Hawkesbury Institute for the Environment, Western Sydney University, Penrith, NSW, Australia.
Department of Bioagricultural Sciences and Pest Management, Colorado State University, Fort Collins, CO, USA.
Environ Microbiol. 2018 Jan;20(1):124-140. doi: 10.1111/1462-2920.14031. Epub 2018 Jan 2.
Harnessing plant microbiota can assist in sustainably increasing primary productivity to meet growing global demands for food and biofuel. However, development of rational microbiome-based approaches for improving crop yield and productivity is currently hindered by a lack of understanding of the major biotic and abiotic factors shaping the crop microbiome under relevant field conditions. We examined bacterial and fungal communities associated with both aerial (leaves, stalks) and belowground (roots, soil) compartments of four commercial sugarcane varieties (Saccharum spp.) grown in several growing regions in Australia. We identified drivers of the sugarcane microbiome under field conditions and evaluated whether the plants shared a core microbiome. Sugarcane-associated microbial assemblages were primarily determined by plant compartment, followed by growing region, crop age, variety and Yellow Canopy Syndrome (YCS). We detected a core set of microbiota and identified members of the core microbiome that were influenced by YCS incidence. Our study revealed key hub microorganisms in the core microbiome networks of sugarcane leaves, stalks, roots and rhizosphere soil despite location and time-associated shifts in the community assemblages. Elucidating their functional roles and identification of the keystone core microbiota that sustain plant health could provide a technological breakthrough for a sustainable increase in crop productivity.
利用植物微生物组可以帮助可持续地提高初级生产力,以满足全球对粮食和生物燃料不断增长的需求。然而,由于缺乏对塑造相关田间条件下作物微生物组的主要生物和非生物因素的理解,目前基于合理微生物组的方法的发展受到了阻碍。我们研究了与在澳大利亚几个种植区种植的四个商业甘蔗品种(甘蔗属)的地上(叶片、茎)和地下(根、土壤)部分相关的细菌和真菌群落。我们确定了田间条件下甘蔗微生物组的驱动因素,并评估了这些植物是否共享一个核心微生物组。与甘蔗相关的微生物群落主要由植物部位决定,其次是种植区、作物年龄、品种和黄冠综合征(YCS)。我们检测到了一组核心微生物群,并确定了受 YCS 发病率影响的核心微生物组的成员。尽管群落组合在位置和时间上发生了变化,但我们的研究揭示了甘蔗叶片、茎、根和根际土壤核心微生物组网络中的关键核心微生物,阐明了它们的功能作用和鉴定维持植物健康的关键核心微生物群,可为可持续提高作物生产力提供技术突破。