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根系生物碱谱对菌根化的时空转变。

Spatiotemporal Transformation in the Alkaloid Profile of Pinus Roots in Response to Mycorrhization.

机构信息

Environmental Molecular Sciences Laboratory, Earth and Biological Sciences Directorate , Pacific Northwest National Laboratory , 902 Battelle Boulevard , Richland , Washington 99354 , United States.

Biology Department , Duke University , 130 Science Drive , Durham , North Carolina 27708 , United States.

出版信息

J Nat Prod. 2019 May 24;82(5):1382-1386. doi: 10.1021/acs.jnatprod.8b01050. Epub 2019 Apr 22.

Abstract

Root alkaloids remain highly unexplored in ectomycorrhizae development studies. By employing ultrahigh mass resolution mass spectrometry imaging techniques, we showed substantial relocation and transformation of piperidine alkaloids in pine root tips in response to Suillus mycorrhization. We imaged, in the time frame of ectomycorrhizae formation, a completely different alkaloid profile in Pinus strobus, where basidiospores of Suillus spraguei induce morphogenesis of symbiotic tissues, than in Pinus taeda, where such interaction fails to induce morphogenesis. On the basis of spatial colocalization studies, we proposed some alternative routes for biosynthesis of these alkaloids that supplement existing literature data.

摘要

在外生菌根发育研究中,根生物碱仍然高度未被探索。通过采用超高质量分辨率质谱成像技术,我们表明在松针响应苏氨酸菌共生时,哌啶生物碱在根部发生了大量的重定位和转化。我们在形成外生菌根的时间框架内对云杉的不同生物碱图谱进行了成像,在那里,苏氨酸菌的担孢子诱导共生组织的形态发生,而在火炬松中,这种相互作用未能诱导形态发生。基于空间共定位研究,我们提出了这些生物碱生物合成的一些替代途径,补充了现有文献数据。

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