坦桑尼亚当地番茄品种对半翅目白蝇(Bemisia tabaci, Gennadius 1889)抗性的次生代谢物特征

GM crops Pub Date : 2022-11-15 DOI:10.3390/crops2040032
Secilia E. Mrosso, P. Ndakidemi, E. Mbega
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引用次数: 1

摘要

当植物生长在不同的环境中时,它们已经发展出了应对环境压力的机制。这些手段包括在受到害虫或其他压力源攻击时释放植物防御化合物。具有这些特性的植物是培育抗食草动物和害虫的重要种质资源。因此,本研究旨在筛选白蝇抗性种质,并对其次生代谢物进行表征。2021年1月至4月,在坦桑尼亚植物卫生和农药管理局(PTHPA)的筛选室对30份当地番茄进行了对白蝇(烟粉虱)抗性的筛选。筛选出7个地方番茄品种TZA3729、TZA5554、TZA5545、TZA5562、TZA5552、TZA3177和TZA5157,并选择1个对白蝇敏感的品种TZA5496(阴性对照)和标准品种V1030462(阳性对照)进行后续试验。实验于2021年7月至10月在TPHPA的屏幕室进行,并于2022年1月至4月采用完全随机区组设计重复3次。在本试验中,TZA3729、TZA5562和TZA5157 3个品种对白蝇均有抗性。但与抗性菌株V1030462相比,TZA3729抗性强于TZA5562和TZA5157。因此,我们进一步筛选了这些材料对食草动物和害虫(本研究中为粉虱)产生抗性的次生代谢物。甲醇提取物的GS-MS结果表明,加入TZA3729具有广泛的植物次生代谢产物,如二萜、四萜、生物碱、类胡萝卜素和脂肪酸酯等。因此,本研究建议将TZA3729作为番茄种质资源,用于番茄抗白蝇育种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of Secondary Metabolites Responsible for the Resistance of Local Tomato Accessions to Whitefly (Bemisia tabaci, Gennadius 1889) Hemiptera in Tanzania
Plants have developed mechanisms to cope with stresses in their environments as they grow in diverse settings. Such means include releasing plant defense compounds upon attacks by pests or other stressors. Plants with these characteristics are essential as a plant germplasm source for breeding resistance against herbivores and insect pests. Therefore, this study aimed to screen germplasms for whitefly resistance and characterize the secondary metabolites responsible for this. Thirty local tomato accessions were screened for resistance against whiteflies (Bemisia tabaci Gennadius) in the screen house located at Tanzania Plant Health and Pesticides Authority (PTHPA) between January and April 2021. From this screening, seven local tomato cultivars: TZA3729, TZA5554, TZA5545, TZA5562, TZA5552, TZA3177 and TZA5157, showed resistance, and one accession (TZA5496) that showed susceptibility to whiteflies (negative control) and accession V1030462 that was a standard (positive control) were selected for the subsequent experiments. The experiment was conducted in July–October 2021 in the screen house at TPHPA and repeated in January–April 2022 using a completely randomized block design with three replications. From this experiment, three accessions: TZA3729, TZA5562 and TZA5157, showed resistance against whiteflies. However, accession TZA3729 was more resistant than TZA5562 and TZA5157 when compared to the resistant accession V1030462. Therefore, these accessions were further screened for secondary metabolites responsible for resistance against herbivores and insect pests—in this case, whiteflies. The GS-MS methanol extract results showed accession TZA3729 to possess a wide array of secondary plant metabolites responsible for plant self-defenses, such as diterpenes, Tetraterpenes, alkaloids, carotenoids and fatty acid esters. Therefore, the study recommends accession TZA3729 as a source of tomato plant germplasm for breeding tomatoes resistant to whiteflies.
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