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Comparison between the effects of potassium phosphite and chitosan on changes in the concentration of Cucurbitacin E and on antibacterial property of Cucumis sativus

机译:亚磷酸钾和壳聚糖对葫芦素E浓度变化和黄瓜的抑菌作用影响的比较

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Background Cucurbitacins are mostly found in the members of the family Cucurbitaceae and are responsible for the bitter taste of cucumber. Pharmacological activities such as anti-bacterial and anti-tumor effects have been attributed to these structurally divers triterpens. The aim of this study was to investigate the effect of potassium phosphite (KPhi) and chitosan on Cucurbitacin E (CuE) concentration in different tissues of Cucumis sativus . The antibacterial effect of plant ethanolic extracts was also examined against E.coli PTCC 1399 and Pseudomonas aeruginosa PTCC 1430 bacterial strains . Methods After emergence of secondary leaves, cucumber plants were divided into 4 groups (each group consisted of 6 pots and each pot contained one plant) and different treatments performed as follows: group1. Leaves were sprayed with distilled water (Control), group 2. The leaves were solely treated with potassium phosphite (KPhi), group 3. Leaves were solely sprayed with chitosan (Chitosan), group 4. Leaves were treated with KPhi and chitosan (KPhi?+?chitosan). The KPhi (2?g L?1) and chitosan (0.2?g L?1) were applied twice every 12?h for one day. Fruits, roots and leaves were harvested 24?h later. The ethanolic extract of plant organs was used for determination of CuE concentration using HPLC approach. The antimicrobial activity was evaluated by the agar well diffusion method. The experiments were arranged in a completely randomized design (CRD) and performed in six biological replications for each treatment. Analysis of variance was performed by one-way ANOVA and Dunnette multiple comparison using SPSS. Results The highest level of CuE was recorded in fruit (2.2 g L?1) of plants under concomitant applications of KPhi and chitosan. Result of antibacterial activity evaluation showed that under concomitant treatments of KPhi and chitosan, fruit extract exhibited the highest potential for activity against E. coli PTCC 1399 (with mean zone of inhibition equal to 36?mm) and Pseudomonas aeruginosa PTCC 1430 (with mean zone of inhibition equal to 33?mm). Conclusions KPhi and chitosan can induce production of CuE compound and increase antibacterial potential of cucumber plant extract. The application of KPhi and chitosan may be considered as promising prospect in the biotechnological production of CuE.
机译:背景葫芦素主要存在于葫芦科中,是造成黄瓜苦味的原因。这些三头萜具有结构上的多样性,例如抗菌和抗肿瘤作用。本研究的目的是研究亚磷酸钾(KPhi)和壳聚糖对黄瓜不同组织中葫芦素E(CuE)浓度的影响。还考察了植物乙醇提取物对大肠杆菌PTCC 1399和铜绿假单胞菌PTCC 1430细菌的抑菌作用。方法将次生叶片出苗后,将黄瓜植株分为4组(每组6盆,每盆含1株植物),不同处理方法如下:第1组。叶片用蒸馏水喷雾(对照组),第2组。仅用亚磷酸钾(KPhi)处理叶片,第3组。仅用壳聚糖(壳聚糖)喷雾,第4组。叶片用KPhi和壳聚糖(KPhi)处理。 +壳聚糖)。每12?h施用两次KPhi(2?g L ?1 )和壳聚糖(0.2?g L ?1 ),一天。 24小时后收获果实,根和叶。使用植物器官的乙醇提取物通过HPLC方法测定CuE浓度。通过琼脂孔扩散法评价抗菌活性。实验以完全随机设计(CRD)进行安排,每种处理均进行六次生物学复制。方差分析是使用SPSS通过单向方差分析和Dunnette多重比较进行的。结果KPhi和壳聚糖同时施用时,植物果实(2.2 g L ?1 )中的CuE含量最高。抗菌活性评估结果表明,在KPhi和壳聚糖的共同处理下,水果提取物具有最大的抗大肠杆菌PTCC 1399(平均抑制区等于36?mm)和铜绿假单胞菌PTCC 1430(平均区)的潜力。的抑制力等于33?mm)。结论KPhi和壳聚糖可以诱导CuE化合物的产生并增加黄瓜植物提取物的抗菌潜力。 KPhi和壳聚糖的应用可能被认为是CuE生物技术生产中的有希望的前景。

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