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Comparison of the Nodule vs. Root Transcriptome of the Actinorhizal Plant Datisca glomerata : Actinorhizal Nodules Contain a Specific Class of Defensins

机译:放线放线植物Datisca glomerata的根瘤和根转录组的比较:放线根瘤含有一类特定的防御素

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摘要

Actinorhizal root nodule symbioses are very diverse, and the symbiosis of Datisca glomerata has previously been shown to have many unusual aspects. In order to gain molecular information on the infection mechanism, nodule development and nodule metabolism, we compared the transcriptomes of D. glomerata roots and nodules. Root and nodule libraries representing the 3'-ends of cDNAs were subjected to high-throughput parallel 454 sequencing. To identify the corresponding genes and to improve the assembly, Illumina sequencing of the nodule transcriptome was performed as well. The evaluation revealed 406 differentially regulated genes, 295 of which (72.7%) could be assigned a function based on homology. Analysis of the nodule transcriptome showed that genes encoding components of the common symbiosis signaling pathway were present in nodules of D. glomerata, which in combination with the previously established function of SymRK in D. glomerata nodulation suggests that this pathway is also active in actinorhizal Cucurbitales. Furthermore, comparison of the D. glomerata nodule transcriptome with nodule transcriptomes from actinorhizal Fagales revealed a new subgroup of nodule-specific defensins that might play a role specific to actinorhizal symbioses. The D. glomerata members of this defensin subgroup contain an acidic C-terminal domain that was never found in plant defensins before.
机译:放线根部根瘤共生体非常多样,以前已证明球状菌的共生具有许多不同寻常的方面。为了获得有关感染机理,结节发育和结节代谢的分子信息,我们比较了D. glomerata根和结节的转录组。代表cDNA 3'末端的根和根瘤文库经过高通量并行454测序。为了鉴定相应的基因并改善装配,还对结节转录组进行了Illumina测序。该评估揭示了406个差异调节基因,其中295个(72.7%)可以基于同源性分配功能。结节转录组的分析表明,编码共生信号途径的组分的基因存在于小球藻的结节中,这与先前在小球藻结节中建立的SymRK的功能相结合,表明该途径在放线菌属葫芦科中也有活性。 。此外,比较了D.glomerata结节转录组与放线FaFagales的结节转录组,发现了一个新的结节特异性防御​​素亚组,它可能对放线act共生酶起特定作用。该防御素亚组的D. glomerata成员包含一个酸性的C末端结构域,以前在植物防御素中从未发现过。

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