Department of Plant Sciences, School of Life Sciences, University of Hyderabad, Prof. C.R. Rao Road, Gachibowli, Hyderabad 500046, India.
FEMS Microbiol Ecol. 2021 Mar 8;97(3). doi: 10.1093/femsec/fiab006.
Comparative transcriptome analysis of Erysiphe pisi-infected pea (Pisum sativum) genotypes JI-2480 (resistant) and Arkel (susceptible) at 72 hours post-inoculation (hpi) was carried to detect molecular components involved in compatible and incompatible interactions. Differential gene expression was observed in Arkel and JI-2480 genotype at 72 hpi with E. pisi isolate (Ep01) using EdgeR software. Out of 32 217 transcripts, 2755 transcripts showed significantly altered gene expression in case of plants while 530 were related to E. pisi (P < 0.05). The higher transcript number of differentially expressed genes demonstrated peak activity of pathogenicity genes in plants at 72 hpi. Glycolysis was observed to be the major pathway for energy source during fungal growth. Differential gene expression of plant transcripts revealed significant expression of putative receptor and regulatory sequences involved in defense in the resistant, JI-2480 compared to susceptible, Arkel genotype. Expression of genes involved in defense and hormonal signaling, genes related to hypersensitive response, reactive oxygen species and phenylpropanoid pathway in JI-2480 indicated their crucial role in disease resistance against E. pisi. Down-regulation of transcription factors like-WRKY-28 and up-regulation of several putative pattern recognition receptors in JI-2480 compared to Arkel also suggested activation of host-mediated defense responses against E. pisi in pea.
在接种后 72 小时(hpi),对感染豌豆白粉菌(Erysiphe pisi)的豌豆(Pisum sativum)基因型 JI-2480(抗性)和 Arkel(敏感)进行比较转录组分析,以检测与亲和和非亲和相互作用相关的分子成分。使用 EdgeR 软件,在 Arkel 和 JI-2480 基因型中观察到 72 hpi 时与 E. pisi 分离株(Ep01)的差异基因表达。在 32217 个转录本中,有 2755 个转录本在植物中表现出显著改变的基因表达,而 530 个与 E. pisi 有关(P<0.05)。差异表达基因的转录本数量较高表明,在 72 hpi 时,植物中致病性基因的活性达到峰值。在真菌生长过程中,糖酵解被观察为主要的能量来源途径。植物转录本的差异基因表达显示,在抗性 JI-2480 中,与敏感 Arkel 基因型相比,与防御相关的假定受体和调节序列的表达显著。参与防御和激素信号的基因、与过敏反应、活性氧和苯丙烷途径相关的基因在 JI-2480 中的表达表明它们在抵抗 E. pisi 方面的重要作用。与敏感 Arkel 相比,JI-2480 中转录因子(如 WRKY-28)的下调和几个假定的模式识别受体的上调也表明,在豌豆中,宿主介导的防御反应被激活,以抵抗 E. pisi。