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严重致病型黄化植原体中存在两个糖酵解基因簇。

Presence of two glycolytic gene clusters in a severe pathogenic line of Candidatus Phytoplasma asteris.

机构信息

Department of Agricultural and Environmental Biology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.

出版信息

Mol Plant Pathol. 2007 Jul;8(4):481-9. doi: 10.1111/j.1364-3703.2007.00408.x.

Abstract

Phytoplasmas are plant-pathogenic bacteria that are associated with numerous plant diseases. We have previously reported the complete genomic sequence of Candidatus Phytoplasma asteris, OY strain, OY-M line, which causes mild symptoms. The phytoplasma genome lacks several important metabolic genes, implying that the consumption of metabolites by phytoplasmas in plants may cause disease symptoms. Here we show that the approximately 30-kb region including the glycolytic genes was tandemly duplicated in the genome of OY-W phytoplasma, which causes severe symptoms. Almost duplicated genes became pseudogenes by frameshift and stop-codon mutations, probably because of their functional redundancy. However, five kinds of genes, including two glycolytic genes, remained full-length ORFs, suggesting that it is advantageous for the phytoplasma to retain these genes in its lifestyle. In particular, 6-phosphofructokinase is known as a rate-limiting enzyme of glycolysis, implying that the different number of glycolytic genes between OY-W and OY-M may influence their respective glycolysis activities. We previously reported that the phytoplasma population of OY-W was higher than that of OY-M in their infected plants. Taking this result into account, the higher consumption of the carbon source may affect the growth rate of phytoplasmas and also may directly or indirectly cause more severe symptoms.

摘要

植原体是与多种植物病害相关的植物病原细菌。我们之前报道了引起轻度症状的“OY 型”候选植原体 asteris 的完整基因组序列。该植原体基因组缺少几个重要的代谢基因,这表明植原体在植物中消耗代谢物可能导致病害症状。在这里,我们发现引起严重症状的“OY-W 型”植原体基因组中,包括糖酵解基因在内的约 30kb 区域发生了串联重复。几乎重复的基因由于移码和终止密码突变而成为假基因,可能是由于它们的功能冗余。然而,包括两种糖酵解基因在内的 5 种基因仍保持全长 ORF,这表明保留这些基因对植原体的生活方式是有利的。特别是 6-磷酸果糖激酶是糖酵解的限速酶,这表明 OY-W 和 OY-M 之间糖酵解基因数量的不同可能影响它们各自的糖酵解活性。我们之前报道过,在感染的植物中,OY-W 型植原体的种群数量高于 OY-M 型。考虑到这一结果,更高的碳源消耗可能会影响植原体的生长速度,并可能直接或间接导致更严重的症状。

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