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基于宿主介导的基因工程和微生物组的技术优化在可持续农业和环境中的应用。

Host-mediated gene engineering and microbiome-based technology optimization for sustainable agriculture and environment.

机构信息

Faculty of Applied Sciences and Biotechnology, Shoolini University of Biotechnology and Management Sciences, Solan, HP, India.

School of Management Sciences, Bahra University, Solan, HP, India.

出版信息

Funct Integr Genomics. 2023 Feb 8;23(1):57. doi: 10.1007/s10142-023-00982-9.

Abstract

The agricultural sector and environmental safety both work hand in hand to promote sustainability in important issues like soil health, plant nutrition, food safety, and security. The conventional methods have greatly harmed the environment and people's health and caused soil fertility and quality to decline as well as deteriorate. Keeping in view the excessive exploitation and cascade of degradation events due to unsustainable farming practices, the need of the hour demands choosing an appropriate, eco-friendly strategy to restore soil health, plant nutrition, and environmental aspects. The priority highlights a need for a sustainable and environment-friendly upgradation of the present agricultural systems to utilize the beneficial aspects related to harnessing the gene-microbiome strategies which would help in the restoration and replenishment of the microbial pool. Thus, exploring the microbiome is the utmost priority which gives a deep insight into the different aspects related to soil and plant and stands out as an important contributor to plant health and productivity. "Microbes" are important drivers for the biogeochemical cycles and targets like sustainability and safety. This essential microbial bulk (soil microbiome) is greatly influenced by agricultural/farming practices. Therefore, with the help of microbiome engineering technologies like meta-transcriptomics, meta-proteomics, metabolomics, and novel gene-altering techniques, we can easily screen out the highly diverse and balanced microbial population in the bulk of soil, enhancing the soil's health and productivity. Importantly, we need to change our cultivation strategies to attain such sustainability. There is an urgent need to revert to natural/organic systems of cultivation patterns where the microbiome hub can be properly utilized to strengthen soil health, decrease insect pest and disease incidence, reduce greenhouse gas emissions, and ultimately prevent environmental degradation. Through this article, we wish to propose a shift in the cultivation pattern from chemical to the novel, upgraded gene-assisted designed eco-friendly methodologies which can help in incorporating, exploring, and harnessing the right microbiome consortium and can further help in the progression of environmentally friendly microbiome technologies for agricultural safety and productivity.

摘要

农业部门和环境安全携手合作,共同推动土壤健康、植物营养、食品安全和安全等重要问题的可持续性。传统方法对环境和人类健康造成了极大的危害,导致土壤肥力和质量下降,环境恶化。鉴于由于不可持续的农业实践而导致的过度开发和退化事件的级联,当前迫切需要选择一种适当的、环保的策略来恢复土壤健康、植物营养和环境方面。首要任务强调需要对当前的农业系统进行可持续和环保的升级,以利用与利用基因微生物组策略相关的有益方面,这将有助于恢复和补充微生物库。因此,探索微生物组是当务之急,它深入了解与土壤和植物相关的不同方面,并作为植物健康和生产力的重要贡献者脱颖而出。“微生物”是生物地球化学循环的重要驱动因素,也是可持续性和安全性的目标。这种重要的微生物群体(土壤微生物组)受到农业/耕作实践的极大影响。因此,借助微生物组工程技术,如元转录组学、元蛋白质组学、代谢组学和新型基因修饰技术,我们可以轻松筛选出土壤大量微生物群体中的高度多样化和平衡的微生物种群,提高土壤的健康和生产力。重要的是,我们需要改变我们的种植策略来实现这种可持续性。迫切需要恢复到自然/有机的耕作模式,在这种模式下,可以充分利用微生物组中心来加强土壤健康,减少虫害和疾病的发生,减少温室气体排放,并最终防止环境退化。通过本文,我们希望提出从化学种植模式向新型升级的基因辅助设计环保方法的转变,这有助于引入、探索和利用正确的微生物组联合体,并进一步有助于推进环保的微生物组技术在农业安全和生产力方面的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/977b/9907888/291d280aaa5c/10142_2023_982_Fig1_HTML.jpg

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