Department of Microbiology, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, Serdang, UPM, Selangor, 43400, Malaysia.
Department of Cell and Molecular Biology, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, Serdang, UPM, Selangor, 43400, Malaysia.
World J Microbiol Biotechnol. 2023 Mar 19;39(5):123. doi: 10.1007/s11274-023-03579-3.
In today's fast-shifting climate change scenario, crops are exposed to environmental pressures, abiotic and biotic stress. Hence, these will affect the production of agricultural products and give rise to a worldwide economic crisis. The increase in world population has exacerbated the situation with increasing food demand. The use of chemical agents is no longer recommended due to adverse effects towards the environment and health. Biocontrol agents (BCAs) and biostimulants, are feasible options for dealing with yield losses induced by plant stresses, which are becoming more intense due to climate change. BCAs and biostimulants have been recommended due to their dual action in reducing both stresses simultaneously. Although protection against biotic stresses falls outside the generally accepted definition of biostimulant, some microbial and non-microbial biostimulants possess the biocontrol function, which helps reduce biotic pressure on crops. The application of synergisms using BCAs and biostimulants to control crop stresses is rarely explored. Currently, a combined application using both agents offer a great alternative to increase the yield and growth of crops while managing stresses. This article provides an overview of crop stresses and plant stress responses, a general knowledge on synergism, mathematical modelling used for synergy evaluation and type of in vitro and in vivo synergy testing, as well as the application of synergism using BCAs and biostimulants in reducing crop stresses. This review will facilitate an understanding of the combined effect of both agents on improving crop yield and growth and reducing stress while also providing an eco-friendly alternative to agroecosystems.
在当今快速变化的气候变化情景下,作物面临着环境压力、非生物和生物胁迫。因此,这将影响农产品的生产,并引发全球经济危机。世界人口的增加加剧了粮食需求不断增长的局面。由于对环境和健康的不利影响,不再推荐使用化学制剂。生物防治剂(BCAs)和生物刺激素是应对因气候变化而加剧的植物胁迫导致的产量损失的可行选择。BCAs 和生物刺激素因其同时减少两种胁迫的双重作用而受到推荐。虽然防治生物胁迫不属于生物刺激素的普遍定义,但一些微生物和非微生物生物刺激素具有生物防治功能,有助于减轻作物的生物压力。很少探索使用 BCAs 和生物刺激素来控制作物胁迫的协同作用的应用。目前,联合使用这两种制剂提供了一个很好的替代方案,可以在管理胁迫的同时增加作物的产量和生长。本文概述了作物胁迫和植物胁迫反应,协同作用的一般知识,用于协同作用评估的数学模型以及体外和体内协同作用测试的类型,以及使用 BCAs 和生物刺激素来减轻作物胁迫的协同作用的应用。这篇综述将有助于理解这两种制剂对提高作物产量和生长以及减轻胁迫的综合作用,同时为农业生态系统提供一种环保的替代方案。