Department of Molecular Signal Processing, Leibniz Institute of Plant Biochemistry, D-06120, Halle (Saale), Germany.
Department of Stress and Developmental Biology, Leibniz Institute of Plant Biochemistry, D-06120, Halle (Saale), Germany.
Sci Rep. 2017 Jun 16;7(1):3704. doi: 10.1038/s41598-017-03250-6.
The chemical composition of root exudates strongly impacts the interactions of plants with microorganisms in the rhizosphere and the efficiency of nutrient acquisition. Exudation of metabolites is in part mediated by ATP-binding cassette (ABC) transporters. In order to assess the contribution of individual ABC transporters to root exudation, we performed an LC-MS based non-targeted metabolite profiling of semi-polar metabolites accumulating in root exudates of Arabidopsis thaliana plants and mutants deficient in the expression of ABCG36 (PDR8/PEN3), ABCG37 (PDR9) or both transporters. Comparison of the metabolite profiles indicated distinct roles for each ABC transporter in root exudation. Thymidine exudation could be attributed to ABCG36 function, whereas coumarin exudation was strongly reduced only in ABCG37 deficient plants. However, coumarin exudation was compromised in abcg37 mutants only with respect to certain metabolites of this substance class. The specificity of ABCG37 for individual coumarins was further verified by a targeted LC-MS based coumarin profiling method. The response to iron deficiency, which is known to strongly induce coumarin exudation, was also investigated. In either treatment, the distribution of individual coumarins between roots and exudates in the investigated genotypes suggested the involvement of ABCG37 in the exudation specifically of highly oxygenated rather than monohydroxylated coumarins.
根系分泌物的化学成分强烈影响植物与根际微生物的相互作用以及养分的获取效率。代谢物的分泌部分是由 ATP 结合盒(ABC)转运蛋白介导的。为了评估单个 ABC 转运蛋白对根系分泌物分泌的贡献,我们对拟南芥植物和 ABCG36(PDR8/PEN3)、ABCG37(PDR9)表达缺陷突变体的根系分泌物中积累的半极性代谢物进行了基于 LC-MS 的非靶向代谢物分析。比较代谢物图谱表明,每个 ABC 转运蛋白在根系分泌物分泌中都有独特的作用。胸苷的分泌可归因于 ABCG36 的功能,而香豆素的分泌在 ABCG37 缺陷植物中则显著减少。然而,只有在 abcg37 突变体中,香豆素的分泌才会受到某些此类物质的影响。通过基于 LC-MS 的靶向香豆素分析方法进一步验证了 ABCG37 对个别香豆素的特异性。还研究了对缺铁的反应,已知缺铁会强烈诱导香豆素的分泌。在任一种处理中,所研究基因型中根系和分泌物中个别香豆素的分布表明 ABCG37 参与了高度氧化而非单羟基化香豆素的分泌。