Moosa Anam, Zulfiqar Faisal, Siddique Kadambot H M
Department of Plant Pathology, Faculty of Agriculture and Environment, The Islamia University of Bahawalpur, Bahawalpur, Pakistan.
Department of Horticultural Sciences, Faculty of Agriculture and Environment, The Islamia University of Bahawalpur, Bahawalpur, Pakistan.
Front Plant Sci. 2022 Nov 3;13:1048433. doi: 10.3389/fpls.2022.1048433. eCollection 2022.
Green and blue mold of citrus are threatening diseases that continuously inflict economic post-harvest loss. The suppressive effect of salicylic (SA) and (CV) on green and blue mold of sweet oranges was investigated in this study. Among five tested plant extracts methanolic extract of Cinnamon caused the highest colony growth inhibition of and in an antifungal assay. The methanolic extract of Cinnamon in combination with SA showed the lowest disease incidence and severity of green and blue mold on citrus fruit without affecting the fruit quality. Transcriptional profiling of defense enzymes revealed that the polyphenol oxidase (), phenylalanine ammonia-lyase (), and peroxidase () genes were upregulated in fruit treated with CV, SA, and their combination compared to the control. The treatment SA+CV caused the highest upsurge in , , and gene expression than the control. Furthermore, the biochemical quantification of PPO, POD and PAL also revealed a similar pattern of activity. The present findings unravel the fact that the escalation in the activity of tested defense enzymes is possibly associated with the reduced incidence of blue and green molds. In conclusion, the study unveils the promising suppressive potential of SA+CV against green and blue mold by regulating the expression of , , and genes. Therefore, these treatments can find a role as safer alternatives to chemicals in the management of post-harvest green and blue mold.
柑橘绿霉病和青霉病是具有威胁性的病害,持续造成采后经济损失。本研究调查了水杨酸(SA)和肉桂挥发油(CV)对甜橙绿霉病和青霉病的抑制作用。在五种受试植物提取物中,肉桂甲醇提取物在抗真菌试验中对绿霉病菌和青霉病菌的菌落生长抑制率最高。肉桂甲醇提取物与SA组合对柑橘果实绿霉病和青霉病的发病率和病情严重程度最低,且不影响果实品质。防御酶的转录谱分析表明,与对照相比,用CV、SA及其组合处理的果实中多酚氧化酶(PPO)、苯丙氨酸解氨酶(PAL)和过氧化物酶(POD)基因上调。SA+CV处理导致PPO、POD和PAL基因表达比对照有最高的上升。此外,PPO、POD和PAL的生化定量也显示出类似的活性模式。目前的研究结果揭示了一个事实,即受试防御酶活性的提高可能与蓝霉病和绿霉病发病率的降低有关。总之,该研究揭示了SA+CV通过调节PPO、POD和PAL基因的表达对绿霉病和青霉病具有良好的抑制潜力。因此,这些处理方法可作为采后绿霉病和青霉病管理中比化学药剂更安全的替代品。