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Updated: Jan 19, 2026

Identification of Fatty Acids in Bacillus cereus
Published on: December 5, 2016
Identification and Nematicidal Characterization of Proteases Secreted by Endophytic Bacteria Bacillus cereus BCM2
Haijing Hu1, Yang Gao2,3, Xia Li2
1School of Life Sciences, Nanjing University, Nanjing, 210023, People's Republic of China.
Abstract:
The endophytic bacterium Bacillus cereus BCM2 has shown great potential as a biocontrol organism against Meloidogyne incognita, which causes severe root-knot diseases in crops. In our previous study, the metabolite of BCM2 showed high nematicidal activity against the M. incognita second-stage juveniles. However, the mechanism employed by endophytic bacteria to infect and kill nematodes is still unclear. Here, we investigate both the endophytic bacterial extracellular proteins with nematicidal activity and their mechanism of killing nematodes. The first step was detecting the nematicidal activities of crude proteins. The results show that the nematode mortality rate reached 100% within 72 h, and the crude proteins damaged both the cuticle and eggshell, before finally destroying the targets. This suggests possible proteinaceous pathogeny in BCM2. Throughout the process, the fine-detail changes in the nematode cuticle and the intestinal structure were observed using scanning electron microscopy and transmission electron microscopy. These images show that BCM2 extracellular proteins did not damage the internal organization of the nematode but did severely damage its cuticle, which led to content leakage. From the crude proteins, chitosanase, alkaline serine protease, and neutral protease were purified and identified. The M. incognita-B. cereus BCM2 microenvironment simulation demonstrates that BCM2 adheres to the surface of nematodes and helps the metabolites that were produced by BCM2 to rapidly recognize and kill M. incognita. This relationship between plants, endophytic bacteria, and nematodes offers insight into the biological mechanisms that can be utilized for of nematode management.
Insights
Bacillus cereus BCM2 extracellular proteins effectively kill root-knot nematodes by damaging their cuticle. This discovery offers new insights into biological nematode management strategies.
Area of Science:
- Agricultural Microbiology
- Plant Pathology
- Biocontrol
Background:
- Root-knot nematodes (Meloidogyne incognita) cause significant crop damage.
- Endophytic bacteria like Bacillus cereus BCM2 show potential for biocontrol.
- The killing mechanism of BCM2 against nematodes was previously unclear.
Purpose of the Study:
- Investigate the nematicidal activity of BCM2 extracellular proteins.
- Elucidate the mechanism by which these proteins kill nematodes.
- Identify specific proteins responsible for nematicidal activity.
Main Methods:
- Assessed nematicidal activity of crude extracellular proteins from BCM2.
- Utilized scanning electron microscopy (SEM) and transmission electron microscopy (TEM) to observe nematode damage.
- Purified and identified key enzymes (chitosanase, proteases) from the active protein fraction.
- Simulated the M. incognita-B. cereus BCM2 microenvironment.
Main Results:
- Crude proteins from BCM2 achieved 100% nematode mortality within 72 hours.
- Proteins damaged the nematode cuticle and eggshells, leading to content leakage.
- SEM/TEM revealed severe cuticle damage but intact internal nematode structures.
- Chitosanase, alkaline serine protease, and neutral protease were identified as active components.
- BCM2 adheres to nematodes, facilitating rapid killing by its metabolites.
Conclusions:
- BCM2 extracellular proteins, particularly identified enzymes, possess potent nematicidal activity.
- The primary mechanism involves cuticle degradation, leading to nematode death.
- This research provides a mechanistic understanding for using BCM2 in nematode management.
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