Müller Christian, Jain Akanksha, Schirawski Jan
Friedrich-Schiller-Universität Jena, Matthias-Schleiden-Institut / Genetik, 07743 Jena, Germany.
KWS SAAT SE & Co. KGaA, 37574 Einbeck, Germany.
Plant Dis. 2025 Feb;109(2):454-460. doi: 10.1094/PDIS-07-24-1579-RE. Epub 2025 Feb 11.
Maize yield is threatened by increasing incidences of head smut disease caused by . To help breeders identify -resistant maize lines, the availability of efficient screening systems would be an advantage. Here we assessed maize lines with distinct levels of field resistance against head smut disease in greenhouse experiments using two different inoculation techniques. Addition of mixtures of mating-compatible sporidia to the soil at the seedling stage of the plant did not lead to plant disease, and we could detect only marginal amounts of fungal DNA in apical meristems at 18 days after inoculation. Inoculation of the maize lines by leaf-whorl inoculation led to both high disease incidence and prominent levels of fungal DNA in apical meristems in all tested maize lines regardless of their field resistance levels. Thus, entering the plant via the leaf whorl can escape existing resistance mechanisms of currently known field-resistant maize lines. Since field-resistant lines are also resistant to inoculation via teliospore-contaminated soil, we propose teliospore addition to seeds at the time of sowing (rather than leaf-whorl inoculation of seedlings) combined with quantitative detection of fungal DNA in apical meristems, as an efficient screening procedure to discover field-resistant lines. However, screening maize plants for resistance against the leaf-whorl inoculation method might be promising for the discovery of novel resistance mechanisms needed to develop durably resistant maize lines.
玉米产量受到由[病原菌名称缺失]引起的丝黑穗病发病率上升的威胁。为了帮助育种者鉴定抗[病原菌名称缺失]的玉米品系,高效筛选系统的可用性将是一项优势。在这里,我们在温室试验中使用两种不同的接种技术,评估了对丝黑穗病具有不同田间抗性水平的玉米品系。在植株幼苗期向土壤中添加交配兼容的担孢子混合物并未导致植株发病,并且在接种后18天,我们仅在顶端分生组织中检测到少量真菌DNA。通过叶鞘接种法对玉米品系进行接种,无论其田间抗性水平如何,所有测试的玉米品系都出现了高发病率以及顶端分生组织中显著水平的真菌DNA。因此,[病原菌名称缺失]通过叶鞘进入植株能够避开当前已知田间抗性玉米品系现有的抗性机制。由于田间抗性品系也对接种受冬孢子污染的土壤具有抗性,我们建议在播种时将冬孢子添加到种子上(而不是对幼苗进行叶鞘接种),并结合对顶端分生组织中真菌DNA的定量检测,作为发现田间抗性品系的一种有效筛选程序。然而,针对叶鞘接种法筛选玉米植株的抗性,对于发现培育持久抗性玉米品系所需的新抗性机制可能是有前景的。