| Literature DB >> 26284103 |
Ana B Mendoza-Soto1, Loreto Naya1, Alfonso Leija1, Georgina Hernández1.
Abstract
Aluminum (Al) toxicity is widespread in acidic soils where the common bean (Phaseolus vulgaris), the most important legume for human consumption, is produced and it is a limiting factor for crop production and symbiotic nitrogen fixation. We characterized the nodule responses of common bean plants inoculated with Rhizobioum tropici CIAT899 and the root responses of nitrate-fertilized plants exposed to excess Al in low pH, for long or short periods. A 43-50% reduction in nitrogenase activity indicates that Al toxicity (Alt) highly affected nitrogen fixation in common bean. Bean roots and nodules showed characteristic symptoms for Alt. In mature nodules Al accumulation and lipoperoxidation were observed in the infected zone, while callose deposition and cell death occurred mainly in the nodule cortex. Regulatory mechanisms of plant responses to metal toxicity involve microRNAs (miRNAs) along other regulators. Using a miRNA-macroarray hybridization approach we identified 28 (14 up-regulated) Alt nodule-responsive miRNAs. We validated (quantitative reverse transcriptase-PCR) the expression of eight nodule responsive miRNAs in roots and in nodules exposed to high Al for long or short periods. The inverse correlation between the target and miRNA expression ratio (stress:control) was observed in every case. Generally, miRNAs showed a higher earlier response in roots than in nodules. Some of the common bean Alt-responsive miRNAs identified has also been reported as differentially expressed in other plant species subjected to similar stress condition. miRNA/target nodes analyzed in this work are known to be involved in relevant signaling pathways, thus we propose that the participation of miR164/NAC1 (NAM/ATAF/CUC transcription factor) and miR393/TIR1 (TRANSPORT INHIBITOR RESPONSE 1-like protein) in auxin and of miR170/SCL (SCARECROW-like protein transcription factor) in gibberellin signaling is relevant for common bean response/adaptation to Al stress. Our data provide a foundation for evaluating the individual roles of miRNAs in the response of common bean nodules to Alt.Entities:
Keywords: aluminum toxicity; common bean; legume-rhizobia; microRNAs; nodules; symbiotic nitrogen fixation
Year: 2015 PMID: 26284103 PMCID: PMC4519678 DOI: 10.3389/fpls.2015.00587
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
MicroRNA (miRNA) expression in nodules of common bean plants grown under control or Alt condition.
| miRNA | Expression Ratio (±SE) | |
|---|---|---|
| miR 160 | 1.91 (±0.01) | 3.60E-05 |
| miR 164 | 5.35 (±0.03) | 8.06E-06 |
| miR 165 | 1.64 (±0.02) | 0.00035 |
| miR 166 | 1.94 (±0.06) | 0.0002 |
| miR 170 | 5.70 (±0.52) | 0.00104 |
| miR 172 | 1.63 (±0.10) | 0.00216 |
| miR 390 | 2.57 (±0.01) | 3.38E-06 |
| miR 393 | 2.12 (±0.08) | 0.00464 |
| miR 395 | 2.02 (±0.01) | 4.42E-05 |
| miR 396 | 5.98 (±0.12) | 0.00156 |
| pvu-miR159.2 | 3.88 (±0.17) | 0.0001 |
| pvu-miR1509 | 2.13 (±0.01) | 0.00088 |
| pvu-miR1511 | 2.89 (±0.01) | 9.53E-06 |
| pvu-miR 2118 | 2.21 (±0.01) | 7.95E-05 |
| miR 156 | -1.16 (±0.009) | 0.00387 |
| miR 157 | -3.57 (±0.004) | 1.57E-05 |
| miR 167 | -1.38 (±0.05) | 0.04902 |
| miR 169 | -10.0 (±0.003) | 8.10E-06 |
| miR 319 | -2.30 (±0.01) | 0.00022 |
| miR 398 | -1.45 (±0.01) | 0.04504 |
| miR 399 | -2.56 (±0.03) | 0.00120 |
| miR 408 | -1.29 (±0.008) | 0.02278 |
| pvu-miR1514a | -1.66 (±0.001) | 0.00515 |
| pvu-miR1515 | -3.70 (±0.001) | 0.01827 |
| pvu-miR2119 | -2.63 (±0.03) | 0.01199 |
| gma-miR1521 | -2.00 (±0.006) | 7.00E-05 |
| gma-miR1534 | -2.56 (±0.005) | 0.00415 |
| mtr-miR2586 | -1.60 (±0.005) | 0.015564 |