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利用植物合成的银纳米粒子进行纳米引发技术,提高陈化水稻种子的发芽率和淀粉代谢。

Nanopriming technology for enhancing germination and starch metabolism of aged rice seeds using phytosynthesized silver nanoparticles.

机构信息

Department of Civil and Environmental Engineering, Faculty of Engineering, The University of Auckland, Private Bag 92019, Auckland, 1142, New Zealand.

School of Physics, Institute of Science, Suranaree University of Technology, Nakhon, Ratchasima, 30000, Thailand.

出版信息

Sci Rep. 2017 Aug 15;7(1):8263. doi: 10.1038/s41598-017-08669-5.

Abstract

Application of nanomaterials for agriculture is relatively new as compared to their use in biomedical and industrial sectors. In order to promote sustainable nanoagriculture, biocompatible silver nanoparticles (AgNPs) have been synthesized through green route using kaffir lime leaf extract for use as nanopriming agent for enhancing seed germination of rice aged seeds. Results of various characterization techniques showed the successful formation of AgNPs which were capped with phytochemicals present in the plant extract. Rice aged seeds primed with phytosynthesized AgNPs at 5 and 10 ppm significantly improved germination performance and seedling vigor compared to unprimed control, AgNO priming, and conventional hydropriming. Nanopriming could enhance α-amylase activity, resulting in higher soluble sugar content for supporting seedlings growth. Furthermore, nanopriming stimulated the up-regulation of aquaporin genes in germinating seeds. Meanwhile, more ROS production was observed in germinating seeds of nanopriming treatment compared to unprimed control and other priming treatments, suggesting that both ROS and aquaporins play important roles in enhancing seed germination. Different mechanisms underlying nanopriming-induced seed germination were proposed, including creation of nanopores for enhanced water uptake, rebooting ROS/antioxidant systems in seeds, generation of hydroxyl radicals for cell wall loosening, and nanocatalyst for fastening starch hydrolysis.

摘要

与在生物医学和工业领域的应用相比,纳米材料在农业中的应用相对较新。为了促进可持续的纳米农业,本研究通过绿色路线合成了生物相容性的银纳米颗粒(AgNPs),并将其用作纳米引发剂,以提高陈化水稻种子的发芽率。各种表征技术的结果表明,成功合成了 AgNPs,这些 AgNPs 被植物提取物中的植物化学物质所覆盖。与未引发对照、AgNO3 引发和常规水引发相比,用 5 和 10 ppm 的植物合成 AgNPs 引发的陈化水稻种子的发芽性能和幼苗活力显著提高。纳米引发可以增强α-淀粉酶的活性,从而产生更高的可溶性糖含量,以支持幼苗生长。此外,纳米引发刺激了发芽种子中水通道蛋白基因的上调。同时,与未引发对照和其他引发处理相比,纳米引发处理的发芽种子中观察到更多的 ROS 产生,这表明 ROS 和水通道蛋白在增强种子发芽中都起着重要作用。提出了纳米引发诱导种子发芽的不同机制,包括创建纳米孔以增强水分吸收、重新启动种子中的 ROS/抗氧化系统、生成用于细胞壁松解的羟基自由基以及作为加快淀粉水解的纳米催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e131/5557806/6d4c8a5babbc/41598_2017_8669_Fig1_HTML.jpg

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