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首页> 外文期刊>World Mycotoxin Journal >The role of adapted and non-adapted resistance sources in breeding resistance of winter wheat to Fusarium head blight and deoxynivalenol contamination
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The role of adapted and non-adapted resistance sources in breeding resistance of winter wheat to Fusarium head blight and deoxynivalenol contamination

机译:适应性和非适应性源在冬小麦育种抗镰刀枯肠枯萎病和脱辛维酚污染的作用

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摘要

Since resistance is the most important agent in regulating deoxynivalenol (DON), breeding for higher resistance is the key to improve food safety. Fusarium damaged kernels (FDK) show a closer correlation with DON than visual symptoms. This implies a difference in genetic regulation. For this reason, the mapping should be extended not only for the visual symptoms, but also for FDK and DON. Quantitative trait loci influencing only Fusarium head blight (FHB) symptoms, may not be relevant for FDK and DON. Type I and II were pooled to overall resistance at spray inoculation. From 2010 to 2016 three selection platforms were compared by checking running variety breeding programs. The use of exotic sources in breeding significantly increased the number of more resistant genotypes in each selection phase from F-3-F-8 generations compared to the control program where crosses were not planned for FHB resistance and screening in early generations was also not performed. However, also in this breeding platform - at a lower rate - moderately or highly resistant genotypes could be selected. Of them, eight cultivars were/are in commercial production. The Fusarium breeding program using only adapted and more resistant parents generally gave closer results to exotic breeds, and several highly resistant genotypes were produced as a result. For winter wheat the phenotypic screening at high disease pressure is the key to select highly resistant materials. At low infection pressure the high and medium resistant genotypes come in the same group. The use of more isolates increases the chance to have strong selection pressure each year. FHB resistance was combined with leaf rust, yellow rust, powdery mildew, leaf spot resistance and high protein content (15-18%). The cultivar registration and post registration screening is the key in improving food safety in commercial production.
机译:由于抗性是调节脱氧苯酚(Don)的最重要的药剂,因此对更高抗性的育种是改善食品安全的关键。 Fusarium损坏的核(FDK)显示与唐的相关性比视觉症状更仔细。这意味着遗传调节的差异。因此,映射不仅应延长视觉症状,也应为FDK和DON扩展。影响镰刀尖头枯萎(FHB)症状的定量特质基因座可能与FDK和DON相关。在喷雾接种时汇集I和II型和II型。从2010年到2016年,通过检查运行品种育种计划进行三个选择平台。与F-3-F-8世代的每个选择阶段相比,使用异种源在育种中的使用显着增加了从F-3-F-8世代的每个选择阶段的抗性基因型的数量也没有进行跨越FHB抗性和早期筛选的跨越的控制程序。 。然而,在该繁殖平台中也可以选择较低的速率 - 适度或高度抗性基因型。其中,八种品种在商业生产中。使用仅适应和更具抗性父母的镰刀菌育种程序通常会更接近异国情调的品种,结果产生了几种高度抗性基因型。对于冬季小麦,高疾病压力下的表型筛选是选择高抗性材料的关键。在低感染压力下,高中和中等抗性基因型在同一组中。使用更多隔离物增加了每年有强烈的选择压力的机会。 FHB抗性与叶锈,黄色锈,粉状霉菌,叶斑抗性和高蛋白质含量(15-18%)相结合。品种登记和后登记筛查是提高商业生产中食品安全的关键。

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