Institute of Plant and Microbial Biology, University of Zürich, Zollikerstrasse 107, 8008, Zürich, Switzerland.
Department of Chemistry, University of Zürich, Winterthurerstrasse 190, 8057, Zurich, Switzerland.
Sci Rep. 2021 Nov 17;11(1):22465. doi: 10.1038/s41598-021-01867-2.
After a century of investigations, the function of the obligate betaproteobacterial endosymbionts accommodated in leaf nodules of tropical Rubiaceae remained enigmatic. We report that the α-D-glucose analogue (+)-streptol, systemically supplied by mature Ca. Burkholderia kirkii nodules to their Psychotria hosts, exhibits potent and selective root growth inhibiting activity. We provide compelling evidence that (+)-streptol specifically affects meristematic root cells transitioning to anisotropic elongation by disrupting cell wall organization in a mechanism of action that is distinct from canonical cellulose biosynthesis inhibitors. We observed no inhibitory or cytotoxic effects on organisms other than seed plants, further suggesting (+)-streptol as a bona fide allelochemical. We propose that the suppression of growth of plant competitors is a major driver of the formation and maintenance of the Psychotria-Burkholderia association. In addition to potential agricultural applications as a herbicidal agent, (+)-streptol might also prove useful to dissect plant cell and organ growth processes.
经过一个世纪的研究,热带茜草科植物叶结节中容纳的专性β变形杆菌内共生体的功能仍然是个谜。我们报告说,由成熟的 Ca. Burkholderia kirkii 结节系统供应给 Psychotria 宿主的 α-D-葡萄糖类似物 (+)-streptol,表现出强大且选择性的根生长抑制活性。我们提供了令人信服的证据表明,(+) - streptol 通过破坏细胞壁组织,以不同于经典纤维素生物合成抑制剂的作用机制,特异性地影响正在向各向异性伸长过渡的分生组织根细胞。我们观察到除种子植物外,其他生物均没有抑制或细胞毒性作用,进一步表明 (+)-streptol 是一种真正的化感物质。我们提出,抑制植物竞争者的生长是 Psychotria-Burkholderia 共生体形成和维持的主要驱动力。除了作为除草剂在农业上的潜在应用外,(+) - streptol 可能也有助于剖析植物细胞和器官生长过程。