López Miguel, Miranda Elisa, Ramos Cecilia, García Héctor, Neira-Carrillo Andrónico
Department of Biological Animal Sciences, Faculty of Veterinary and Animal Sciences, University of Chile, La Pintana, Santiago 8820808, Chile.
Department of Molecular Biology, Laboratorios Diagnofruit Ltda., Ñuñoa, Santiago 7770273, Chile.
Plants (Basel). 2020 May 10;9(5):607. doi: 10.3390/plants9050607.
Chitin is an excellent material for the synthesis of nanoparticles because it is an elicitor and can form nanostructured materials. The application of chitin nanoparticles (CNPs) in plants can activate early defense responses associated with chitin. In this study, CNPs were synthesized by water in oil (W/O) emulsion using an aqueous chitin solution. The CNPs were characterized and used to evaluate the activation of genes related to early responses to chitin and the production of reactive oxygen species (ROS) on seedlings of . The CNPs had an average size of 280 nm in diameter, a polydispersity of 0.299, a surface charge of 26.9 mV, and their chemical composition was corroborated by the disappearance of microaggregated CNPs treated with chitinases observed under a microscope. Seedlings treated with CNPs for one hour revealed increments in the expression of genes , , and in contrast when they were treated with chitin oligomers, and no changes in gene was detected in both conditions. Finally, the synthesis of ROS mediated by CNPs was detected in seedlings, which was higher than those generated by the treatment of chitin oligomers. These results demonstrated the capability to generate CNPs by emulsion, which are capable of triggering responses related to early defense in more efficiently than chitin oligomers.
几丁质是合成纳米颗粒的优良材料,因为它是一种诱导剂,能够形成纳米结构材料。几丁质纳米颗粒(CNPs)在植物中的应用可激活与几丁质相关的早期防御反应。在本研究中,通过油包水(W/O)乳液法,利用几丁质水溶液合成了CNPs。对CNPs进行了表征,并用于评估与几丁质早期反应相关基因的激活情况以及对[植物名称未给出]幼苗活性氧(ROS)产生的影响。CNPs的平均直径为280 nm,多分散性为0.299,表面电荷为26.9 mV,通过显微镜观察发现,用几丁质酶处理后的微聚集CNPs消失,从而证实了其化学成分。用CNPs处理一小时的幼苗,与用几丁质寡聚物处理相比,[基因名称未给出]、[基因名称未给出]和[基因名称未给出]基因的表达增加,且在两种处理条件下均未检测到[基因名称未给出]基因的变化。最后,在幼苗中检测到由CNPs介导的ROS合成,其含量高于几丁质寡聚物处理所产生的ROS。这些结果表明通过乳液法能够合成CNPs,其比几丁质寡聚物更有效地触发[植物名称未给出]早期防御相关反应。