生物技术进展 ›› 2021, Vol. 11 ›› Issue (5): 590-598.DOI: 10.19586/j.2095-2341.2021.0123

• 赤霉病抗源及种质创新 • 上一篇    下一篇

我国“十三五”育成小麦新品种(系)抗赤霉病进展分析与展望

张勇1,2(), 胡文静1,2, 张春梅1, 蒋正宁1, 吕国峰1,2, 高德荣1,2()   

  1. 1.江苏里下河地区农业科学研究所,农业部长江中下游小麦生物学与遗传育种重点实验室,江苏 扬州 225007
    2.扬州大学江苏省粮食作物现代产业技术协同创新中心,江苏省植物功能基因组学重点实验室,江苏 扬州 225009
  • 收稿日期:2021-06-18 接受日期:2021-07-15 出版日期:2021-09-25 发布日期:2021-10-08
  • 通讯作者: 高德荣
  • 作者简介:张勇 E-mail:zy@wheat.org.cn
  • 基金资助:
    国家现代农业产业技术体系(CARS-03);国家自然科学基金项目(31901544)

Analysis and Prospect of Fusarium Head Blight Resistance for New Wheat Varieties (Lines) Bred During “the 13th Five‑year Plan”

Yong ZHANG1,2(), Wenjing HU1,2, Chunmei ZHANG1, Zhengning JIANG1, Guofeng LV1,2, Derong GAO1,2()   

  1. 1.Key Laboratory of Wheat Biology and Genetic Improvement for Low & Middle Yangtze Valley,Ministry of Agriculture and Rural Affairs,Lixiahe Institute of Agriculture Sciences,Jiangsu Yangzhou 225007,China
    2.Jiangsu Key Laboratory of Crop Genomics and Molecular Breeding,Jiangsu Co?Innovation Center for Modern Production Technology of Grain Crops,Yangzhou University,Jiangsu Yangzhou 225009,China
  • Received:2021-06-18 Accepted:2021-07-15 Online:2021-09-25 Published:2021-10-08
  • Contact: Derong GAO

摘要:

小麦赤霉病严重威胁我国粮食和食品安全,培育抗赤霉病小麦品种是解决该病害最经济有效的途径。20世纪90年代后,以扬麦158为代表的扬麦、宁麦系列中抗赤霉病品种的育成和大面积推广有效抵御了长江中下游麦区的赤霉病危害,使我国抗赤霉病育种处于国际领先水平。尽管全球明确了7个抗赤霉病基因,为开展抗赤霉病育种提供了重要支撑,但由于赤霉病抗性机制复杂,实现高抗与高产的协调仍极其困难,抗赤霉病仍是当前及未来我国小麦育种的主要目标。对“十三五”期间我国小麦新品系和审定品种的抗性情况以及我国抗赤霉病育种方面取得的进展进行了综述,并提出了重视挖掘和利用扬麦等推广品种中优异抗性基因、将Fhb1导入扬麦等主栽品种的育种技术路线和重视表型精准鉴定等建议,以期为实现我国抗赤霉病育种突破提供借鉴。

关键词: 小麦, 赤霉病, Fhb1, 育种

Abstract:

Fusariumhead blight (FHB) is one of the most destructive wheat disease that threats to grain yield and food security in China. FHB resistant wheat varieties breeding is the most economical and effective way to manage the problem. Since 1990, the wheat cultivars of Yangmai and Ningmai series with moderate resistant to FHB played an important role in controlling the destruction of FHB in the Yangtze River area, resulting in our FHB resistance breeding reach to the international leading level. Although only seven resistance genes have been identified in wheat so far, which provide important support for the development of FHB resistant wheat variety, it is still very difficult to obtain wheat varieties with high level of resistance to FHB in combination with high yield due to the complex genetic mechanism. FHB resistant wheat variety breeding is still the main breeding objective in China at present and in the future. We summarized new FHB resistant lines/cultivars in China during “the 13th Five?year Plan” period, and suggested to identify the new FHB resistance genes/loci from Yangmai series wheat and introduce Fhb1 into Yangmai cultivars. In addition, it will be very important to pay attention to develop the high efficiency and accurate new technology for FHB phenotype. This review was expected to provide some comments for the breakthrough in FHB resistant wheat breeding in China.

Key words: wheat, Fusarium head blight, Fhb1, breeding

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