Optimizing Crop Production with Bacterial Inputs: Insights into Chemical Dialogue between Sphingomonas sediminicola and Pisum sativum

Author:

Mazoyon Candice1,Firmin Stéphane2,Bensaddek Lamine1,Pecourt Audrey13,Chabot Amélie4,Faucon Michel-Pierre2ORCID,Sarazin Vivien3ORCID,Dubois Fréderic1ORCID,Duclercq Jérôme1ORCID

Affiliation:

1. Ecologie et Dynamique des Systèmes Anthropisés (EDYSAN, UMR7058 CNRS), Université de Picardie Jules Verne (UPJV), 80039 Amiens, France

2. Agroécologie, Hydrogéochimie, Milieux et Ressources (AGHYLE, UP2018.C101) UniLaSalle, 60026 Beauvais, France

3. AgroStation, 68700 Aspach-le-Bas, France

4. UFR des Sciences, Université de Picardie Jules Verne (UPJV), 80039 Amiens, France

Abstract

The use of biological inputs is an interesting approach to optimize crop production and reduce the use of chemical inputs. Understanding the chemical communication between bacteria and plants is critical to optimizing this approach. Recently, we have shown that Sphingomonas (S.) sediminicola can improve both nitrogen supply and yield in pea. Here, we used biochemical methods and untargeted metabolomics to investigate the chemical dialog between S. sediminicola and pea. We also evaluated the metabolic capacities of S. sediminicola by metabolic profiling. Our results showed that peas release a wide range of hexoses, organic acids, and amino acids during their development, which can generally recruit and select fast-growing organisms. In the presence of S. sediminicola, a more specific pattern of these molecules took place, gradually adapting to the metabolic capabilities of the bacterium, especially for pentoses and flavonoids. In turn, S. sediminicola is able to produce several compounds involved in cell differentiation, biofilm formation, and quorum sensing to shape its environment, as well as several molecules that stimulate pea growth and plant defense mechanisms.

Funder

SFR Condorcet FR CNRS 3417

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

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