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Bacteria-derived diacetyl enhances Arabidopsis phosphate starvation responses partially through the DELLA-dependent gibberellin signaling pathway

机译:细菌衍生的二乙炔增强了通过Della依赖性的嗜酸酯酸脲信号通路部分地提高拟南芥磷酸盐饥饿反应

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摘要

Plant growth-promoting rhizobacteria (PGPR) are naturally occurring soil microorganisms that colonize roots and stimulate plant growth. Some PGPR strains can directly regulate plant growth in the absence of physical contact with the plant, via volatile organic compounds (VOCs) emissions. Recently, we have described that Arabidopsis thaliana respond differentially to diacetyl, a VOC from Bacillus amyloliquefaciens strain GB03 (GB03), through integral modulation of the immune system and the phosphate-starvation response (PSR) system, resulting in either mutualism or immunity. Under phosphate deficient conditions, diacetyl enhances salicylic acid- and jasmonic acid-mediated immunity and consequently causes plant hyper-sensitivity to phosphate deficiency. Here, we show that application of exogenous gibberellin (GA) partially alleviates the deleterious effect caused by either B. amyloliquefaciens GB03 VOCs or diacetyl in Arabidopsis under phosphate deficient conditions, while DELLA quadruple mutant exposed to GB03 VOCs exhibits a partial reduction on the stress symptoms. Moreover, diacetyl appears to enhance DELLA protein accumulation and increase the expression of several GA deactivation-related genes. These findings suggest that the DELLA-mediated GA signaling pathway is involved in the bi-faceted role of GB03 VOCs in regulating plant growth.
机译:植物生长促进的根茎(PGPR)是天然存在的土壤微生物,殖民源性并刺激植物生长。一些PGPR菌株可通过挥发性有机化合物(VOC)排放来直接调节植物生长。最近,我们已经描述了拟南芥,通过免疫系统的整体调节和磷酸饥饿反应(PSR)系统的整体调节,拟南芥,拟南芥差异为二乙酰菌差异,从芽孢杆菌淀粉氨酸淀粉酮菌根菌株GB03(GB03)。在磷酸盐缺乏条件下,二乙酰增强水杨酸和茉莉酸介导的免疫力,从而导致植物超敏感性对磷酸缺乏症。在这里,我们表明外源性赤霉素(GA)的施用部分减轻了B.淀粉氨酰氨基吡喹酮GB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03 VB03缺乏条件下的有害效果,而暴露于GB03 VOC的Della四片突变体表现出压力症状的部分减少。此外,二乙炔似乎增强了Della蛋白质积累,并增加了几种与常离子相关基因的表达。这些发现表明,Della介导的GA信号通路涉及GB03 VOC在调节植物生长方面的双锥体作用。

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