首页> 外文期刊>Current Microbiology >Fungal Transcript Pattern During the Preinfection Stage (12 h) of Ectomycorrhiza Formed Between Pisolithus tinctorius and Castanea sativa Roots, Identified Using cDNA Microarrays
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Fungal Transcript Pattern During the Preinfection Stage (12 h) of Ectomycorrhiza Formed Between Pisolithus tinctorius and Castanea sativa Roots, Identified Using cDNA Microarrays

机译:利用cDNA微阵列鉴定的Pisolithus tinctorius和栗木根之间的外生菌根的感染前阶段(12 h)的真菌转录模式

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摘要

Transcriptional changes in Pisolithus tinctorius leading to ectomycorrhizal formation in P. tinctorius– Castanea sativa were investigated using a 12-h fungal interaction in vitro system. Using a 3107-cDNA clone microarray, 34 unique expressed sequence tags (ESTs) were found to be differentially expressed. These ESTs represent 14 known genes, 5 upregulated and 9 downregulated, and 20 orphan sequences. Some transcripts of upregulated genes (with unknown function) were previously identified in other mycorrhizal Pisolithus spp. associations. ESTs for S-adenosyl-l-homocysteine hydrolase and several orphan sequences were identified in our system. The identified transcript of downregulated genes involved hydrophobins, 5S, 18S, and 28S ribosomal RNA genes, large subunits of ribosomal RNA (mitochondrial gene), and two types of heat shock proteins. This study demonstrates the high complexity of molecular events involved in the preinfection steps and suggests the utilization of different fungal gene repertories before ectomycorrhizal formation. These data constitute a first contribution for the molecular understanding of early signaling events between P. tinctorius and C. sativa roots during ectomycorrhizal formation.
机译:使用12 h真菌相互作用体外系统研究了Pisolithus tinctorius导致在P. tinctorius – Castanea sativa中外生菌根形成的转录变化。使用3107-cDNA克隆微阵列,发现34个独特的表达序列标签(EST)被差异表达。这些EST代表14个已知基因,5个上调和9个下调以及20个孤儿序列。先前在其他菌根的Pisolithus spp中鉴定了一些上调基因的转录本(功能未知)。协会。在我们的系统中,确定了S-腺苷-1-高半胱氨酸水解酶的EST和几个孤儿序列。鉴定的下调基因的转录物包括疏水蛋白,5S,18S和28S核糖体RNA基因,核糖体RNA的大亚基(线粒体基因)和两种类型的热激蛋白。这项研究表明了感染前步骤中涉及的分子事件的高度复杂性,并建议在外生菌根形成之前利用不同的真菌基因库。这些数据构成了对在外生菌根形成过程中丁香假单胞菌和紫花苜蓿根之间的早期信号传导分子理解的第一贡献。

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  • 来源
    《Current Microbiology》 |2008年第6期|620-625|共6页
  • 作者单位

    Laboratório micorrizas Departamento de Micologia Universidade Federal de Pernambuco Recife Brazil;

    Unit of Molecular Biology and Plant Biotechnology Instituto de Ciência Aplicada e Tecnologia Faculdade de Ciências de Lisboa Universidade de Lisboa 1749-016 Lisbon Portugal;

    Unit of Molecular Biology and Plant Biotechnology Instituto de Ciência Aplicada e Tecnologia Faculdade de Ciências de Lisboa Universidade de Lisboa 1749-016 Lisbon Portugal;

    Department of Statistics and Operational Research Center of Statistics and Applications Faculdade de Ciências de Lisboa Universidade de Lisboa 1749-016 Lisbon Portugal;

    Unit of Molecular Biology and Plant Biotechnology Instituto de Ciência Aplicada e Tecnologia Faculdade de Ciências de Lisboa Universidade de Lisboa 1749-016 Lisbon Portugal;

    Unit of Molecular Biology and Plant Biotechnology Instituto de Ciência Aplicada e Tecnologia Faculdade de Ciências de Lisboa Universidade de Lisboa 1749-016 Lisbon Portugal;

    Unit of Molecular Biology and Plant Biotechnology Instituto de Ciência Aplicada e Tecnologia Faculdade de Ciências de Lisboa Universidade de Lisboa 1749-016 Lisbon Portugal;

    Laboratório micorrizas Departamento de Micologia Universidade Federal de Pernambuco Recife Brazil;

    Unit of Molecular Biology and Plant Biotechnology Instituto de Ciência Aplicada e Tecnologia Faculdade de Ciências de Lisboa Universidade de Lisboa 1749-016 Lisbon Portugal;

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