| Literature DB >> 28536557 |
Shiyin Liu1,2, Nuoqiao Lin1,2, Yumei Chen1,2, Zhibin Liang1,2, Lisheng Liao1,2, Mingfa Lv1,2, Yufan Chen1,2, Yingxin Tang1,2, Fei He1,2, Shaohua Chen1,2, Jianuan Zhou1,2, Lianhui Zhang1,2,3.
Abstract
Sugarcane smut is a fungal disease caused by Sporisorium scitamineum, which can cause severe economic losses in sugarcane industry. The infection depends on the mating of bipolar sporida to form a dikaryon and develops into hyphae to penetrate the meristematic tissue of sugarcane. In this study, we set to isolate bacterial strains capable of blocking the fungal mating and evaluate their potential in control of sugarcane smut disease. A bacterial isolate ST4 from rhizosphere displayed potent inhibitory activity against the mating of S. scitamineum bipolar sporida and was selected for further study. Phylogenetic analyses and biochemical characterization showed that the isolate was most similar to Pseudomonas guariconensis. Methanol extracts from minimum and potato dextrose agar (PDA) agar medium, on which strain ST4 has grown, showed strong inhibitory activity on the sexual mating of S. scitamineum sporida, without killing the haploid cells MAT-1 or MAT-2. Further analysis showed that only glucose, but not sucrose, maltose, and fructose, could support strain ST4 to produce antagonistic chemicals. Consistent with the above findings, greenhouse trials showed that addition of 2% glucose to the bacterial inoculum significantly increased the strain ST4 biocontrol efficiency against sugarcane smut disease by 77% than the inoculum without glucose. The results from this study depict a new strategy to screen for biocontrol agents for control and prevention of the sugarcane smut disease.Entities:
Keywords: Sporisorium scitamineum; biocontrol; sexual mating; sporida; sugarcane smut
Year: 2017 PMID: 28536557 PMCID: PMC5422470 DOI: 10.3389/fmicb.2017.00778
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Mating rates of haploid cells on PDA and PDA+ST4 metabolite plates.
| Medium nos. | MAT-1 | MAT-2 | MAT-1+MAT-2 | Total | Mating rate |
|---|---|---|---|---|---|
| PDA | 5 | 3 | 145 | 153 | 94.77% |
| PDA+ST4 | 169 | 209 | 4 | 382 | 1.05% |
The effect of strain ST4 on control of sugarcane smut disease.
| Treatment | Sugarcane smut | |
|---|---|---|
| Incidence (%) | Control efficiencya (%) | |
| PBS control | 0.00 | – |
| positive control | 77.78 | – |
| ST4+ | 72.73 | 6.49 |
| ST4+ | 13.04 | 83.23 |
Phenotypic features of strain ST4 and phylogenetically related strain.
| Characteristic | ST4 | |
|---|---|---|
| Flagellation | Two polar | Two polar |
| Fluorescent pigments King’s B agar | + | + |
| Growth at 44°C | + | + |
| Growth at 5% NaCl | + | + |
| (G+C) mol % | 61.50 | 63.56 |
| Assimilation of | ||
| Indole production | - | - |
| β-Galactosidase production | - | - |
| Arginine dihydrolase | + | + |
| Urease | + | + |
| Nitrate reduction | - | - |
| Aesculin hydrolysis | - | - |
| Glucose | + | + |
| Gluconate | + | + |
| Caprate | + | + |
| Malate | + | + |
| Citrate | + | + |
| - | - | |
| Mannitol | - | - |
| - | - | |
| Phenylacetate | - | - |
| Adipate | - | - |
| Glycerol | + | + |
| Dextrin | - | V |
| - | – | |
| - | – | |
| - | – | |
| Gentiobiose | - | – |
| Sucrose | – | – |
| – | – | |
| – | – | |
| – | – | |
| – | – | |
| β-Methyl- | – | – |
| V | – | |
| – | – | |
| V | + | |
| – | – | |
| L-rhamnose | – | – |
| Inosine | + | V |
| – | – | |
| + | + | |
| – | – | |
| Myo-Inositol | – | – |
| – | V | |
| + | V | |
| + | + | |
| + | + | |
| + | + | |
| Tween 40 | + | V |
| Methylpyruvate | + | V |
| β-Hydroxybutyrate | + | + |
| α-Ketoglutarate | + | + |
| + | + | |
| Propionate | + | + |
| + | + | |
| γ-Aminobutyrate | + | + |
| – | – | |
| – | – | |
| – | V | |
| Formate | – | – |
| Galactonate lactone | – | – |
| α-Hydroxybutyrate | – | – |
| – | – | |
| α-Ketobutyrate | – | – |
| Glucuronamide | – | V |
| Glucose-6-phosphate | – | – |