El-Sitiny Mona F A, M Omar Habeba, El-Shehawi Ahmed M, Elseehy Mona M, El-Tahan Amira M, El-Saadony Mohamed T, Selem Gamila Sh
Plant Protection Department, Agricultural Faculty, Zagazig University, Egypt.
Department of Biotechnology, College of Science, Taif University, P.O. Box 11099, Taif 21944, Saudi Arabia.
Saudi J Biol Sci. 2022 Apr;29(4):2904-2910. doi: 10.1016/j.sjbs.2022.01.024. Epub 2022 Jan 15.
Resistant plant cultivars which used in breeding programs are considered one of the modern integrated management programs to reduce the usage of synthetic insecticides and environmental contamination the present study aimed to characterize the resistant and susceptible tomato cultivars to based on biochemical and molecular levels, in Egypt. The biochemical characters of the tested tomato cultivars (tomato- 86, tomato- Alissa, tomato- Fayarouz, tomato- Omniya, tomato- 036, tomato- GS) were determined colorimetrically and characterized by using native- polyacrylamide gel electrophoresis (PAGE) and agarose gel. Our results showed that there were variations highly significant in all biochemical constituents of the resistant tomato cultivar (tomato- 86) compared with the susceptible one (tomato- GS). Also, native-(PAGE) for peroxidase (POD) isoenzymes techniques of the tested tomato cultivars showed variations in protein band numbers and densities in tomato-86 resistant compared with tomato-GS susceptible to infestation. The correlation coefficient between total phenols and peroxidases in infested tomato leaves and percentages of damaged leaves with the tested insect pest was negative and highly significant, while in case of total proteins and reducing sugars in infested tomato leaves as well as lycopene contents in infested tomato fruits was positive, highly significant and significant, respectively. The correlation coefficient between tomato yield means and the infested fruit percentage with larvae was negative and highly significant. Respecting molecular diagnosis random amplified polymorphism DNA- polymerase chain reaction (RAPD- PCR), the results demonstrated that the presence of polymorphism in the resistant tomato cultivar (tomato- 86) compared with (tomato- GS), the most susceptible to the tested insect pest infestation.
用于育种计划的抗性植物品种被认为是现代综合管理计划之一,可减少合成杀虫剂的使用和环境污染。本研究旨在从生化和分子水平上对埃及的抗性和易感番茄品种进行特征分析。通过比色法测定了受试番茄品种(番茄86、番茄阿丽莎、番茄法鲁兹、番茄奥姆尼亚、番茄036、番茄GS)的生化特性,并使用天然聚丙烯酰胺凝胶电泳(PAGE)和琼脂糖凝胶进行了表征。我们的结果表明,与易感品种(番茄GS)相比,抗性番茄品种(番茄86)的所有生化成分存在极显著差异。此外,受试番茄品种过氧化物酶(POD)同工酶的天然PAGE技术显示,与易受侵染的番茄GS相比,抗性番茄86的蛋白带数量和密度存在差异。受侵染番茄叶片中总酚和过氧化物酶之间的相关系数以及受试害虫造成的叶片损伤百分比呈负相关且极显著,而受侵染番茄叶片中的总蛋白和还原糖以及受侵染番茄果实中的番茄红素含量分别呈正相关,极显著和显著。番茄产量均值与受幼虫侵染的果实百分比之间的相关系数呈负相关且极显著。关于分子诊断随机扩增多态性DNA-聚合酶链反应(RAPD-PCR),结果表明,与最易受受试害虫侵染的番茄GS相比,抗性番茄品种(番茄86)存在多态性。