Sucher Justine, Boni Rainer, Yang Ping, Rogowsky Peter, Büchner Heike, Kastner Christine, Kumlehn Jochen, Krattinger Simon G, Keller Beat
Institute of Plant and Microbial Biology, University of Zurich, Zurich, Switzerland.
ENS, UMR 5667- RDP, Lyon, France.
Plant Biotechnol J. 2017 Apr;15(4):489-496. doi: 10.1111/pbi.12647. Epub 2016 Nov 15.
Maize (corn) is one of the most widely grown cereal crops globally. Fungal diseases of maize cause significant economic damage by reducing maize yields and by increasing input costs for disease management. The most sustainable control of maize diseases is through the release and planting of maize cultivars with durable disease resistance. The wheat gene Lr34 provides durable and partial field resistance against multiple fungal diseases of wheat, including three wheat rust pathogens and wheat powdery mildew. Because of its unique qualities, Lr34 became a cornerstone in many wheat disease resistance programmes. The Lr34 resistance is encoded by a rare variant of an ATP-binding cassette (ABC) transporter that evolved after wheat domestication. An Lr34-like disease resistance phenotype has not been reported in other cereal species, including maize. Here, we transformed the Lr34 resistance gene into the maize hybrid Hi-II. Lr34-expressing maize plants showed increased resistance against the biotrophic fungal disease common rust and the hemi-biotrophic disease northern corn leaf blight. Furthermore, the Lr34-expressing maize plants developed a late leaf tip necrosis phenotype, without negative impact on plant growth. With this and previous reports, it could be shown that Lr34 is effective against various biotrophic and hemi-biotrophic diseases that collectively parasitize all major cereal crop species.
玉米是全球种植最广泛的谷类作物之一。玉米真菌病害通过降低玉米产量和增加病害管理的投入成本,造成重大经济损失。对玉米病害最可持续的控制方法是培育和种植具有持久抗病性的玉米品种。小麦基因Lr34对小麦的多种真菌病害具有持久的部分田间抗性,包括三种小麦锈病病原体和小麦白粉病。由于其独特的特性,Lr34成为许多小麦抗病计划的基石。Lr34抗性由一个ATP结合盒(ABC)转运蛋白的罕见变体编码,该变体在小麦驯化后进化而来。在包括玉米在内的其他谷类作物中,尚未报道过类似Lr34的抗病表型。在此,我们将Lr34抗性基因导入玉米杂交种Hi-II中。表达Lr34的玉米植株对活体营养型真菌病害普通锈病和半活体营养型病害玉米大斑病的抗性增强。此外,表达Lr34的玉米植株出现了叶尖后期坏死表型,但对植株生长没有负面影响。结合本研究及之前的报道,可以证明Lr34对多种共同寄生于所有主要谷类作物品种的活体营养型和半活体营养型病害均有效。