Department of Plant Pathology, University of the Punjab, Lahore, 54590, Pakistan.
Department of Botany, Lahore College for Women University, Lahore, Pakistan.
Sci Rep. 2022 May 20;12(1):8561. doi: 10.1038/s41598-022-10795-8.
In agriculture, the search for higher net profit is the main challenge in the economy of the producers and nano biochar attracts increasing interest in recent years due to its unique environmental behavior and increasing the productivity of plants by inducing resistance against phytopathogens. The effect of rice straw biochar and fly ash nanoparticles (RSBNPs and FNPs, respectively) in combination with compost soil on bacterial leaf spot of pepper caused by Xanthomonas campestris pv. vesicatoria was investigated both in vitro and in vivo. The application of nanoparticles as soil amendment significantly improved the chili pepper plant growth. However, RSBNPs were more effective in enhancing the above and belowground plant biomass production. Moreover, both RSBNPs and FNPs, significantly reduced (30.5 and 22.5%, respectively), while RSBNPs had shown in vitro growth inhibition of X. campestris pv. vesicatoria by more than 50%. The X-ray diffractometry of RSBNPs and FNPs highlighted the unique composition of nano forms which possibly contributed in enhancing the plant defence against invading X. campestris pv. vesicatoria. Based on our findings, it is suggested that biochar and fly ash nanoparticles can be used for reclaiming the problem soil and enhance crop productivity depending upon the nature of the soil and the pathosystem under investigation.
在农业领域,寻求更高的净利润是生产者经济中的主要挑战,而纳米生物炭由于其独特的环境行为和通过诱导植物对病原菌的抗性来提高植物生产力,近年来引起了越来越多的关注。本研究分别采用水稻秸秆生物炭和粉煤灰纳米颗粒(RSBNPs 和 FNPs)与堆肥土壤相结合的方法,研究了其对由丁香假单胞菌引起的辣椒叶斑病的防治效果。在体外和体内都研究了纳米颗粒作为土壤改良剂对辣椒生长的影响。结果表明,纳米颗粒的应用显著促进了辣椒植株地上和地下部分的生物量积累。然而,RSBNPs 对提高地上和地下植物生物量的效果更为显著。此外,RSBNPs 和 FNPs 都显著降低了(分别为 30.5%和 22.5%),而 RSBNPs 在体外对丁香假单胞菌 pv.vesicatoria 的生长抑制率超过 50%。RSBNPs 和 FNPs 的 X 射线衍射分析突出了纳米形态的独特组成,这可能有助于增强植物对入侵丁香假单胞菌 pv.vesicatoria 的防御能力。基于我们的发现,建议根据土壤的性质和所研究的病理系统,使用生物炭和粉煤灰纳米颗粒来修复问题土壤并提高作物生产力。