Singh Jagmohan, Aggarwal Rashmi, Bashyal Bishnu Maya, Darshan K, Meena Bharat Raj, Yadav Jagdish, Saharan M S, Hussain Zakir
Division of Plant Pathology, ICAR- Indian Agricultural Research Institute, New Delhi, India.
Guru Angad Dev Veterinary and Animal Sciences University- Krishi Vigyan Kendra, Barnala, India.
Front Genet. 2022 Nov 18;13:1048578. doi: 10.3389/fgene.2022.1048578. eCollection 2022.
is an endophytic fungus, which is recorded effective against several fungal and bacterial diseases in plants. The exclusively induce defense as mechanism of biocontrol for against phyto-pathogens is reported. Our pervious study states the effectiveness of induced defense by (Cg), in tomato against . In this study the temporal transcriptome analysis of tomato plants after treatment with was performed for time points at 0 hpCi, 12 hpCi, 24 hpCi and 96 phCi. The temporal expression analysis of genes belonging to defense signaling pathways indicates the maximum expression of genes at 12 h post Cg inoculation. The sequential progression in JA signaling pathway is marked by upregulation of downstream genes (Solyc10g011660, Solyc01g005440) of JA signaling at 24 hpCi and continued to express at same level upto 96 hpCi. However, the NPR1 (Solyc07g040690), the key regulator of SA signaling is activated at 12 h and repressed in later stages. The sequential expression of phenylpropanoid pathway genes (Solyc09g007920, Solyc12g011330, Solyc05g047530) marks the activation of pathway with course of time after Cg treatment that results in lignin formation. The plant defense signaling progresses in sequential manner with time course after Cg treatment. The results revealed the involvement of signaling pathways of ISR and SAR in systemic resistance induced by Cg in tomato, but with temporal variation.
是一种内生真菌,据记载对植物中的多种真菌和细菌疾病有效。据报道,其通过诱导防御作为对抗植物病原体的生物防治机制。我们之前的研究表明了(Cg)在番茄中诱导防御对的有效性。在本研究中,对用处理后的番茄植株在0 hpCi、12 hpCi、24 hpCi和96 phCi的时间点进行了时间转录组分析。属于防御信号通路的基因的时间表达分析表明,在接种Cg后12小时基因表达量最高。JA信号通路的顺序进展以JA信号下游基因(Solyc10g011660、Solyc01g005440)在24 hpCi时上调为标志,并在96 hpCi时持续以相同水平表达。然而,SA信号的关键调节因子NPR1(Solyc07g040690)在12小时被激活,并在后期受到抑制。苯丙烷途径基因(Solyc09g007920、Solyc12g011330、Solyc05g047530)的顺序表达标志着Cg处理后随着时间推移该途径的激活,从而导致木质素形成。Cg处理后,植物防御信号随时间进程以顺序方式进展。结果表明,ISR和SAR信号通路参与了Cg在番茄中诱导的系统抗性,但存在时间差异。