Weisser Marianne, Mattner Scott William, Southam-Rogers Liam, Hepworth Graham, Arioli Tony
Seasol R&D Department, Bayswater, VIC 3155, Australia.
VSICA (Victorian Strawberry Industry Certification Authority) Research, Toolangi, VIC 3777, Australia.
Plants (Basel). 2023 Dec 19;13(1):4. doi: 10.3390/plants13010004.
The pursuit of sustainable and productive agriculture demands the exploration of innovative approaches to improve plant productivity and soil health. The utilization of natural agricultural biostimulants, such as extracts from seaweed, fish, and humus, has gained prominence as an ecological strategy to achieve this goal. In this study we investigated the effectiveness of a fortified biostimulant extract (FBE), composed of extracts from seaweed, fish, and humus, on tomato plant physiology, productivity, and growing media properties, and estimated carbon emissions associated with tomato production. The FBE was applied to the growing media of tomato plants produced in a greenhouse, in experiments over two growing seasons. The productivity assessments demonstrated that the application of FBE significantly increased tomato fruit yield by 20% and relative marketable fruit yield by 27%, and reduced estimated greenhouse gas (GHG) emissions associated with production by 29%. FBE treatment improved plant shoot and root biomass, accelerated flower and fruit set initiation, and increased chlorophyll content in leaves, resulting in enhanced plant physiology and advanced development. FBE treatment positively influenced the availability of crucial nutrients such as nitrogen, phosphorus, and iron in the growing media. FBE promoted the growth of total active microbes in the growing media, particularly the fungal population, which plays an important role in nutrient cycling and health. These findings highlight the beneficial effects of the FBE due to enhanced plant productivity and growth, improved fertility, the promotion of beneficial plant and growing media interactions, and the reduction in estimated GHG emissions.
追求可持续和高产的农业需要探索创新方法来提高作物生产力和土壤健康。利用天然农业生物刺激剂,如海藻、鱼类和腐殖质提取物,作为实现这一目标的生态策略已日益受到关注。在本研究中,我们调查了一种由海藻、鱼类和腐殖质提取物组成的强化生物刺激剂提取物(FBE)对番茄植株生理、生产力和栽培基质特性的影响,并估算了与番茄生产相关的碳排放。在两个生长季节的实验中,将FBE施用于温室种植的番茄植株的栽培基质中。生产力评估表明,施用FBE可使番茄果实产量显著提高20%,相对可销售果实产量提高27%,并使与生产相关的估计温室气体(GHG)排放量减少29%。FBE处理改善了植株地上部和根部生物量,加速了花和果实的坐果起始,并增加了叶片中的叶绿素含量,从而增强了植株生理机能并促进了发育。FBE处理对栽培基质中关键养分(如氮、磷和铁)的有效性产生了积极影响。FBE促进了栽培基质中总活性微生物的生长,特别是真菌群体,其在养分循环和健康方面发挥着重要作用。这些发现突出了FBE的有益效果,包括提高作物生产力和生长、改善肥力、促进有益的作物与栽培基质相互作用以及减少估计的温室气体排放。