Patent landscaping and citation network analysis to reveal the global research trends in biopriming using microbial inoculants: an insight toward sustainable agriculture.

IF 1.8 4区 生物学 Q3 BIOLOGY
Biologia futura Pub Date : 2023-12-01 Epub Date: 2023-11-23 DOI:10.1007/s42977-023-00194-z
Rahul Thakur, Saurabh Yadav
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引用次数: 0

Abstract

As an alternative to harmful chemical fertilizers and toward fulfilling Sustainable Development Goals (SDGs) of the United Nations, growth promoting rhizobacterial bioinoculants, emerged as potential players. These act in multifunctional ways, including seed colonization, seed germination, stress tolerance and many more, leading to proper growth and development of plants. Biopriming seeds with these beneficial multi-trait microbes is an effective way to introduce them in the soil, and this is an example of bottom-up approach of rhizosphere engineering. Using such sustainable approach is promising and, to investigate and analyze, their research trends are of prime importance. Thus, data were retrieved using Lens and Scopus databases and used for patent landscaping and citation network analysis, respectively. For patent landscaping, documents obtained using customized keyword search were broadly from the past 35 years (1987-2022) and yielded 114 patents which were manually curated in title, abstract and claims (TAC). From the year 2000, interest in this area was observed which further gained momentum from the year 2008, and a maximum peak was observed in the year 2021. Patent profile (filed, granted and published) showed an upward trend during this tenure (1987-2022). In this research article, we aim to provide an overview of current research in this field, identify research hotspots, project future development prospects and make recommendations for further research. Patent landscaping and citation network analysis were used to analyze the recent trends in biopriming approaches using microbial bioinoculants for the first time to identify progress and hotspots in the field of seed priming with PGPRs.

Abstract Image

专利景观和引文网络分析揭示了使用微生物接种剂生物雾化的全球研究趋势:对可持续农业的洞察。
作为有害化学肥料的替代品和实现联合国可持续发展目标(SDGs),促进生长的根瘤菌生物接种剂成为潜在的参与者。这些基因以多种方式发挥作用,包括种子定植、种子萌发、抗逆性等,从而导致植物的正常生长和发育。利用这些有益的多性状微生物对种子进行生物雾化是一种有效的将其引入土壤的方法,这是根际工程自下而上方法的一个例子。使用这种可持续的方法是有希望的,并且,为了调查和分析,他们的研究趋势是至关重要的。因此,使用Lens和Scopus数据库检索数据,并分别用于专利景观和引文网络分析。对于专利景观,使用自定义关键字搜索获得的文件大致来自过去35年(1987-2022),并获得114项专利,这些专利以标题,摘要和权利要求(TAC)的方式进行手动整理。从2000年开始,人们对这一领域的兴趣从2008年开始进一步增强,并在2021年达到了最高峰。在他任职期间(1987-2022年),专利概况(申请、授权和发布)呈上升趋势。在本研究文章中,我们旨在概述该领域的研究现状,确定研究热点,预测未来的发展前景,并提出进一步研究的建议。通过专利景观分析和引文网络分析,首次分析了利用微生物接种剂进行生物引物研究的最新趋势,确定了PGPRs种子引物研究的进展和热点。
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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来源期刊
Biologia futura
Biologia futura Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
3.50
自引率
0.00%
发文量
27
期刊介绍: How can the scientific knowledge we possess now influence that future? That is, the FUTURE of Earth and life − of humankind. Can we make choices in the present to change our future? How can 21st century biological research ask proper scientific questions and find solid answers? Addressing these questions is the main goal of Biologia Futura (formerly Acta Biologica Hungarica). In keeping with the name, the new mission is to focus on areas of biology where major advances are to be expected, areas of biology with strong inter-disciplinary connection and to provide new avenues for future research in biology. Biologia Futura aims to publish articles from all fields of biology.
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