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铜和银纳米颗粒引发种子及叶面喷施对 种植物生长和蓟马侵害的调控作用

Copper and Silver Nanoparticle Seed Priming and Foliar Spray Modulate Plant Growth and Thrips Infestation in spp.

作者信息

Mawale Kiran Suresh, Nandini B, Giridhar Parvatam

机构信息

Plant Cell Biotechnology Department, CSIR-Central Food Technological Research Institute, Mysuru 570020, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.

出版信息

ACS Omega. 2024 Jan 6;9(3):3430-3444. doi: 10.1021/acsomega.3c06961. eCollection 2024 Jan 23.

Abstract

Nanoparticles (NPs) have the potential to improve plant health and secondary metabolite production. In the present study, three different NPs, i.e., Ag, Cu, and Cu-Ag NPs were produced in the range from 25 to 86 nm, with zeta potentials ranging from -28.8 to -38.5 mV. The synthesized NPs were used for seed priming and foliar spray on three varieties of , i.e., Arka Sweta (AS), Arka Meghana (AM), and Arka Harita (AH) plants grown under greenhouse conditions. Seed priming at various concentrations of NPs (1, 10, 20 ppm) enhanced the seed germination (96%), seedling vigor index (2494-3112.66), seedling length (6-49%), and biomass (46%) of 45 days old Arka Meghana seedlings. Additionally, all plant tissues accumulated significantly higher amounts of chlorophyll (51-142%), carotenoids (23-94.2%), total phenolic content (73%), and total flavonoid content (57%), compared with the control ( ≤ 0.05). The foliar spray of NPs (20-100 ppm) has a protective effect on the chili plants against thrips infestation (30-76%). The foliar spray enhanced chlorophyll (15-62%), carotenoids (15-50%), total phenolic content (20-62%), total flavonoid content (64-99%), reducing sugars (15-97%), total antioxidant activity (15-142%), ferric reducing antioxidant power assay (15-109%), DPPH (129-54 mg mL), and capsaicinoids (capsaicin and dihydrocapsaicin) (82-128%). This study illustrates that Ag, Cu, and Cu-Ag NPs suppress thrips infestation and proliferation with enhanced plant growth and biochemical activity, which is inversely proportional to the NP size. Chemical NPs play a crucial role in the economic significance of chili plants, offering a promising avenue for developing pesticides to effectively combat thrips infestation. This advancement holds great potential in enhancing the overall agronomic productivity of the chili crops.

摘要

纳米颗粒(NPs)有潜力改善植物健康状况并提高次生代谢产物产量。在本研究中,制备了三种不同的纳米颗粒,即银、铜和铜 - 银纳米颗粒,粒径范围为25至86纳米,zeta电位范围为 - 28.8至 - 38.5毫伏。合成的纳米颗粒用于对温室条件下种植的三种辣椒品种,即阿尔卡·斯韦塔(AS)、阿尔卡·梅加纳(AM)和阿尔卡·哈里塔(AH)进行种子引发和叶面喷施。不同浓度(1、10、20 ppm)的纳米颗粒进行种子引发,提高了45日龄阿尔卡·梅加纳幼苗的种子发芽率(96%)、幼苗活力指数(2494 - 3112.66)、幼苗长度(6 - 49%)和生物量(46%)。此外,与对照相比,所有植物组织中叶绿素(51 - 142%)、类胡萝卜素(23 - 94.2%)、总酚含量(73%)和总黄酮含量(57%)的积累量均显著更高(P≤0.05)。纳米颗粒(20 - 100 ppm)的叶面喷施对辣椒植株具有防治蓟马侵害的保护作用(30 - 76%)。叶面喷施提高了叶绿素(15 - 62%)、类胡萝卜素(15 - 50%)、总酚含量(20 - 62%)、总黄酮含量(64 - 99%)、还原糖(15 - 97%)、总抗氧化活性(15 - 142%)、铁还原抗氧化能力测定值(15 - 109%)、DPPH(129 - 54毫克/毫升)和辣椒素类物质(辣椒素和二氢辣椒素)(82 - 128%)。本研究表明,银、铜和铜 - 银纳米颗粒可抑制蓟马侵害和增殖,同时促进植物生长和生化活性,且这与纳米颗粒大小成反比。化学纳米颗粒在辣椒植株的经济意义方面发挥着关键作用,为开发有效防治蓟马侵害的农药提供了一条有前景的途径。这一进展在提高辣椒作物的整体农艺生产力方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b3b/10809252/e150e4be6fe8/ao3c06961_0001.jpg

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