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de Zelicourt, A.

Publications and source records attributed to de Zelicourt, A..

2 recordsLinked to original sources

Enhancement of Arabidopsis growth by Enterobacter sp. SA187 under elevated CO2 is dependent on ethylene signalling activation and primary metabolism reprogramming

As atmospheric CO2 levels continue to increase, optimizing the CO2 fertilization effect which often falls short of its potential due to the physiological and metabolic limitations of plants becomes crucial. This study investigates the role of Enterobacter sp. SA187 (SA187), a plant growth-promoting bacterium, in enhancing growth and development of Arabidopsis thaliana under elevated atmospheric CO2 (eCO2) conditions. While SA187 inoculation did not have major effects under ambient CO2, it was found to significantly enhance root and shoot biomass, and to increase N- and reduce C-contents under eCO2. Moreover, transcriptomics and metabolomics suggested that SA187 modulated phytohormonal homeostasis, with activation of the salicylic acid, jasmonic acid and ethylene signalling pathways, and increased primary metabolism including the TCA cycle, N and carbohydrate metabolisms. Finally, the growth-promoting effects of SA187 were shown to be mediated through ethylene-dependent pathways, as evidenced with the ethylene-insensitive mutant ein2-1 which did not show similar benefits in plant fresh weight and altered gene expression. This beneficial plant-microbe interaction under eCO2 in a non-leguminous plant highlights a novel aspect of microbial influence on plant physiology in the context of climate change. These insights underscore the potential of utilizing SA187 to enhance plant performance and adaptability in future high CO2 environments, providing a sustainable approach to agricultural productivity as global CO2 levels increase.

plant biology↗

Enterobacter sp. SA187-induced coordinated regulation of high-affinity nitrate transporters and ethylene signaling enhances nitrogen content and plant growth under low nitrate

O_LISustainable crop production demands solutions to reduce the overuse of synthetic nitrogen fertilizers, and plant-growth-promoting bacteria offer a promising strategy by enhancing nutrients acquisition. This study investigated ability of a non-diazotrophic bacterium, Enterobacter sp. SA187 (SA187), in enhancing Arabidopsis growth under low nitrate conditions and the underlying mechanisms. C_LIO_LIArabidopsis seedlings were grown under different nitrate concentrations with or without SA187 inoculation. Growth traits were quantified alongside shoot and root nitrate and total nitrogen contents, and C:N ratios. Transcriptomic profiling (RNA-seq) and qRT-PCR were used to assess modified gene expression. Functional validation was conducted using ethylene-insensitive (ein2-1) and high-affinity nitrate transporter (HATS) mutants (nrt2.5, nrt2.6). C_LIO_LISA187 significantly enhanced fresh weight, primary root length, and lateral root density under low nitrate, with benefits increasing as nitrate availability decreased. SA187 improved nitrate accumulation and shoot nitrogen allocation, reducing shoot C:N ratios. SA187 regulated expression of HATS and hormone-responsive genes. The growth-promoting effects were abolished in ein2-1, nrt2.5, and nrt2.6 mutants, and SA187-induced regulation of NRT2.5 occurred downstream of ethylene signaling, while NRT2.6 was partly ethylene-independent. C_LIO_LISA187 promotes growth under low nitrate possibly through ethylene-mediated and HATS-dependent reprogramming of nitrate accumulation and nitrogen allocation, supporting its use as a microbial solution for low-input agriculture. C_LI

plant biology↗