Unveiling resilience: coelomic fluid bacteria's impact on plant metabolism and abiotic stress tolerance

被引:1
|
作者
Yakkou, Lamia [1 ,2 ]
Houida, Sofia [3 ]
El Baaboua, Aicha [4 ]
Bilen, Serdar [5 ]
Chelkha, Maryam [6 ]
Kaya, Leyla Okyay [5 ]
Aasfar, Abderrahim [7 ]
Ameen, Fuad [8 ]
Bhat, Sartaj Ahmad [9 ]
Raouane, Mohammed [10 ]
Amghar, Souad [10 ]
El Harti, Abdellatif [10 ]
机构
[1] Univ Ibn Zohr, Fac Sci Agadir, Lab Microbial Biotechnol & Plant Protect LBVRN, BP 8106, Agadir 80000, Morocco
[2] Univ Ibn Zohr, Fac Appl Sci Ait Melloul, Agadir, Morocco
[3] Inst Pasteur Morocco, Lab Mycobacteria & TB, Casablanca, Morocco
[4] Abdelmalek Essaadi Univ, Fac Sci, Dept Biol, Biotechnol & Appl Microbiol Team, Tetouan, Morocco
[5] Ataturk Univ, Fac Agr, Soil Sci & Plant Nutr Dept, Erzurum, Turkiye
[6] Cornell Univ, Cornell AgriTech, Dept Entomol, Geneva, NY USA
[7] Mohammed VI Polytech Univ, Moroccan Fdn Adv Sci Innovat & Res MAScIR, Plant & Microbial Biotechnol Ctr, Ben Guerir, Morocco
[8] King Saud Univ, Coll Sci, Dept Bot & Microbiol, Riyadh, Saudi Arabia
[9] Gifu Univ, River Basin Res Ctr, Gifu, Japan
[10] Mohammed V Univ, Ecole Normale Super ENS, Ctr Water Nat Resources Environm & Sustainable Dev, Res Team Lumbricidae Improving Soil Prod & Environ, Rabat, Morocco
关键词
Earthworm; coelomic fluid; PGPR; plant tolerance; abiotic stress; lipidome; GROWTH-PROMOTING BACTERIA; SEEDLING GROWTH; SOIL; EARTHWORMS; DEGRADATION; ABUNDANCE; TOMATO; MUCUS;
D O I
10.1080/15592324.2024.2363126
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Earthworms' coelomic fluid (CF) has been discovered to possess properties that promote plant development. In particular, the earthworm's coelomic fluid-associated bacteria (CFB) are the primary factor influencing the plants' response. To investigate this, we used bacteria isolated from the CF and selected based on different plant growth-promoting traits, in a mesocosm ecosystem that includes plants. This experiment aimed to assess their impact on the metabolism of plants growing under abiotic stress environments (alkaline soil and nitrogen (N), phosphate (P), and potassium (K) deficit) and compare the lipid profiles of plants under the various treatments. We used seven different bacterial species isolated from the CF of Aporrectodea molleri and as a plant model Zea mays L. For the metabolomic analysis method, we used gas chromatography-mass spectrometry lipidomic. After observing the metabolomic profiles, we found that a few molecular pathways are involved in how plants react to bacterial biostimulants. The bacterial isolates belonging to Pantoea vagans, Pseudomonas aeruginosa, Bacillus paramycoides, and Bacillus thuringiensis have led to a significant increase in synthesizing several metabolites belonging to various chemical categories. Contrary to predictions, abiotic stress did not cause a drop in the composition and concentration of lipids in plants treated with the CFB, demonstrating the rigidity of the protective mechanisms. The statistical analysis based on the Pearson method revealed a positive significant correlation between plant growth parameters (length of the aerial part, surface of the leaves, and biomass) and some metabolites belonging to fatty acids, carboxylic acids, benzene derivatives, and alkanes. Moreover, the standard metabolic components of all treatments in much higher concentrations during bacterial treatments than the control treatment suggests that the bacteria have stimulated the overexpression of these metabolic components. According to these results, we could assume that plants treated with CFB exhibit an adaptability of abiotic stress defense mechanisms, which may be attributed to the upregulation of genes involved in lipid biosynthesis pathways.
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页数:12
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