Vassilev N, Vassileva M, Lopez A, Martos V, Reyes A, Maksimovic I, Eichler-Löbermann B, Malusà E
Institute of Biotechnology, University of Granada, Granada, Spain,
Appl Microbiol Biotechnol. 2015 Jun;99(12):4983-96. doi: 10.1007/s00253-015-6656-4. Epub 2015 May 9.
The massive application of chemical fertilizers to support crop production has resulted in soil, water, and air pollution at a global scale. In the same time, this situation escalated consumers' concerns regarding quality and safety of food production which, due to increase of fertilizer prices, have provoked corresponding price increase of food products. It is widely accepted that the only solution is to boost exploitation of plant-beneficial microorganisms which in conditions of undisturbed soils play a key role in increasing the availability of minerals that otherwise are inaccessible to plants. This review paper is focused on the employment of microbial inoculants and their production and formulation. Special attention is given to biotechniques that are not fully exploited as tools for biofertilizer manufacturing such as microbial co-cultivation and co-immobilization. Another emerging area includes biotechnological production and combined usage of microorganisms/active natural compounds (biostimulants) such as plant extracts and exudates, compost extracts, and products like strigolactones, which improve not only plant growth and development but also plant-microbial interactions. The most important potential and novel strategies in this field are presented as well as the tendencies that will be developed in the near future.
大量施用化肥以支持作物生产已在全球范围内导致土壤、水和空气污染。与此同时,这种情况加剧了消费者对食品生产质量和安全的担忧,由于化肥价格上涨,这引发了食品价格的相应上涨。人们普遍认为,唯一的解决办法是加强对有益植物微生物的利用,这些微生物在未受干扰的土壤条件下,在增加植物原本无法获取的矿物质的有效性方面发挥着关键作用。这篇综述文章聚焦于微生物接种剂的应用及其生产和配方。特别关注那些尚未被充分用作生物肥料制造工具的生物技术,如微生物共培养和共固定化。另一个新兴领域包括微生物/活性天然化合物(生物刺激剂)的生物技术生产和联合使用,如植物提取物和分泌物、堆肥提取物以及独脚金内酯等产品,这些不仅能改善植物的生长发育,还能改善植物与微生物的相互作用。本文介绍了该领域最重要的潜在和新颖策略以及近期将发展的趋势。