muscaria)之间的相互作用,分别作为AM和ECM共生的模型。在一起,从不同的随机和抑制性消减杂交(SSH)cDNA文库中生成了将近20.000个表达的序列标签(EST),从而全面了解了菌根转录组。为了自动聚类和注释EST序列,开发了BioMake和SAMS软件工具。结合eNorthern软件SteN,鉴定了具有预测的菌根诱导表达的植物基因。为了支持实验性转录组分析,基于PCR扩增的cDNA或70mer寡核苷酸,已经为两种模型菌根构建了宏和微阵列工具。这些阵列用于在不同条件下分析AM和ECM根的转录组,并将获得的数据上传至ArrayLIMS和EMMA数据库,该数据库旨在存储和评估DNA阵列的表达谱。可以一起挖掘EST和转录组数据库,以鉴定用于目标功能研究的候选基因。

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