Grupo Universitario de Investigación en Ingeniería y Agricultura Sostenible (GUIIAS), Instituto de Medio Ambiente, Recursos Naturales y Biodiversidad, Universidad de León, Avenida Portugal 41, 24071 León, Spain.
Área de Fisiología Vegetal, Dpto. Ingeniería y Ciencias Agrarias. Facultad de Ciencias Biológicas y Ambientales, Universidad de León, E-24071 León, Spain.
Plant Sci. 2022 Jul;320:111286. doi: 10.1016/j.plantsci.2022.111286. Epub 2022 Apr 13.
The field of plant-microbe interactions mediated by Biogenic Volatile Organic Compounds (BVOCs) still faces several limitations due to the lack of reliable equipment. We present a novel device designed to evaluate in vitro plant-microbe volatile interactions, the plant-microbe VOC Chamber. It was tested by evaluating the effects exerted on wheat development by volatiles from three Trichoderma harzianum strains, a wild type and two genetically modified strains; one expressing the tri5 gene, which leads to the synthesis and emission of the volatile trichodiene, and the other by silencing the erg1 gene, impairing ergosterol production. The wild type and the erg1-silenced strain enhanced fresh weight and length of the aerial part, but reduced root dry weight. Interestingly, no differences were found between them. Conversely, the tri5-transformant strain reduced root and aerial growth compared to the control and the other strains. No differences were observed regarding chlorophyll fluorescence quantum yield and leaf chlorophyll content, suggesting that the released BVOCs do not interfere with photosynthesis. The plant-microbe VOC Chamber proved to be a simple and reliable method to evaluate the in vitro effects of microbial BVOCs on plant development, perfect for the screening of microorganisms with interesting volatile traits.
植物-微生物相互作用领域中,由生物源挥发性有机化合物(BVOCs)介导的部分仍然存在一些限制,这主要是由于缺乏可靠的设备。我们提出了一种新的设备,用于评估体外植物-微生物挥发性相互作用,即植物-微生物 VOC 室。通过评估三种哈茨木霉菌株(野生型和两个基因修饰菌株)挥发性物质对小麦发育的影响来测试该设备,一个菌株表达 tri5 基因,导致挥发性化合物毕赤烯的合成和释放,另一个菌株则通过沉默 erg1 基因,削弱麦角固醇的产生。野生型和 erg1 沉默菌株增强了地上部分的鲜重和长度,但降低了根的干重。有趣的是,它们之间没有差异。相反,tri5 转化菌株与对照和其他菌株相比,减少了根和地上部分的生长。叶绿素荧光量子产量和叶片叶绿素含量没有差异,这表明释放的 BVOCs 不会干扰光合作用。植物-微生物 VOC 室被证明是一种简单可靠的方法,可用于评估微生物 BVOCs 对植物发育的体外影响,非常适合筛选具有有趣挥发性特性的微生物。