Olanrewaju Oluwaseyi Samuel, Glick Bernard R, Babalola Olubukola Oluranti
Food Security and Safety Niche Area, Faculty of Agriculture, Science and Technology, North-West University, Mmabatho, Mafikeng, 2735, South Africa.
Department of Biology, University of Waterloo, Waterloo, ON, N2L 3G1, Canada.
World J Microbiol Biotechnol. 2017 Oct 6;33(11):197. doi: 10.1007/s11274-017-2364-9.
The idea of eliminating the use of fertilizers which are sometimes environmentally unsafe is slowly becoming a reality because of the emergence of microorganisms that can serve the same purpose or even do better. Depletion of soil nutrients through leaching into the waterways and causing contamination are some of the negative effects of these chemical fertilizers that prompted the need for suitable alternatives. This brings us to the idea of using microbes that can be developed for use as biological fertilizers (biofertilizers). They are environmentally friendly as they are natural living organisms. They increase crop yield and production and, in addition, in developing countries, they are less expensive compared to chemical fertilizers. These biofertilizers are typically called plant growth-promoting bacteria (PGPB). In addition to PGPB, some fungi have also been demonstrated to promote plant growth. Apart from improving crop yields, some biofertilizers also control various plant pathogens. The objective of worldwide sustainable agriculture is much more likely to be achieved through the widespread use of biofertilizers rather than chemically synthesized fertilizers. However, to realize this objective it is essential that the many mechanisms employed by PGPB first be thoroughly understood thereby allowing workers to fully harness the potentials of these microbes. The present state of our knowledge regarding the fundamental mechanisms employed by PGPB is discussed herein.
由于能够起到相同作用甚至效果更佳的微生物的出现,消除使用有时对环境不安全的化肥这一想法正逐渐成为现实。化肥通过淋溶进入水道导致土壤养分流失和污染,这些负面影响促使人们需要合适的替代品。这就引出了利用可开发用作生物肥料的微生物这一想法。它们是天然的活生物体,因而对环境友好。它们能提高作物产量和生产力,此外,在发展中国家,与化肥相比成本更低。这些生物肥料通常被称为植物促生细菌(PGPB)。除了PGPB,一些真菌也已被证明能促进植物生长。除了提高作物产量,一些生物肥料还能控制各种植物病原体。通过广泛使用生物肥料而非化学合成肥料,全球可持续农业的目标更有可能实现。然而,要实现这一目标,至关重要的是首先要透彻理解PGPB所采用的多种机制,从而使工作人员能够充分发挥这些微生物的潜力。本文讨论了我们目前对PGPB所采用基本机制的了解情况。