纳米复合材料调控、抑制和防治小麦叶、茎锈病的分子模拟与对接研究

Israa. M. Shamkh, D. Pratiwi, M. A. E. Magd, Ahmed Salih El Faki
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引用次数: 0

摘要

小麦锈病(Pgt)和小麦锈病(Pt)是小麦茎锈病和叶锈病的致病因子,它们分别形成新的生理小种,显著降低小麦品种的生长和产量。因此,寻求探索纳米复合材料对叶、茎锈病是否有抑制作用,以调控、抑制和治理小麦叶、茎锈病为目标,不断开发出抗茎、叶锈病的新型小麦农药。该研究的目的是寻找天然和纳米化合物来控制、治疗和调节小麦锈病。本研究采用分子模拟和对接的方法,对小麦茎叶锈病MAP激酶1和PGTG进行了分子模拟和对接。在硅分析中,这两种重要蛋白的活性被抑制和抑制。本研究选择的壳聚糖和壳聚糖-Cu作为安全化合物,它们与MAPK1和PGAT蛋白相互作用,因此与靶标相互作用的生物活性化合物可以作为一种有效的抑制剂来阻断我们蛋白质的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IN SILICO MOLECULAR MODELING AND DOCKING STUDIES OF NANO COMPOSITES COMPOUND TO REGULATION, INHIBITION AND TREATMENT LEAF AND STEM WHEAT RUST
Puccinia graminis f. sp. tritici (Pgt) and P. triticina (Pt), the causal agents of stem and leaf rust, respectively form new physiological races that significantly reduce growth and yield of wheat cultivars. Therefore, seeking for exploring if there an inhibition effect of the Nano Composites compound on leaf and stem rust to regulation, inhibition and treatment leaf and stem wheat rust objectives to continuously produce new wheat pesticides resistant to stem and leaf rust. The aim of the study was to finding natural and Nano compounds to control, treatment and regulation of wheat rust. In this study we used molecular modeling and docking for the two vital proteins in stem and leaf wheat rust MAP kinase 1 [Puccinia triticina] and PGTG Puccinia graminis f. sp. Tritici. In the silico analysis, the two vital proteins activity is suppressed and inhibited In this work the chitosan and chitosan –Cu which selected for the study are considered as safe compounds the compounds showed interaction with the MAPK1 and PGAT proteins Thus the bioactive compounds that are interacting with the target can be used as a potent inhibitor to block the action of our proteins.
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