Department of Bioprocess Technology, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, Serdang 43400, Selangor, Malaysia.
Laboratory of Biopolymer and Derivatives, Institute of Tropical Forestry and Forest Products (INTROP), Universiti Putra Malaysia, Serdang 43400, Selangor, Malaysia.
Int J Mol Sci. 2022 Mar 29;23(7):3737. doi: 10.3390/ijms23073737.
While chemical fertilisers and pesticides indeed enhance agricultural productivity, their excessive usage has been detrimental to environmental health. In addressing this matter, the use of environmental microbiomes has been greatly favoured as a 'greener' alternative to these inorganic chemicals' application. Challenged by a significant proportion of unidentified microbiomes with unknown ecological functions, advanced high throughput metatranscriptomics is prudent to overcome the technological limitations in unfolding the previously undiscovered functional profiles of the beneficial microbiomes. Under this context, this review begins by summarising (1) the evolution of next-generation sequencing and metatranscriptomics in leveraging the microbiome transcriptome profiles through whole gene expression profiling. Next, the current environmental metatranscriptomics studies are reviewed, with the discussion centred on (2) the emerging application of the beneficial microbiomes in developing fertile soils and (3) the development of disease-suppressive soils as greener alternatives against biotic stress. As sustainable agriculture focuses not only on crop productivity but also long-term environmental sustainability, the second half of the review highlights the metatranscriptomics' contribution in (4) revolutionising the pollution monitoring systems via specific bioindicators. Overall, growing knowledge on the complex microbiome functional profiles is imperative to unlock the unlimited potential of agricultural microbiome-based practices, which we believe hold the key to productive agriculture and sustainable environment.
虽然化肥和农药确实提高了农业生产力,但它们的过度使用已经对环境健康造成了损害。在解决这个问题时,人们非常倾向于使用环境微生物组作为替代这些无机化学品应用的“更绿色”的选择。由于大量未被识别的微生物组具有未知的生态功能,因此先进的高通量宏转录组学是克服技术限制、揭示以前未发现的有益微生物组功能谱的明智之举。在这种情况下,本综述首先总结了(1)通过全基因表达谱来利用微生物组转录组图谱的下一代测序和宏转录组学的演变。其次,回顾了当前的环境宏转录组学研究,讨论集中在(2)有益微生物组在开发肥沃土壤方面的新兴应用,以及(3)作为生物胁迫绿色替代物的抑病土壤的发展。由于可持续农业不仅关注作物生产力,还关注长期的环境可持续性,因此本综述的后半部分重点介绍了宏转录组学在(4)通过特定生物标志物革新污染监测系统方面的贡献。总的来说,对复杂微生物组功能谱的了解不断加深,对于释放基于农业微生物组的实践的无限潜力至关重要,我们相信这是实现农业生产力和环境可持续性的关键。