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Cellulose Nanocrystal Surface Cationization: A New Fungicide with High Activity against Phycomycetes capsici

机译:纤维素纳米晶体表面阳离子化:一种新的杀菌剂对辣椒囊藻具有高活性

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摘要

At present, the management of Phytophthora capsici (P. capsici) mainly relies on chemical pesticides. However, along with the resistance generated by P. capsici to these chemical pesticides, the toxicity and non-degradability of this chemical molecule may also cause serious environmental problems. Herein, a new bio-based nano-antifungal material (CNC@CTAB) was made with coating hexadecyl trimethyl ammonium bromide (CTAB) on the surface of a cellulose nanocrystal (CNC). This material was then applied to the prevention of P. capcisi. This particle was facilely fabricated by mixing CTAB and sulfuric group modified CNC in an aqueous solvent. Compared to pure CTAB, the enrichment of CTAB on the CNC surface showed a better anti-oomycete activity both in vitro and in vivo. When CNC@CTAB was applied on P. capsici in vitro, the inhibition rate reached as high as 100%, while on the pepper leaf, the particle could also efficiently prevent the infection of P. capsici, and achieve a disease index as low as zero Thus, considering the high safety of CNC@CTAB in agricultural applications, and its high anti-oomycete activity against P. capsici, we believe that this CNC@CTAB has great application potential as a new green nano-fungicide in P. capsici management during the production of peppers or other vegetables.
机译:目前,辣椒疫霉菌(P. capsici)的管理主要依靠化学农药。然而,连同辣椒辣椒对这些化学农药产生的抗性,该化学分子的毒性和不可降解性也可能引起严重的环境问题。在此,通过在纤维素纳米晶体(CNC)的表面上涂覆十六烷基三甲基溴化铵(CTAB)来制备新的生物基纳米抗真菌材料(CNC @ CTAB)。然后将该材料用于预防Capcisi capcisi。通过在水性溶剂中混合CTAB和硫基改性的CNC可以轻松制造该颗粒。与纯CTAB相比,CTAB在CNC表面的富集在体外和体内均显示出更好的抗卵菌活性。当将CNC @ CTAB体外应用于辣椒辣椒中时,其抑制率高达100%,而在辣椒叶上,该颗粒还可以有效地预防辣椒辣椒的感染,并达到低至疾病指数。零因此,考虑到CNC @ CTAB在农业应用中的高安全性及其对辣椒疫霉菌的高抗卵菌活性,我们认为,CNC @ CTAB作为辣椒疫霉菌管理中的新型绿色纳米杀菌剂具有巨大的应用潜力。在生产辣椒或其他蔬菜时。

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