接种玉米穗镰孢菌研究赤霉素穗腐病。

Sarah Lipps, Peyton Sorensen, Mara Krone, Santiago Mideros, Tiffany Jamann
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引用次数: 0

摘要

玉米是全球重要的粮食和燃料作物。由真菌病原体引起的穗腐病是一些最有害的玉米病害,原因是籽粒产量下降和有害真菌毒素的产生。真菌毒素是由某些真菌种类产生的天然毒素,可在食用受真菌毒素污染的谷物的人类和动物中引起急性和慢性健康问题。病原体可以通过蚕丝或害虫在耳朵上造成的伤口感染正在发育的耳朵。植物自然会产生对病原体的遗传抗性。参与抗病原菌的玉米基因可能是不同的,这取决于耳朵是通过蚕丝还是伤口感染的。为了区分这两种形式的抗性,自然感染可以通过通过丝绸通道注射接种剂,或通过针头制造伤口,并将接种剂直接引入发育中的耳朵来复制。我们的方案描述了一种用于接种发育中的玉米穗的技术,镰刀菌是一种引起穗腐病的真菌。我们描述了丝绸通道和侧针接种技术。我们的方案使用双肩包接种器用于两种感染方法,允许高通量接种,这是大型现场实验所必需的。收获后,用目测方法对稻穗进行病害百分率评定。该方案获得的定量数据可用于阐明对真菌病原体的遗传抗性研究,以帮助育种选择,并了解玉米穗腐病的植物-病原体相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inoculation of Maize Ears with Fusarium graminearum to Study Gibberella Ear Rot.

Maize is an important food and fuel crop globally. Ear rots, caused by fungal pathogens, are some of the most detrimental maize diseases, due to reduced grain yield and the production of harmful mycotoxins. Mycotoxins are naturally occurring toxins produced by certain fungal species that can cause acute and chronic health issues in humans and animals that consume mycotoxin-contaminated grain. Pathogens can infect the developing ear through silks, or through wounds in the ears produced by pests. Plants naturally develop genetic resistance to pathogens. The maize genes involved in resistance to the pathogen may be different, depending on whether the ear was infected via silks or wounds. To differentiate between these two forms of resistance, natural infections can be reproduced by injecting inoculum through the silk channel, or by producing wounds using a needle, and introducing inoculum directly onto developing ears. Our protocol describes a technique used to inoculate developing maize ears with Fusarium graminearum, one of the fungal species that causes ear rot. We describe both silk channel and side needle inoculation techniques. Our protocol uses a backpack inoculator for both methods of infection, allowing for high-throughput inoculations, which are necessary for large field experiments. After harvest, the ears are visually rated on a percentage of disease scale. The protocol results in quantitative data that can be used for research on elucidating genetic resistance to fungal pathogens to assist breeding selections, and to understand plant-pathogen interactions of ear rots in maize.

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来源期刊
Cold Spring Harbor protocols
Cold Spring Harbor protocols Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
CiteScore
3.00
自引率
0.00%
发文量
163
期刊介绍: Cold Spring Harbor Laboratory is renowned for its teaching of biomedical research techniques. For decades, participants in its celebrated, hands-on courses and users of its laboratory manuals have gained access to the most authoritative and reliable methods in molecular and cellular biology. Now that access has moved online. Cold Spring Harbor Protocols is an interdisciplinary journal providing a definitive source of research methods in cell, developmental and molecular biology, genetics, bioinformatics, protein science, computational biology, immunology, neuroscience and imaging. Each monthly issue details multiple essential methods—a mix of cutting-edge and well-established techniques.
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