Literature DB >> 32102264

Lesson from Ecotoxicity: Revisiting the Microbial Lipopeptides for the Management of Emerging Diseases for Crop Protection.

Deepti Malviya1, Pramod Kumar Sahu1, Udai B Singh1, Surinder Paul1, Amrita Gupta1, Abhay Raj Gupta1, Shailendra Singh1, Manoj Kumar1, Diby Paul2, Jai P Rai3, Harsh V Singh1, G P Brahmaprakash4.   

Abstract

Microorganisms area treasure in terms of theproduction of various bioactive compounds which are being explored in different arenas of applied sciences. In agriculture, microbes and their bioactive compounds are being utilized in growth promotion and health promotion withnutrient fortification and its acquisition. Exhaustive explorations are unraveling the vast diversity of microbialcompounds with their potential usage in solving multiferous problems incrop production. Lipopeptides are one of such microbial compounds which havestrong antimicrobial properties against different plant pathogens. These compounds are reported to be produced by bacteria, cyanobacteria, fungi, and few other microorganisms; however, genus Bacillus alone produces a majority of diverse lipopeptides. Lipopeptides are low molecular weight compounds which havemultiple industrial roles apart from being usedas biosurfactants and antimicrobials. In plant protection, lipopeptides have wide prospects owing totheirpore-forming ability in pathogens, siderophore activity, biofilm inhibition, and dislodging activity, preventing colonization bypathogens, antiviral activity, etc. Microbes with lipopeptides that haveall these actions are good biocontrol agents. Exploring these antimicrobial compounds could widen the vistasof biological pest control for existing and emerging plant pathogens. The broader diversity and strong antimicrobial behavior of lipopeptides could be a boon for dealing withcomplex pathosystems and controlling diseases of greater economic importance. Understanding which and how these compounds modulate the synthesis and production of defense-related biomolecules in the plants is a key question-the answer of whichneeds in-depth investigation. The present reviewprovides a comprehensive picture of important lipopeptides produced by plant microbiome, their isolation, characterization, mechanisms of disease control, behavior against phytopathogens to understand different aspects of antagonism, and potential prospects for future explorations as antimicrobial agents. Understanding and exploring the antimicrobial lipopeptides from bacteria and fungi could also open upan entire new arena of biopesticides for effective control of devastating plant diseases.

Entities:  

Keywords:  Bacillus spp.; antimicrobials; biocontrol; biosurfactant; lipopeptides

Year:  2020        PMID: 32102264     DOI: 10.3390/ijerph17041434

Source DB:  PubMed          Journal:  Int J Environ Res Public Health        ISSN: 1660-4601            Impact factor:   3.390


  3 in total

1.  A Comparative Analysis of Microbe-Based Technologies Developed at ICAR-NBAIM Against Erysiphe necator Causing Powdery Mildew Disease in Grapes (Vitis vinifera L.).

Authors:  Deepti Malviya; Ratna Thosar; Namrata Kokare; Shital Pawar; Udai B Singh; Sujoy Saha; Jai P Rai; Harsh V Singh; R G Somkuwar; Anil K Saxena
Journal:  Front Microbiol       Date:  2022-05-17       Impact factor: 6.064

2.  Characterization of faba bean (Vicia faba L.) rhizosphere associating rhizobacteria against Botrytis fabae AAUBF-12 and their plant growth-promoting properties.

Authors:  Zewdineh Firdu; Larissa Maia; Jorge Teodoro; Tesfaye Alemu; Fassil Assefa
Journal:  Heliyon       Date:  2022-01-29

3.  Fatty Acid Substitutions Modulate the Cytotoxicity of Puwainaphycins/Minutissamides Isolated from the Baltic Sea Cyanobacterium Nodularia harveyana UHCC-0300.

Authors:  Kumar Saurav; Alessia Caso; Petra Urajová; Pavel Hrouzek; Germana Esposito; Kateřina Delawská; Markéta Macho; Jan Hájek; José Cheel; Subhasish Saha; Petra Divoká; Sila Arsin; Kaarina Sivonen; David P Fewer; Valeria Costantino
Journal:  ACS Omega       Date:  2022-03-28
  3 in total

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