Department of Ornamental Horticulture, ARO, The Volcani Center, Derech Hamacabim, Bet-Dagan, Israel.
J Appl Microbiol. 2010 Apr;108(4):1136-44. doi: 10.1111/j.1365-2672.2009.04517.x. Epub 2009 Aug 6.
Ornithogalum dubium is a natural host of the soft rot pathogen Pectobacterium carotovorum ssp. carotovorum (Pcc). The present study was aimed to develop a quantification system for Pcc expressing a gfp reporter gene, using fluorescent activated cell sorter (FACS) in planta.
Several calibration steps were required to distinctly gate the GFP-labelled bacteria at FL1 mode and count the bacteria. To validate the bacterial counts obtained by FACS analysis, an internal standard of polystyrene green fluorescent microsphere beads was employed, resulting in high correlation with serial dilutions and plate counting. This allowed quantification of the bacteria, with no further need to culture, dilute or plate the cells. Micropropagation tools were developed to produce uniform plantlets of O. dubium, which were either inoculated with increasing concentrations of Pcc or elicited for resistance towards Pcc using methyl jasmonate. The rapid counting procedure allowed recovering, gating and counting the bacterial population in planta, separately from the plant cells background and from the microsphere beads.
The FACS based quantification approach of Pcc was found accurate, reproducible and time saving, thus useful for counting bacteria in planta.
The combination of time- and cost-saving approach for Pcc quantification with efficient screening tools during early stages of micropropagation may facilitate the preliminary process of selection for resistant cultivars.
孤挺花是软腐病菌果胶杆菌果胶亚种(Pcc)的天然宿主。本研究旨在建立一种利用荧光激活细胞分选(FACS)在植物体内表达 GFP 报告基因的 Pcc 定量系统。
需要进行几个校准步骤,以便在 FL1 模式下明显地对 GFP 标记的细菌进行门控并计数细菌。为了验证 FACS 分析获得的细菌计数,使用聚苯乙烯绿色荧光微球珠作为内部标准,与系列稀释和平板计数高度相关。这允许对细菌进行定量,而无需进一步培养、稀释或平板化细胞。微繁殖工具被开发出来以产生均匀的孤挺花植物苗,这些植物苗要么接种递增浓度的 Pcc,要么用茉莉酸甲酯诱导对 Pcc 的抗性。快速计数程序允许在植物体内回收、门控和计数细菌群体,与植物细胞背景和微球珠分开。
发现基于 FACS 的 Pcc 定量方法准确、可重复且省时,因此可用于在植物体内计数细菌。
将 Pcc 定量的省时省钱方法与微繁殖早期的高效筛选工具相结合,可能有助于选择抗性品种的初步过程。