Efficacy of Rhizobacteria in Weed Dynamics of Crop Production Rhythm

I. J. Dantata, W. P. Dauda, H. Philip, C. Adetunji
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Abstract

Weeds plague food crop agriculture of regions of the world. This continued with no adequate and most cost-effective control measures available. Weedicides, for sure, are the leading solution to challenges posed by weeds in the food crop agriculture; however, high costs and the underlying environmental and health repercussions have prompted many works in biological strategies to tackle weeds. The current work gives an overview of rhizobacteria's (RB) efficacy evaluation in tackling weeds dynamics in the crop production system. RB, as free-living soil microorganisms detrimental to weeds in nature; colonize plant roots, suppresses and inhibits the growth of seeds and seedlings in various pathways and mechanisms involving a spectrum of biosynthesized toxins as phytogenic compounds or metabolites. However, RB's efficacy is a constraint due to many reasons such as low activity, a limited spectrum of activities, reduced survival rates, persistence of the suppressive and inhibitive compounds, and complexity of the interactions between the RB and the target weeds. It is imperative to understand the interaction between the weeds and rhizospheres ecological systems to improve the RB approach's efficacy and effectiveness. Hence, advances in microbial genetics, microorganism-plant interactions, and community-level analysis of microbial organisms, including microbe-host relationships that include various biological agents and their potential hosts with higher susceptibility virulence, are essential. Treatments that really can guarantee a longer shelf life, effectiveness, and continued existence of microbial agents, microbial population structure and function that can accelerate microbial weed suppression systems and molecular characterization are essential. Likewise, fatty acid profiling of the targeted weeds suppression strategy, nucleic acid tools, an array pyrosequencing. All these as paradigm shifts to precisely control weeds in cropping systems to increase yield and boost productivity.
根瘤菌对作物生产节奏杂草动态的影响
杂草困扰着世界各地的粮食作物农业。这种情况继续存在,没有适当和最具成本效益的控制措施。除草剂无疑是解决粮食作物农业中杂草问题的主要解决方案;然而,高昂的成本和潜在的环境和健康影响促使许多生物策略的工作来解决杂草。本文综述了根瘤菌对作物生产系统中杂草动态治理的有效性评价。RB是自然界中对杂草有害的自由生活的土壤微生物;定植于植物根部,通过多种途径和机制抑制和抑制种子和幼苗的生长,涉及一系列生物合成毒素,如植物源性化合物或代谢物。然而,由于许多原因,如低活性、有限的活性谱、降低的存活率、抑制和抑制化合物的持久性以及RB与目标杂草之间相互作用的复杂性,RB的功效受到限制。了解杂草与根际生态系统之间的相互作用是提高杂草根治法的有效性和有效性的必要条件。因此,在微生物遗传学、微生物-植物相互作用和微生物群落水平分析方面取得进展至关重要,包括微生物-宿主关系,包括各种生物制剂及其具有较高易感毒力的潜在宿主。真正能够保证更长的保质期、有效性和微生物制剂的持续存在,能够加速微生物杂草抑制系统和分子表征的微生物种群结构和功能的处理是必不可少的。同样,脂肪酸谱分析的目标杂草抑制策略,核酸工具,阵列焦磷酸测序。所有这些都是为了精确控制种植系统中的杂草,以提高产量和生产力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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