Department of Food Science and Technology, University of California at Davis, Davis, CA 95616.
Department of Plant Pathology, University of California at Davis, Davis, CA 95616.
Phytopathology. 2019 Dec;109(12):2022-2032. doi: 10.1094/PHYTO-03-19-0103-R. Epub 2019 Nov 8.
Huanglongbing (HLB) is a severe, incurable citrus disease caused by the bacterium ' Liberibacter asiaticus' (CLas). Although citrus leaves serve as the site of initial infection, CLas is known to migrate to and colonize the root system; however, little is known about the impact of CLas infection on root metabolism and resident microbial communities. Scions of 'Lisbon' lemon and 'Washington Navel' orange grafted onto 'Carrizo' rootstock were grafted with either CLas-infected citrus budwood or uninfected budwood. Roots were obtained from trees 46 weeks after grafting and analyzed via H nuclear magnetic resonance spectroscopy to identify water-soluble root metabolites and high-throughput sequencing of 16S rRNA and ITS gene amplicons to determine the relative abundance of bacterial and fungal taxa in the root rhizosphere and endosphere. In both citrus varieties, 27 metabolites were identified, of which several were significantly different between CLas(+) and control plants. CLas infection also appeared to alter the microbial community structure near and inside the roots of citrus plants. Nonmetric multidimensional scaling (NMDS) and a principal coordinate analysis (PCoA) revealed distinct metabolite and microbial profiles, demonstrating that CLas impacts the root metabolome and microbiome in a manner that is variety-specific.
黄龙病(HLB)是一种由细菌 'Liberibacter asiaticus'(CLas)引起的严重、无法治愈的柑橘病害。尽管柑橘叶片是最初感染的部位,但 CLas 已知会迁移并定植于根系;然而,对于 CLas 感染对根系代谢和驻留微生物群落的影响知之甚少。将 'Lisbon' 柠檬和 'Washington Navel' 甜橙的接穗嫁接到 'Carrizo' 砧木上,分别接穗于感染 CLas 的柑橘接穗或未感染的接穗。在嫁接后 46 周时,从树木中获得根,并通过 H 核磁共振波谱法进行分析,以鉴定水溶性根代谢物,并对 16S rRNA 和 ITS 基因扩增子进行高通量测序,以确定根际和根内细菌和真菌类群的相对丰度。在这两种柑橘品种中,鉴定出 27 种代谢物,其中几种在 CLas(+) 和对照植物之间存在显著差异。CLas 感染似乎也改变了柑橘植物根系附近和内部的微生物群落结构。非度量多维尺度分析(NMDS)和主坐标分析(PCoA)显示出明显不同的代谢物和微生物特征,表明 CLas 以特定于品种的方式影响根代谢组和微生物组。