Tsalgatidou Polina C, Thomloudi Eirini-Evangelia, Delis Costas, Nifakos Kallimachos, Zambounis Antonios, Venieraki Anastasia, Katinakis Panagiotis
Laboratory of General and Agricultural Microbiology, Agricultural University of Athens, Iera Odos 75, 11855 Athens, Greece.
Department of Agriculture, University of the Peloponnese, 24100 Kalamata, Greece.
Biology (Basel). 2023 May 27;12(6):779. doi: 10.3390/biology12060779.
Evaluating microbial-based alternatives to conventional fungicides and biofertilizers enables us to gain a deeper understanding of the biocontrol and plant growth-promoting activities. Two genetically distinct strains (Cal.l.30, Cal.f.4) were evaluated for the levels of their compatibility. They were applied individually or in combination under in vitro and greenhouse conditions, using seed bio-priming and soil drenching as inoculum delivery systems, for their plant growth-promoting effect. Our data indicate that application of Cal.l.30 and Cal.f.4 as single strains and as a mixture significantly enhanced growth parameters of Arabidopsis and tomato plants. We investigated whether seed and an additional soil treatment with these strains could induce the expression of defense-related genes in leaves of young tomato seedling plants. These treatments mediated a long lasting, bacterial-mediated, systemic-induced resistance as evidenced by the high levels of expression of , and genes in the leaves of young tomato seedlings. Furthermore, we presented data showing that seed and soil treatment with strains resulted in an effective inhibition of attack and development on tomato leaves. Our findings highlighted the potential of strains as they combine both direct antifungal activity against plant pathogens and the ability to prime plant innate immunity and enhance plant growth.
评估基于微生物的传统杀菌剂和生物肥料替代品,能让我们更深入地了解生物防治和促进植物生长的活动。对两种基因不同的菌株(Cal.l.30、Cal.f.4)的兼容性水平进行了评估。在体外和温室条件下,以种子生物引发和土壤浇灌作为接种物输送系统,单独或组合施用这两种菌株,以研究其促进植物生长的效果。我们的数据表明,单独施用Cal.l.30和Cal.f.4以及混合施用,均能显著提高拟南芥和番茄植株的生长参数。我们研究了用这些菌株对种子和额外的土壤进行处理,是否能诱导番茄幼苗叶片中防御相关基因的表达。这些处理介导了一种持久的、细菌介导的系统诱导抗性,番茄幼苗叶片中、和基因的高表达水平证明了这一点。此外,我们还展示了数据,表明用这些菌株处理种子和土壤能有效抑制番茄叶片上的侵染和发展。我们的研究结果突出了这些菌株的潜力,因为它们兼具对植物病原体的直接抗真菌活性以及激发植物先天免疫和促进植物生长的能力。