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1.
Microorganisms ; 10(10)2022 Oct 21.
Article in English | MEDLINE | ID: mdl-36296365

ABSTRACT

Leucojum aestivum is a medicinal plant belonging to the Amaryllidaceae family well known as a producer of alkaloids such as galanthamine and lycorine. However, the endophytic microbes that colonize different plant tissues without causing any damage have not been reported in this plant. Here, we explored the different endophytic bacterial communities isolated from different surface disinfected tissues of L. aestivum 'Gravety giant' and screened bacterial isolates producing alkaloids and their potential use as biocontrol agent against wheat pathogens. For that purpose, endophytic bacteria were isolated from bulbs, roots and shoots of L. aestivum. After taxonomical characterization, these microorganisms were screened for their ability to produce alkaloids using high-performance thin-layer chromatography (HPTLC) and untargeted liquid chromatography-Mass Spectrometry/Mass Spectrometry (LC-MS/MS) strategies. We isolated 138 bacteria belonging to four phyla and 42 genera, mainly from roots and shoots. The most abundant genera were Rahnella in shoot, Patulibacter in bulb and Bacillus in roots. Among the different bacterial isolates, the methanolic extracts of Luteibacter rhizovicinus (LaBFB3301) and Commamonas denitrificans (LaBFS2103) slightly delayed the growth of F. graminearum colonies in in vitro dual tests against F. graminearum and M. nivale strains with 15.5% and 19.9% inhibition rates, respectively. These isolates are able to produce an indolic alkaloid tryptophol (C10H11NO, [M + H]+ 162.0913). These endophytic bacteria might be investigated to characterize the plant protection effect and the plant growth promotion effect.

2.
Microbiol Res ; 243: 126650, 2021 Feb.
Article in English | MEDLINE | ID: mdl-33302220

ABSTRACT

Given the current trend towards reducing the use of chemical controls in agriculture, microbial resources such as plant endophytes are being intensively investigated for traits that are conducive to plant protection. Among the various important target pathogens, Fusarium graminearum is a fungal pathogen of cereal crops that is responsible for severe yield losses and mycotoxin contamination in grains. In the present study, we investigated the bacterial endophytic communities from vetiver (Chrysopogon zizanioides (L.) Roberty) roots originating from 5 different geographic locations across Europe and Africa. This study relies on a global 16S metabarcoding approach and the isolation/functional characterization of bacterial isolates. The results we obtained showed that geographical location is a factor that influences the composition and relative abundance of root endophyte communities in vetiver. Three hundred eighty-one bacterial endophytes were isolated and assessed for their in vitro antagonistic activities towards F. graminearum mycelium growth. In total, 46 % of the isolates showed at least 50 % inhibitory activity against F. graminearum. The taxonomic identification of the bioactive isolates revealed that the composition of these functional culturable endophytic communities was influenced by the geographic origins of the roots. The selected communities consisted of 15 genera. Some endophytes in Bacillus, Janthinobacterium, Kosakonia, Microbacterium, Pseudomonas, and Serratia showed strong growth inhibition activity (≥70 %) against F. graminearum and could be candidates for further development as biocontrol agents.


Subject(s)
Bacteria/isolation & purification , Chrysopogon/microbiology , Endophytes/isolation & purification , Fusarium/growth & development , Microbiota , Plant Diseases/microbiology , Antibiosis , Bacteria/classification , Bacteria/genetics , Bacterial Physiological Phenomena , Endophytes/classification , Endophytes/genetics , Endophytes/physiology , Fusarium/physiology , Mycelium/growth & development , Mycelium/physiology , Phylogeny , Plant Roots/microbiology
3.
New Phytol ; 194(2): 353-363, 2012 Apr.
Article in English | MEDLINE | ID: mdl-22339405

ABSTRACT

Cellular responses to DNA double-strand breaks (DSBs) are linked in mammals and yeasts to the phosphorylated histones H2AX (γH2AX) repair foci which are multiproteic nuclear complexes responsible for DSB sensing and signalling. However, neither the components of these foci nor their role are yet known in plants. In this paper, we describe the effects of γH2AX deficiency in Arabidopsis thaliana plants challenged with DSBs in terms of genotoxic sensitivity and E2F-mediated transcriptional responses. We further establish the existence, restrictive to the G1/S transition, of specific DSB-induced foci containing tobacco E2F transcription factors, in both A. thaliana roots and BY-2 tobacco cells. These E2F foci partially colocalize with γH2AX foci while their formation is ataxia telangiectasia mutated (ATM)-dependent, requires the E2F transactivation domain with its retinoblastoma-binding site and is optimal in the presence of functional H2AXs. Overall, our results unveil a new interplay between plant H2AX and E2F transcriptional activators during the DSB response.


Subject(s)
Arabidopsis Proteins/metabolism , Arabidopsis/metabolism , DNA Breaks, Double-Stranded , DNA Repair , DNA, Plant/metabolism , E2F Transcription Factors/metabolism , Histones/metabolism , Arabidopsis/cytology , Arabidopsis/drug effects , Arabidopsis/genetics , Arabidopsis Proteins/genetics , Ataxia Telangiectasia Mutated Proteins , Bleomycin/pharmacology , Cell Cycle/drug effects , Crosses, Genetic , DNA Breaks, Double-Stranded/drug effects , DNA Repair/drug effects , E2F Transcription Factors/chemistry , Gene Expression Regulation, Plant/drug effects , Genes, Plant/genetics , Green Fluorescent Proteins/metabolism , Histones/genetics , MicroRNAs/metabolism , Phenotype , Protein Transport/drug effects , Nicotiana/cytology , Nicotiana/drug effects , Nicotiana/metabolism , Transcription, Genetic/drug effects
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