Department of Agricultural Sciences, Biotechnology and Food Science, Cyprus University of Technology, 30 Arch. Kyprianos Str., 3036 Limassol, Cyprus.
Plant-Microbe Interactions, Department of Biology, Science4Life, Utrecht University, Padualaan 8, 3584 CH, Utrecht, The Netherlands.
FEMS Microbiol Ecol. 2019 Oct 1;95(10). doi: 10.1093/femsec/fiz138.
Composts represent a sustainable way to suppress diseases and improve plant growth. Identification of compost-derived microbial communities enriched in the rhizosphere of plants and characterization of their traits, could facilitate the design of microbial synthetic communities (SynComs) that upon soil inoculation could yield consistent beneficial effects towards plants. Here, we characterized a collection of compost-derived bacteria, previously isolated from tomato rhizosphere, for in vitro antifungal activity against soil-borne fungal pathogens and for their potential to change growth parameters in Arabidopsis. We further assessed root-competitive traits in the dominant rhizospheric genus Bacillus. Certain isolated rhizobacteria displayed antifungal activity against the tested pathogens and affected the growth of Arabidopsis, and the Bacilli members possessed several enzymatic activities. Subsequently, we designed two SynComs with different composition and tested their effect on Arabidopsis and tomato growth and health. SynCom1, consisting of different bacterial genera, displayed negative effect on Arabidopsis in vitro, but promoted tomato growth in pots. SynCom2, consisting of Bacilli, didn't affect Arabidopsis growth, enhanced tomato growth and suppressed Fusarium wilt symptoms. Overall, we found selection of compost-derived microbes with beneficial properties in the rhizosphere of tomato plants, and observed that application of SynComs on poor substrates can yield reproducible plant phenotypes.
堆肥是一种抑制疾病和促进植物生长的可持续方法。鉴定在植物根际中富集的堆肥衍生微生物群落,并对其特性进行表征,可以促进微生物合成群落(SynCom)的设计,这些群落通过土壤接种可以对植物产生一致的有益效果。在这里,我们对先前从番茄根际中分离出的一组堆肥衍生细菌进行了特征描述,以评估其对土壤真菌病原体的体外抗真菌活性及其在拟南芥中改变生长参数的潜力。我们还进一步评估了根际优势属芽孢杆菌的根际竞争特性。某些分离的根际细菌对测试的病原体表现出抗真菌活性并影响拟南芥的生长,芽孢杆菌成员具有多种酶活性。随后,我们设计了两种具有不同组成的 SynCom,并测试了它们对拟南芥和番茄生长和健康的影响。SynCom1 由不同的细菌属组成,在体外对拟南芥有负面影响,但在盆中促进番茄生长。SynCom2 由芽孢杆菌组成,对拟南芥的生长没有影响,增强了番茄的生长并抑制了枯萎病症状。总的来说,我们发现从番茄植物根际中选择具有有益特性的堆肥衍生微生物,并且观察到在贫瘠的基质上应用 SynCom 可以产生可重复的植物表型。