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Responses of symbiotic nitrogen-fixing common bean to aluminum toxicity and delineation of nodule responsive microRNAs

机译:共生固氮蚕豆对铝毒性的响应和根瘤响应性microRNA的描绘

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摘要

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.
机译:铝(Al)毒性在酸性土壤中广泛存在,酸性土壤中生产人类最重要的豆类普通豆(菜豆),它是作物生产和共生固氮的限制因素。我们表征了接种根瘤菌CIAT899的普通豆类植物的根瘤响应以及长期或短期内暴露于低pH值的过量Al的硝酸盐施肥植物的根系响应。固氮酶活性降低43–50%,表明Al毒性(Alt)对普通豆的固氮影响很大。豆根和根瘤表现出Alt的特征性症状。在成熟的结节中,在感染区观察到铝的积累和脂过氧化,而call的沉积和细胞死亡主要发生在结节皮层。植物对金属毒性反应的调控机制涉及其他调控因子的微小RNA(miRNA)。使用miRNA-大阵列杂交方法,我们鉴定了28个(14个上调的)Alt结节响应性miRNA。我们验证了(定量逆转录酶-PCR)八个根瘤响应性miRNA在根部和长期或短期暴露于高铝的根瘤中的表达。在每种情况下,均观察到靶标与miRNA表达比(应力:对照)呈负相关。通常,miRNA在根部显示出比结核更高的响应。鉴定出的一些常见的豆类Alt反应性miRNA也据报道在遭受相似胁迫条件的其他植物中差异表达。已知在这项工作中分析的miRNA /靶标节点参与了相关的信号传导途径,因此我们建议miR164 / NAC1(NAM / ATAF / CUC转录因子)和miR393 / TIR1(转运抑制剂反应1样蛋白)参与其中。在生长素中的信号传导和赤霉素信号传导中的miR170 / SCL(SCARECROW样蛋白转录因子)的信号传导与普通豆对铝胁迫的响应/适应有关。我们的数据为评估miRNA在普通豆类结节对Alt的应答中的个别作用提供了基础。

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