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The Role of Anthocyanin Content of Garden Balsam’s (Impatiens balsamina L.) Flower Extract on the Growth of Ralstonia solanacearum

机译:花园Balsam(Impatiens Balsamina L.)花提取物对Ralstonia solanacearum的生长的作用

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摘要

The study was aimed to determine the response of bacterial growth of Ralstonia solanacearum  Race  I of  biovar  III  phylotype  I  treated  with  flower  extract  of Garden Balsam (Impatiens balsamina L.) on different color of flower, that was able to give the strongest antibacterial compound and to determine the physical characteristics of I. balsamina in order to facilitate the purpose of the garden balsam cultivation as antibacterial. In addition, this study also aimed to determine the highest total anthocyanin content (TAC) and to determine the molecular characteristics of anthocyanin-coding genes and DNA base sequences of I. balsamina that indicated antibacterial properties. The research used Completely Randomized Design (CRD) 2 X 4 each with 3 replications. The first factor was the method of plating bacteria culture (pour plate and streak plate method), the second factor was the color of the garden balsam flower extracts consisted of white, red, purple and magenta. Therefore, the experiment consisted of 8 treatments of combination. Data were analyzed using CRD (α = 0.05). The results showed that the average combination of pour plate and red flower extract gave the value of resistance velocity on the 3rd day with the diameter of the inhibition zone was 33.46 mm, with the inhibitory zone diameter of the garden balsam extract of 22.90 mm. Red flower plants showed a bright red stem on the braches and the pointed leaf edge. Although this red does not show the total content of anthocyanin compounds higher than purple, however from RAPD analysis for red color indicated the anthocyanin of pelargonidin as an anthocyanin compound responsible for its antibacterial properties.
机译:该研究旨在确定含有花园Balsam(Impatiens Balsamina L.)的花萃取物在不同颜色的花萃取物(Impatiens Balsamina L.)的生物糖型III植物III族种子I的细菌生长的响应。能够给予最强的抗菌化合物和为了促进花园苯胺培养作为抗菌的目的,确定I. Balsamina的物理特征。此外,本研究还旨在确定最高的三孔蛋白含量(TAC),并确定一种指示抗菌性质的苯甲酸盐蛋白编码基因和DNA碱基序列的分子特征。该研究使用完全随机设计(CRD)2×4,每个都有3个复制。第一因素是电镀细菌培养物(浇注板和条纹板方法)的方法,第二个因素是花园Balsam花提取物的颜色由白色,红色,紫色和洋红色组成。因此,实验由8种组合治疗组成。使用CRD(α= 0.05)分析数据。结果表明,倒板和红色花提取物的平均结合在第3天的抗性速度下,抑制区的直径为33.46毫米,抑制区直径为22.90毫米。红色花卉植物在钻沟和尖头叶缘上显示了一个明亮的红色茎。虽然这种红色没有显示比紫色高的花青素化合物的总含量,但是从RAPD分析到红颜色表明了平底血素的花青素,为负责其抗菌性质的花青素化合物。

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