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碳点促进 dsRNA 在植物中的传递,并增加局部和系统的 siRNA 产生。

Carbon Dots Boost dsRNA Delivery in Plants and Increase Local and Systemic siRNA Production.

机构信息

Instituto Andaluz de Investigación y Formación Agraria (IFAPA), Churriana, 290140 Malaga, Spain.

Universidad de Málaga, 29010 Malaga, Spain.

出版信息

Int J Mol Sci. 2022 May 10;23(10):5338. doi: 10.3390/ijms23105338.

Abstract

In this work, we obtained carbon dots from glucose or saccharose as the nucleation source and passivated them with branched polyethylenimines for developing dsRNA nanocomposites. The CDs were fully characterized using hydrodynamic analyses, transmission electron microscopy, X-ray photoelectron spectroscopy and Fourier transform infrared spectroscopy. The ζ potential determined that the CDs had positive charges, good electrophoretic mobility and conductivity, and were suitable for obtaining dsRNA nanocomposites. DsRNA naked or coated with the CDs were delivered to leaves of cucumber plants by spraying. Quantitation of the dsRNA that entered the leaves showed that when coated with the CDs, 50-fold more dsRNA was detected than when naked dsRNA. Moreover, specific siRNAs derived from the sprayed dsRNAs were 13 times more abundant when the dsRNA was coated with the CDs. Systemic dsRNAs were determined in distal leaves and showed a dramatic increase in concentration when delivered as a nanocomposite. Similarly, systemic siRNAs were significantly more abundant in distal leaves when spraying with the CD-dsRNA nanocomposite. Furthermore, FITC-labeled dsRNA was shown to accumulate in the apoplast and increase its entry into the plant when coated with CDs. These results indicate that CDs obtained by hydrothermal synthesis are suitable for dsRNA foliar delivery in RNAi plant applications.

摘要

在这项工作中,我们从葡萄糖或蔗糖中获得碳点作为成核源,并通过支化聚乙烯亚胺对其进行钝化,以开发 dsRNA 纳米复合材料。使用流体动力分析、透射电子显微镜、X 射线光电子能谱和傅里叶变换红外光谱对 CDs 进行了全面表征。ζ 电位确定 CD 带正电荷,具有良好的电泳迁移率和导电性,适合获得 dsRNA 纳米复合材料。dsRNA 裸或用 CD 涂层通过喷雾递送至黄瓜植物叶片。进入叶片的 dsRNA 的定量表明,当用 CD 涂层时,比裸 dsRNA 检测到的 dsRNA 多 50 倍。此外,当 dsRNA 用 CD 涂层时,源自喷雾 dsRNA 的特定 siRNA 丰富了 13 倍。在远端叶片中确定了系统 dsRNA,当作为纳米复合材料递送时,其浓度显着增加。同样,当用 CD-dsRNA 纳米复合材料喷雾时,远端叶片中的 siRNA 明显更丰富。此外,FITC 标记的 dsRNA 显示在外质中积累,并在与 CD 涂层时增加其进入植物的能力。这些结果表明,通过水热合成获得的 CD 适合于 RNAi 植物应用中的 dsRNA 叶面递药。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30ae/9141514/02b4b326383f/ijms-23-05338-g001.jpg

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