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首页> 外文期刊>Journal of Agricultural Science >Extracts From Leaves of Allamanda blanchetti Inducing Mechanism of Defense to Diseases in Sugarcane
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Extracts From Leaves of Allamanda blanchetti Inducing Mechanism of Defense to Diseases in Sugarcane

机译:白花杜鹃叶提取物诱导甘蔗抗病机理

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摘要

This research aims to analyze the effect of the extract from a native plant from Caatinga, Allamanda blanchetti, in the induction of resistance mechanisms in a sugarcane variety smut-susceptible. Initially, it carried out a phytochemical analysis to know the main plant compounds used in this study. Diverse chemicals content in ethanolic extract from A. blanchetii were detected by thin-layer chromatography (TLC). Flavonoids, were more abundant compounds following by terpenes, stereroids and saponins. Under greenhouse conditions the sugarcane plants, SP-791011 (smut-susceptible), were sprayed with extracts from A. blanchetti extracted at cold at concentrations of 1000 ppm and acilbenzolar-S-metil (ASM) (100 mg/L). Leaves were collected at 0, 24 and 48 hours after spraying and used in the RT-PCR analysis for to identify the defense gene expression. Change in gene expression were observed in the different treatments, especially in the expression of pathogenesis-related (PR) genes. The extract of A. blanchetti induced an increase in the glucanase expression and was more effective than ASM inducer. SNPR1 gene show increased in the two treatment. The results indicate that A. blanchetti extracts was able to activate the resistance mechanism as observed in resistant plants. This paper is the first report about the use of Caatinga natural plant extracts inducing resistance genes against Sporisorium scitamineum in sugarcane susceptible genotype.
机译:这项研究旨在分析从Caatinga的一种野生植物Allamanda blanchetti提取的提取物,在诱导易感的甘蔗品种中产生抗性机制。最初,它进行了植物化学分析,以了解本研究中使用的主要植物化合物。通过薄层色谱法(TLC)检测了桔梗乙醇提取物中的多种化学物质含量。黄酮类化合物是继萜类化合物,类固醇和皂苷之后含量更高的化合物。在温室条件下,对甘蔗植株SP-791011(易感黑穗病)喷洒来自深冷提取的A. blanchetti的提取物,其浓度为1000 ppm,并加入苯并安培灵(ASM)(100 mg / L)。在喷雾后0、24和48小时收集叶片,并将其用于RT-PCR分析以鉴定防御基因表达。在不同的治疗方法中观察到基因表达的变化,特别是在发病机理相关(PR)基因的表达中。布朗奇蒂提取物诱导葡聚糖酶表达增加,并且比ASM诱导剂更有效。 SNPR1基因显示在两种处理中均增加。结果表明,如在抗性植物中观察到的,A。blanchetti提取物能够激活抗性机制。本文是关于使用Caatinga天然植物提取物诱导甘蔗易感基因型中抗鞘孢子虫抗性基因的第一份报道。

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