Louisson Ziva, Ranjard Louis, Buckley Hannah L, Case Bradley S, Lear Gavin
School of Biological Sciences, University of Auckland, 3a Symonds Street, Auckland, 1010, New Zealand.
PlantTech Research Institute, 29 Grey St, Tauranga, 3011, New Zealand.
Environ Microbiome. 2023 Aug 24;18(1):71. doi: 10.1186/s40793-023-00526-5.
Soil and phyllosphere (leaves and fruit) microbes play critical roles in the productivity and health of crops. However, microbial community dynamics are currently understudied in orchards, with a limited number incorporating temporal monitoring. We used 16S rRNA gene amplicon sequencing to investigate bacterial community temporal dynamics and community assembly processes on the leaves and fruit, and in the soil of 12 kiwifruit orchards across a cropping season in New Zealand.
Community composition significantly differed (P < 0.001) among the three sample types. However, the communities in the phyllosphere substrates more closely resembled each other, relative to the communities in the soil. There was more temporal stability in the soil bacterial community composition, relative to the communities residing on the leaves and fruit, and low similarity between the belowground and aboveground communities. Bacteria in the soil were more influenced by deterministic processes, while stochastic processes were more important for community assembly in the phyllosphere.
The higher temporal variability and the stochastic nature of the community assembly processes observed in the phyllosphere communities highlights why predicting the responsiveness of phyllosphere communities to environmental change, or the likelihood of pathogen invasion, can be challenging. The relative temporal stability and the influence of deterministic selection on soil microbial communities suggests a greater potential for their prediction and reliable manipulation.
土壤和叶际(叶片和果实)微生物对作物的生产力和健康起着关键作用。然而,目前果园中微生物群落动态的研究较少,只有少数研究进行了时间监测。我们利用16S rRNA基因扩增子测序技术,研究了新西兰12个猕猴桃果园在一个种植季节中,叶片、果实和土壤中细菌群落的时间动态和群落组装过程。
三种样本类型的群落组成存在显著差异(P < 0.001)。然而,相对于土壤中的群落,叶际基质中的群落彼此更为相似。相对于叶片和果实上的群落,土壤细菌群落组成具有更高的时间稳定性,且地下和地上群落之间的相似性较低。土壤中的细菌受确定性过程的影响更大,而随机过程对叶际群落组装更为重要。
叶际群落中观察到的较高时间变异性和群落组装过程的随机性,突出了预测叶际群落对环境变化的响应或病原体入侵可能性具有挑战性的原因。土壤微生物群落相对的时间稳定性以及确定性选择的影响,表明对其进行预测和可靠调控具有更大潜力。