Thomas Phil, Knox Oliver G G, Powell Jeff R, Sindel Brian, Winter Gal
School of Science and Technology, University of New England, Armidale, NSW 2351, Australia.
School of Environmental and Rural Science, University of New England, Armidale, NSW 2351, Australia.
Microorganisms. 2023 Mar 24;11(4):835. doi: 10.3390/microorganisms11040835.
Land plants have an ancient and intimate relationship with microorganisms, which influences the composition of natural ecosystems and the performance of crops. Plants shape the microbiome around their roots by releasing organic nutrients into the soil. Hydroponic horticulture aims to protect crops from damaging soil-borne pathogens by replacing soil with an artificial growing medium, such as rockwool, an inert material made from molten rock spun into fibres. Microorganisms are generally considered a problem to be managed, to keep the glasshouse clean, but the hydroponic root microbiome assembles soon after planting and flourishes with the crop. Hence, microbe-plant interactions play out in an artificial environment that is quite unlike the soil in which they evolved. Plants in a near-ideal environment have little dependency on microbial partners, but our growing appreciation of the role of microbial communities is revealing opportunities to advance practices, especially in agriculture and human health. Hydroponic systems are especially well-suited to active management of the root microbiome because they allow complete control over the root zone environment; however, they receive much less attention than other host-microbiome interactions. Novel techniques for hydroponic horticulture can be identified by extending our understanding of the microbial ecology of this unique environment.
陆地植物与微生物有着古老而密切的关系,这种关系影响着自然生态系统的组成和作物的生长表现。植物通过向土壤中释放有机养分来塑造其根系周围的微生物群落。水培园艺旨在通过用人造生长介质(如岩棉,一种由熔融岩石纺成纤维制成的惰性材料)取代土壤,来保护作物免受土壤传播病原体的侵害。微生物通常被视为一个需要管理的问题,以保持温室清洁,但水培根系微生物群落在种植后很快就会形成,并随着作物生长而繁茂。因此,微生物与植物的相互作用在一个与它们进化所处的土壤截然不同的人工环境中发生。处于近乎理想环境中的植物对微生物伙伴的依赖性很小,但我们对微生物群落作用的日益重视正在揭示推进相关实践的机会,尤其是在农业和人类健康领域。水培系统特别适合对根系微生物群进行主动管理,因为它们可以完全控制根区环境;然而,与其他宿主 - 微生物群落相互作用相比,它们受到的关注要少得多。通过扩展我们对这个独特环境中微生物生态学的理解,可以确定水培园艺的新技术。