Effect of Bacterial Extracellular Polymeric Substances from Enterobacter spp. on Rice Growth under Abiotic Stress and Transcriptomic Analysis

Author:

Aoudi Yosra1,Agake Shin-ichiro23ORCID,Habibi Safiullah4ORCID,Stacey Gary3,Yasuda Michiko24ORCID,Ohkama-Ohtsu Naoko24ORCID

Affiliation:

1. United Graduate School of Agriculture, Tokyo University of Agriculture and Technology, 3-5-8 Saiwaicho, Fuchu-shi 183-8509, Tokyo, Japan

2. Institute of Global Innovation Research, Tokyo University of Agriculture and Technology, 3-8-1 Harumicho, Fuchu-shi 183-8538, Tokyo, Japan

3. Division of Plant Science and Technology, University of Missouri—Bond Life Sciences Center, 1201 Rollins St., Columbia, MO 65201-4231, USA

4. Institute of Agriculture, Tokyo University of Agriculture and Technology, 3-5-8 Saiwaicho, Fuchu-shi 183-8509, Tokyo, Japan

Abstract

Plant biostimulants have received attention as sustainable alternatives to chemical fertilizers. Extracellular polymeric substances (EPSs), among the compounds secreted by plant growth-promoting rhizobacteria (PGPRs), are assumed to alleviate abiotic stress. This study aims to investigate the effect of purified EPSs on rice under abiotic stress and analyze their mechanisms. A pot experiment was conducted to elucidate the effects of inoculating EPSs purified from PGPRs that increase biofilm production in the presence of sugar on rice growth in heat-stress conditions. Since all EPSs showed improvement in SPAD after the stress, Enterobacter ludwigii, which was not characterized as showing higher PGP bioactivities such as phytohormone production, nitrogen fixation, and phosphorus solubilization, was selected for further analysis. RNA extracted from the embryos of germinating seeds at 24 h post-treatment with EPSs or water was used for transcriptome analysis. The RNA-seq analysis revealed 215 differentially expressed genes (DEGs) identified in rice seeds, including 139 up-regulated and 76 down-regulated genes. A gene ontology (GO) enrichment analysis showed that the enriched GO terms are mainly associated with the ROS scavenging processes, detoxification pathways, and response to oxidative stress. For example, the expression of the gene encoding OsAAO5, which is known to function in detoxifying oxidative stress, was two times increased by EPS treatment. Moreover, EPS application improved SPAD and dry weights of shoot and root by 90%, 14%, and 27%, respectively, under drought stress and increased SPAD by 59% under salt stress. It indicates that bacterial EPSs improved plant growth under abiotic stresses. Based on our results, we consider that EPSs purified from Enterobacter ludwigii can be used to develop biostimulants for rice.

Funder

JSPS KAKENHI Grant-in-Aid Research Activity

Promotion of Joint International Research Number

WISE Program: Doctoral Program for World-leading Innovative and Smart Education of TUAT granted by the Ministry of Education, Culture, Sports, Science and Technology (MEXT), Japan

Publisher

MDPI AG

Reference49 articles.

1. Parray, J.A. (2023). Climate Change and Microbiome Dynamics, Springer International Publishing.

2. (2024, February 21). FARMER TOOL 2023 GAP Report. Available online: https://globalagriculturalproductivity.org/2023-gap-report/.

3. Plant–microbe networks in soil are weakened by century-long use of inorganic fertilizers;Huang;Microb. Biotechnol.,2019

4. Rouphael, Y., and Colla, G. (2020). Toward a sustainable agriculture through plant biostimulants: From experimental data to practical applications. Agronomy, 10.

5. (2024, February 21). Biostimulants Market by Crop Type (Cereals & Grains, Oilseeds & Pulses, Fruits & Vegetables, Flowers & Ornamentals), Active Ingredients (Humic Substances, Seaweed Extracts), Form (Dry, Liquid), Mode of Application and Region-Global Forecast to 2028. Available online: https://www.researchandmarkets.com/report/biostimulants.

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