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Transgenic tomato plants alter quorum sensing in plant growth‐promoting rhizobacteria

根际细菌 生物 群体感应 铁载体 转基因番茄 根际 微生物学 转基因作物 拟南芥 野生型 转基因 植物 细菌 突变体 生物化学 基因 毒力 遗传学
作者
Jorge Barriuso,Beatriz Ramos‐Solano,Rupert G. Fray,Miguel Cámara,Anton Hartmann,Francisco Javier Gutiérrez‐Mañero
出处
期刊:Plant Biotechnology Journal [Wiley]
卷期号:6 (5): 442-452 被引量:114
标识
DOI:10.1111/j.1467-7652.2008.00331.x
摘要

Two Gram-negative, plant growth-promoting rhizobacteria (PGPRs), denominated as M12 and M14, were classified by 16S rDNA sequencing as Burkholderia graminis species. Both strains were shown to produce a variety of N-acyl-homoserine lactone (AHL) quorum sensing (QS) signalling molecules. The involvement of these molecules in plant growth promotion and the induction of protection against salt stress was examined. AHL production was evaluated in vitro by thin-layer chromatography using AHL biosensors, and the identity of the AHLs produced was determined by liquid chromatography-tandem mass spectrometry. The in situ production of AHLs by M12 and M14 in the rhizosphere of Arabidopsis thaliana plants was detected by co-inoculation with green fluorescent protein-based biosensor strains and confocal laser scanning microscopy. To determine whether plant growth promotion and protection against salt stress were mediated by QS, these PGPRs were assayed on wild-type tomato plants, as well as their corresponding transgenics expressing YenI (short-chain AHL producers) and LasI (long-chain AHL producers). In wild-type tomato plants, only M12 promoted plant growth, and this effect disappeared in both transgenic lines. In contrast, M14 did not promote growth in wild-type tomatoes, but did so in the LasI transgenic line. Resistance to salt stress was induced by M14 in wild-type tomato, but this effect disappeared in both transgenic lines. The strain M12, however, did not induce salt resistance in wild-type tomato, but did so in LasI tomato plants. These results reveal that AHL QS signalling molecules mediate the ability of both PGPR strains M12 and M14 to promote plant growth and to induce protection against salt stress.
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