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植物激发子瑞香素-羧甲基壳聚糖纳米粒通过激活植物系统抗性防治青枯菌的分子机制。

Molecular mechanism of plant elicitor daphnetin-carboxymethyl chitosan nanoparticles against Ralstonia solanacearum by activating plant system resistance.

机构信息

Laboratory of Natural Products Pesticides, College of Plant Protection, Southwest University, Chongqing 400715, China.

Chongqing Tobacco Industry Co., Ltd., Chongqing 400060, China.

出版信息

Int J Biol Macromol. 2023 Jun 30;241:124580. doi: 10.1016/j.ijbiomac.2023.124580. Epub 2023 Apr 24.

DOI:10.1016/j.ijbiomac.2023.124580
PMID:37100321
Abstract

The exploration of biopolymer-based materials to avoid hazardous chemicals in agriculture has gained enormous importance for sustainable crop protection. Due to its good biocompatibility and water solubility, carboxymethyl chitosan (CMCS) has been widely applied as a pesticide carrier biomaterial. However, the mechanism by which carboxymethyl chitosan-grafted natural product nanoparticles induce tobacco systemic resistance against bacterial wilt remains largely unknown. In this study, water-soluble CMCS-grafted daphnetin (DA) nanoparticles (DA@CMCS-NPs) were successfully synthesized, characterized, and assessed for the first time. The grafting rate of DA in CMCS was 10.05 %, and the water solubility was increased. In addition, DA@CMCS-NPs significantly increased the activities of CAT, PPO and SOD defense enzymes, activated the expression of PR1 and NPR1, and suppressed the expression of JAZ3. DA@CMCS-NPs could induce immune responses against R. solanacearum in tobacco, including increases in defense enzymes and overexpression of pathogenesis-related (PR) proteins. The application of DA@CMCS-NPs effectively suppressed the development of tobacco bacterial wilt in pot experiments, and the control efficiency was as high as 74.23 %, 67.80 %, 61.67 % at 8, 10, and 12 days after inoculation. Additionally, DA@CMCS-NPs has excellent biosafety. Therefore, this study highlighted the application of DA@CMCS-NPs in manipulating tobacco to generate defense responses against R. solanacearum, which can be attributed to systemic resistance.

摘要

探索基于生物聚合物的材料以避免农业中的有害化学物质,对于可持续的作物保护具有重要意义。由于其良好的生物相容性和水溶性,羧甲基壳聚糖(CMCS)已被广泛用作农药载体生物材料。然而,羧甲基壳聚糖接枝天然产物纳米颗粒诱导烟草对细菌性萎蔫病产生系统抗性的机制在很大程度上尚不清楚。在本研究中,首次成功合成、表征并评估了水溶性 CMCS 接枝瑞香素(DA)纳米颗粒(DA@CMCS-NPs)。DA 在 CMCS 中的接枝率为 10.05%,水溶性增加。此外,DA@CMCS-NPs 显著提高了 CAT、PPO 和 SOD 防御酶的活性,激活了 PR1 和 NPR1 的表达,并抑制了 JAZ3 的表达。DA@CMCS-NPs 可诱导烟草对青枯雷尔氏菌的免疫反应,包括防御酶的增加和病程相关(PR)蛋白的过表达。在盆栽实验中,DA@CMCS-NPs 的应用有效地抑制了烟草细菌性萎蔫病的发展,在接种后 8、10 和 12 天,防治效率分别高达 74.23%、67.80%和 61.67%。此外,DA@CMCS-NPs 具有优异的生物安全性。因此,本研究强调了 DA@CMCS-NPs 在操纵烟草产生对青枯雷尔氏菌防御反应中的应用,这归因于系统抗性。

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