The New Zealand Institute for Plant and Food Research Limited, Auckland, New Zealand.
Bio-Protection Research Centre, Lincoln, New Zealand.
Mol Plant Microbe Interact. 2021 Aug;34(8):880-890. doi: 10.1094/MPMI-02-21-0043-R. Epub 2021 Sep 9.
The infection of pv. in kiwifruit is currently assessed by numerous methodologies, each with their own limitations. Most studies are based on either a laborious method of growth quantification of the pathogen or qualitative assessments by visual scoring following stem or cutting inoculation. Additionally, when assessing for resistance against specific pathogen effectors, confounding interactions between multiple genes in the pathogen can make mapping resistance phenotypes nearly impossible. Here, we present robust alternative methods to quantify pathogen load based on rapid bacterial DNA quantification by PCR, the use of , and a transient reporter eclipse assay for assessing resistance conferred by isolated bacterial avirulence genes. These assays compare well with bacterial plate counts to assess bacterial colonization as a result of plant resistance activation. The DNA-based quantification, when coupled with the and reporter eclipse assays to independently identify bacterial avirulence genes, is rapid, highly reproducible, and scalable for high-throughput screens of multiple cultivars or genotypes. Application of these methodologies will allow rapid and high-throughput identification of resistant cultivars and the bacterial avirulence genes they recognize, facilitating resistance gene discovery for plant breeding programs.[Formula: see text] Copyright © 2021 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license.
目前,对猕猴桃溃疡病菌(pv. )的感染评估采用了多种方法,但每种方法都有其局限性。大多数研究基于病原体生长定量的繁琐方法,或在茎或切割接种后通过视觉评分进行定性评估。此外,在评估针对特定病原体效应物的抗性时,病原体中多个基因之间的混杂相互作用使得抗性表型的定位几乎不可能。在这里,我们提出了基于 PCR 快速细菌 DNA 定量、使用 和瞬时报告基因瞬时失活测定来评估由分离的细菌无毒基因赋予的抗性的替代方法。这些测定方法与平板计数法相比,可用于评估植物抗性激活导致的细菌定殖。当与 DNA 定量方法结合使用,以及 和报告基因瞬时失活测定法来独立鉴定细菌无毒基因时,该方法快速、高度重现,并且适用于对多个品种或基因型进行高通量筛选。应用这些方法将能够快速、高通量地鉴定出具有抗性的品种和它们所识别的细菌无毒基因,从而为植物育种计划中的抗性基因发现提供便利。[公式:见正文] 版权所有 © 2021 作者。这是一个开放获取的文章,根据 CC BY-NC-ND 4.0 国际许可发布。