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Differential gene expression in tomato fruit and Colletotrichum gloeosporioides during colonization of the RNAi–SlPH tomato line with reduced fruit acidity and higher pH

机译:番茄果实和Colletottrichum GlooosporoI中的差异基因表达在RNAI-SLPH番茄系的定植过程中,果酸降低和较高的pH值

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摘要

Abstract Background The destructive phytopathogen Colletotrichum gloeosporioides causes anthracnose disease in fruit. During host colonization, it secretes ammonia, which modulates environmental pH and regulates gene expression, contributing to pathogenicity. However, the effect of host pH environment on pathogen colonization has never been evaluated. Development of an isogenic tomato line with reduced expression of the gene for acidity, SlPH (Solyc10g074790.1.1), enabled this analysis. Total RNA from C. gloeosporioides colonizing wild-type (WT) and RNAi–SlPH tomato lines was sequenced and gene-expression patterns were compared. Results C. gloeosporioides inoculation of the RNAi–SlPH line with pH 5.96 compared to the WT line with pH 4.2 showed 30% higher colonization and reduced ammonia accumulation. Large-scale comparative transcriptome analysis of the colonized RNAi–SlPH and WT lines revealed their different mechanisms of colonization-pattern activation: whereas the WT tomato upregulated 13-LOX (lipoxygenase), jasmonic acid and glutamate biosynthesis pathways, it downregulated processes related to chlorogenic acid biosynthesis II, phenylpropanoid biosynthesis and hydroxycinnamic acid tyramine amide biosynthesis; the RNAi–SlPH line upregulated UDP-D-galacturonate biosynthesis I and free phenylpropanoid acid biosynthesis, but mainly downregulated pathways related to sugar metabolism, such as the glyoxylate cycle and L-arabinose degradation II. Comparison of C. gloeosporioides gene expression during colonization of the WT and RNAi–SlPH lines showed that the fungus upregulates ammonia and nitrogen transport and the gamma-aminobutyric acid metabolic process during colonization of the WT, while on the RNAi–SlPH tomato, it mainly upregulates the nitrate metabolic process. Conclusions Modulation of tomato acidity and pH had significant phenotypic effects on C. gloeosporioides development. The fungus showed increased colonization on the neutral RNAi–SlPH fruit, and limited colonization on the WT acidic fruit. The change in environmental pH resulted in different defense responses for the two tomato lines. Interestingly, the WT line showed upregulation of jasmonate pathways and glutamate accumulation, supporting the reduced symptom development and increased ammonia accumulation, as the fungus might utilize glutamate to accumulate ammonia and increase environmental pH for better expression of pathogenicity factors. This was not found in the RNAi–SlPH line which downregulated sugar metabolism and upregulated the phenylpropanoid pathway, leading to host susceptibility.
机译:摘要背景破坏性植物病理学Colletotrichum gleoosporioides在果实中导致炭疽病疾病。在宿主定植期间,它分泌氨,其调节环境pH并调节基因表达,有助于致病性。然而,从未评估过宿主pH环境对病原体殖民化的影响。通过降低酸度基因表达的中源性番茄株,SLPH(solyc10g074790.1.1)的发展,使得这种分析。来自C.的总RNA,C. gloooosporioides定植野生型(wt)和Rnai-slph番茄素线,并进行比较基因表达模式。结果C.与pH 4.2相比,GloooSporioides与pH5.96接种RNAi-SLPH系比较pH 4.2的殖民化较高的30%,降低氨积累。殖民化RNAi-SLPH和WT线的大规模比较转录组分析显示了它们不同的定植模式激活机制:而WT番茄上调的13-LOX(脂氧基酶),茉莉酸和谷氨酸生物合成途径,其下调与绿原相关的方法下调酸生物合成II,苯丙烷化生物合成和羟基氨基酸酪甲酰胺酰胺生物合成; RNAI-SLPH系列上调UDP-D-半乳尿醛酸盐生物合成I和游离苯基丙醇酸生物合成,但主要是与糖代谢相关的下调途径,例如乙酰氨氧基化循环和L-阿拉伯糖降解II。 C.的比较WT和RNAI-SLPH线的定植过程中的GroooSporioIDe基因表达表明,真菌在WT的殖民化过程中升级氨和氮气转运和γ-氨基丁酸代谢过程,而在RNAi-Slph番茄中,主要是上调硝酸盐代谢过程。结论番茄酸度和pH的调节对C. gloooosporioide发育具有显着的表型作用。真菌表明,在中性RNAi-Slph果实上增加了殖民化,并对WT酸性果实有限的殖民化。环境pH的变化导致两条番茄线的不同防御反应。有趣的是,WT系列显示出茉莉酸盐途径和谷氨酸积累的上调,支持降低的症状发育和增加的氨积累,因为真菌可以利用谷氨酸积累氨并增加环境pH以更好地表达致病性因子。这在RNAi-Slph系中未发现,下调糖代谢并上调苯丙烷型途径,导致宿主敏感性。

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