Functionalized Carbon Dot‐Delivered RNA Nano Fungicides as Superior Tools to Control Phytophthora Pathogens through Plant RdRP1 Mediated Spray‐Induced Gene Silencing

辣椒疫霉 RNA沉默 疫霉菌 杀菌剂 生物 基因沉默 效应器 卵菌 疫病疫霉菌 微生物学 核糖核酸 病菌 基因 RNA干扰 植物 细胞生物学 遗传学
作者
Zhiwen Wang,Yu Li,Borui Zhang,Xiang Gao,Mengru Shi,Sicong Zhang,Shan Zhong,Zheng Yang,Xili Liu
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:33 (22) 被引量:68
标识
DOI:10.1002/adfm.202213143
摘要

Abstract Spray‐induced gene silencing (SIGS) represents an attractive avenue for plant protection, but limited uptake efficiency of double‐stranded RNA (dsRNA) has restricted its application against the notorious oomycetes, Phytophthora . To control Phytophthora , dsRNAs targeting two essential genes in Phytophthora are screened for their ability to partially decrease Phytophthora capsici ( P. capsici ) infection and fecundity. To further facilitate SIGS for Phytophthora control, functionalized carbon dots (CDs) are complexed with the screened dsRNAs (dsRNA‐CDs) through electrostatic interaction. dsRNA‐CDs significantly enhanced the control efficacy of dsRNA against Phytophthora infestans , Phytophthora sojae , and both the wild‐type and fungicide‐resistant P. capsici . The synergism is based on enhancing dsRNA stability and internalization. Dual treatment with dsRNA‐CDs and the corresponding fungicide reduced the amount of fungicide required to achieve the same protective effect by 90%. Plant RdRP1 is the main effector in processing various lengths of small RNAs to induce translation inhibition in Phytophthora . Notably, here the first application of a nano‐delivery system to improve the effect of SIGS against Phytophthora pathogens is reported. Moreover, the elucidation of how CD facilitates dsRNA internalization in recipient cell and the molecular mechanism of SIGS can benefit the application of dsRNA‐CDs in other plant‐pathogen pathosystems through improving dsRNA bioactivity and reducing chemical fungicides application.
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