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Recent Advances in Food, Nutrition & Agriculture

Editor-in-Chief

ISSN (Print): 2772-574X
ISSN (Online): 2772-5758

Research Article

A Patent Data Analysis of the Innovation Trends in Biological Control Agent Formulations

Author(s): Ahmed Fatimi*

Volume 13, Issue 1, 2022

Published on: 27 September, 2022

Page: [59 - 69] Pages: 11

DOI: 10.2174/2772574X13666220831122154

Price: $65

Abstract

Background: Biological control (i.e., biocontrol) can be defined as the use of microbial inoculants with a direct and purposeful manipulation of natural enemies, potentially replacing harmful pesticides, to control pests, plant pathogens, and weeds. This study concerns patent analysis of biocontrol agent-based formulations. This form of patent analysis encapsulates information that could be used as a reference by researchers in the fields of agriculture and plants, as well as those interested, especially in biocontrol agents for agriculture.

Methods: The state has been reviewed by introducing what has been patented concerning Biocontrol Agents (BCAs). Four patent databases have been used, and different keywords and related terms to BCAs were used, and patents were searched according to title, abstract, and claims. The search was then filtered regarding publication year, patent families, patent classifications, inventors, applicants, owners, and jurisdictions.

Results: During a search, 2371 patent documents were found between 1982 and 2021. The United States was ranked first with 694 patent documents. 2015 was the year with the maximum number of patent documents (278). The patent classification codes reveal that most inventions are intended for biocides, pest repellants or attractants, or plant growth regulators containing or obtained from microorganisms, viruses, microbial fungi, etc. Moreover, they are also intended for biocidal, pest repellant, pest attractant, or plant growth regulatory activities of chemical compounds or preparations, such as fungicides, athropodicides, and nematocides, which are concentrated in most patents.

Conclusion: The knowledge clusters and expert driving factors of this patent analysis indicate that the research and development based on the formulation of biocontrol agents are concentrated in most patents.

Keywords: Biological control, formulation, patent analysis, patent data, patent classification, bicontrol agents.

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Graphical Abstract
[1]
Pirttilä, A.M.; Mohammad Parast Tabas, H.; Baruah, N.; Koskimäki, J.J. Biofertilizers and biocontrol agents for agriculture: How to identify and develop new potent microbial strains and traits. Microorganisms, 2021, 9(4), 817.
[http://dx.doi.org/10.3390/microorganisms9040817] [PMID: 33924411]
[2]
Kloepper, J.W.; Ryu, C.M.; Zhang, S. Induced systemic resistance and promotion of plant growth by Bacillus spp. Phytopathology, 2004, 94(11), 1259-1266.
[http://dx.doi.org/10.1094/PHYTO.2004.94.11.1259] [PMID: 18944464]
[3]
Rhodes, D.J. Formulation of biological control agents. In: Exploitation of Microorganisms; Gareth Jones, D., Ed.; Springer: Dordrecht, 1993; pp. 411-439.
[http://dx.doi.org/10.1007/978-94-011-1532-2_16]
[4]
Mercado-Blanco, J.; Lugtenberg, B. Biotechnological applications of bacterial endophytes. Curr. Biotechnol., 2014, 3(1), 60-75.
[http://dx.doi.org/10.2174/22115501113026660038]
[5]
Köhl, J.; Kolnaar, R.; Ravensberg, W.J. Mode of action of microbial biological control agents against plant diseases: Relevance beyond efficacy. Front. Plant Sci., 2019, 10(845), 845.
[http://dx.doi.org/10.3389/fpls.2019.00845] [PMID: 31379891]
[6]
Yasmin, S.; Hafeez, F.Y.; Mirza, M.S.; Rasul, M.; Arshad, H.M.I.; Zubair, M.; Iqbal, M. Biocontrol of bacterial leaf blight of rice and profiling of secondary metabolites produced by rhizospheric Pseudomonas aeruginosa BRp3. Front. Microbiol., 1895, 2017, 8.
[http://dx.doi.org/10.3389/fmicb.2017.01895] [PMID: 29018437]
[7]
Moss, M.O. In: Morphology and physiology of penicillium and acremonium. Penicillium and Acremonium. Biotechnology Handbooks; Peberdy, J.F., Ed.; Springer: Boston, MA, 1987, Vol. 1, pp. 37-71.
[http://dx.doi.org/10.1007/978-1-4899-1986-1_2]
[8]
Kirk, P.M.; Cannon, P.F.; Minter, D.W.; Stalpers, J.A. Dictionary of the Fungi, 10th ed; CABI Publishing: U.K., 2008, p. 784.
[9]
Wilson, C.L. Consideration of the use of persimmon wilt as a silvercide for weed persimmon. Plant Dis. Rep., 1965, 49, 780-791.
[10]
Rintz, R.E. A zonal leaf spot of water hyacinth caused by Cephalosporium zonatum. Hyacinth Control J., 1973, 11, 41-44.
[11]
Fatimi, A. Formulation of biocontrol agents: A patent landscape analysis. Biol. Life Sci. Forum, 2022, 11(1), 19.
[http://dx.doi.org/10.3390/IECPS2021-12053]
[12]
Papavizas, G.C. Strain of Trichoderma viride to control Fusarium wilt. Granted Patent: US4489161A, US 1984.
[13]
World Intellectual Property Organization. The Patentscope. Available from: https://patentscope.wipo.int (Accessed on: March 10, 2022).
[14]
European Patent Office. Espacenet Patent Search. Available from: https://worldwide.espacenet.com (Accessed on: March 10, 2022).
[15]
United States Patent and Trademark Office. USPTO Database (PatFT-AppFT). Available from: https://www.uspto.gov/patents/search (Accessed on: February 10, 2022).
[16]
Cambia Institute. The lens patent data set. Available from: https://www.lens.org (Accessed on: February 10, 2022).
[17]
Ranganathan, B.; Miller, C.; Sinskey, A. Biocompatible synthetic and semi-synthetic polymers - A patent analysis. Pharm. Nanotechnol., 2018, 6(1), 28-37.
[http://dx.doi.org/10.2174/2211738505666171023152549] [PMID: 29065849]
[18]
Rodrigues, H.C.S.R.; Carvalho, A.L.; Souza, C.O.; Umsza-Guez, M.A. Evolution of world and brazilian markets for enzymes produced by solid-state fermentation: A patent analysis. Recent Pat. Biotechnol., 2020, 14(2), 112-120.
[http://dx.doi.org/10.2174/1872208313666191017143845] [PMID: 31625481]
[19]
Fatimi, A. Hydrogel-based bioinks for three-dimensional bioprinting: Patent analysis. Mat. Proceed., 2021, 7(1), 3.
[http://dx.doi.org/10.3390/IOCPS2021-11239]
[20]
Oliveira, T.S.; de Lima Silva, V.; Assuncao, L.S.; de Jesus Freitas, T.; Machado, B.A.S.; Otero, D.M.; Nunes, I.L.; de Castro Almeida, R.C.; Ribeiro, C.D.F.; Druzian, J.I. A patent data analysis in nanotechnology applied to essential oils. Rec. Pat. Nanotechnol., 2021.
[http://dx.doi.org/10.2174/1872210515666210217090541] [PMID: 33596814]
[21]
Fatimi, A. Seaweed-based biofertilizers: A patent analysis. Recent Pat. Biotechnol., 2022, 16(2), 144-154.
[http://dx.doi.org/10.2174/1872208316666220128105056] [PMID: 35088683]
[22]
Fatimi, A. Exploring the patent landscape and innovation of hydrogel-based bioinks used for 3D bioprinting. Rec. Adv. Drug Deliv. Formul., 2022, 16(2), 145-463.
[http://dx.doi.org/10.2174/2667387816666220429095834] [PMID: 35507801]
[23]
European Patent Office. Espacenet Glossary. Available from: https://worldwide.espacenet.com/patent (Accessed on: February 10, 2022).
[24]
World Intellectual Property Organization. Handbook on industrial property information and documentation; WIPO: Geneva, Switzerland, 2013, p. 43.
[25]
World Intellectual Property Organization. IPC Publication. Available from: https://www.wipo.int/classifications/ipc/ipcpub (Accessed on: February 10, 2022)
[26]
Intellectual Property India. Jurisdiction of Patent Offices. Available from: https://ipindia.gov.in/jurisdiction-of-patent-offices.htm (Accessed on: February 10, 2022).
[27]
orld intellectual property organization. What is intellectual property? Frequently asked questions: Patents. Available from: https://www.wipo.int/patents/en/faq_patents.html (Accessed on: February 10, 2022).
[28]
Ligon, J. M.; Hill Dwight, S.; Ryals, J. A.; Lam, S. T.; Hammer, P. E. Anti-pathogenic biocontrol agents, genes encoding antibiotics synthesis and the use of said antibiotics. Patent: AU655774B2, 1995.
[29]
Knol, W. Method for preparation, preservation and application of biological control agents. Patent Application: EP1424007A1. Europe, 2004.
[30]
Boyetchko, S.M.; Sawchyn, K.; Geissler, J. Pre-emergent biological control agents. Patent: US6881567B2, US 2005.
[31]
Scherer, M.; Klappach, K.; Haden, E. Use of synthetic and biological fungicides in combination for controlling harmful fungi. WO2010108973A2; PCT, 2010.
[32]
Jianai, C.; Fangling, D.; Shanyue, Z.; Jiying, Q.; Xiaoyong, L. Method for evaluation of strain quality of trichoderma biocontrol agent. CN102660627A, 2012.
[33]
Hammer, P.E.; Jones, J.C.; Koziel, M.G.; Uknes, S.J. Modified biocontrol agents and their use. US, Patent US20170150726A1, United States 2017.
[34]
Hellwege, E.; Andersch, W.; Stenzel, K.; Springer, B. Compositions comprising a biological control agent and an insecticide. Patent: US9737078B2, US 2017.
[35]
Song, L.; Li, L.; Zuo, T.; Chen, Y.; Li, X.; Zou, J.; Chen, S.; Mao, H.; Gou, T.; Yang, F.; Liu, Q. Preparation method of biocontrol agent. Patent: CN111593002A, 2020.

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