...
首页> 外文期刊>Applied Microbiology >Spray Application of Nonpathogenic Fusaria onto Rice Flowers Controls Bakanae Disease (Caused by Fusarium fujikuroi) in the Next Plant Generation
【24h】

Spray Application of Nonpathogenic Fusaria onto Rice Flowers Controls Bakanae Disease (Caused by Fusarium fujikuroi) in the Next Plant Generation

机译:将非植物素瘤的喷雾应用在米花中控制下一个植物生成中的巴基纳氏病(Fusarium Fujikuroi)

获取原文
           

摘要

Bakanae disease, caused by Fusarium fujikuroi , is an economically important seed-borne disease of rice. F. fujikuroi is horizontally transmitted to rice flowers and vertically transmitted to the next generation via seeds. The fungus induces typical symptoms such as abnormal tissue elongation and etiolation. Sanitation of seed farms and seed disinfection are the only effective means to control bakanae disease at present; however, the efficacy of these methods is often insufficient. Therefore, alternative and innovative control methods are necessary. We developed a novel method for applying nonpathogenic fusaria as biocontrol agents by spraying spore suspensions onto rice flowers to reduce the incidence of seed-borne bakanae. We visualized the interaction between Fusarium commune W5, a nonpathogenic fusarium, and Fusarium fujikuroi using transformants expressing two different fluorescent proteins on/in rice plants. W5 inhibited hyphal extension of F. fujikuroi on/in rice flowers and seedlings, possibly by competing with the pathogen, and survived on/in rice seeds for at least 6 months.IMPORTANCE We demonstrated that a spray treatment of rice flowers with the spores of nonpathogenic fusaria mimicked the disease cycle of the seed-borne bakanae pathogen Fusarium fujikuroi and effectively suppressed the disease. Spray treatment of nonpathogenic fusaria reduced the degree of pathogen invasion of rice flowers and vertical transmission of the pathogen to the next plant generation via seeds, thereby controlling the bakanae disease. The most promising isolate, F. commune W5, colonized seeds and seedlings via treated flowers and successfully inhibited pathogen invasion, suggesting that competition with the pathogen was the mode of action. Seed-borne diseases are often controlled by seed treatment with chemical fungicides. Establishing an alternative method is a pressing issue from the perspectives of limiting fungicide resistance and increasing food security. This work provides a potential solution to these issues using a novel application technique to treat rice flowers with biocontrol agents.
机译:由Fusarium fujikuroi引起的Bakanae病是一种经济上重要的稻米菌。 F. Fujikuroi水平传递给米花,通过种子垂直传递到下一代。真菌会诱导典型的症状,例如组织伸长率异常。种子农场和种子消毒的卫生是目前控制Bakanae病的唯一有效手段;然而,这些方法的功效通常不足。因此,需要替代和创新的控制方法。通过将孢子悬浮液喷涂到米花上,开发了一种新的一种施用非遗传性镰刀菌作为生物控制剂的方法,以减少种子传播的Bakanae的发病率。我们使用在水稻植物中表达两种不同的荧光蛋白的转化体,在稻植物中的转化体可视化Fusarium Commune W5 W5抑制了富士汁植物的丁氏延伸,水稻花和幼苗,可能通过与病原体竞争,并在水稻种子上存活至少6个月。分析我们证明了一种用孢子喷洒米花非遗传性镰刀菌模仿种子传播的Bakanae病原体Fusarium fujikuroi的疾病循环,有效地抑制了这种疾病。喷雾治疗非遗传性镰刀菌,降低了米花的病原体侵袭程度,并通过种子垂直传递到下一个植物生成,从而控制了巴卡纳疾病。最有前途的孤立,F.通过处理的花朵,殖民化种子和幼苗,并成功抑制病原体侵袭,表明与病原体的竞争是作用模式。种子传播的疾病通常通过用化学杀菌剂进行种子处理来控制。建立替代方法是一种从限制杀菌剂抵抗和增加粮食安全的角度的压迫问题。这项工作利用新的应用技术为这些问题提供了潜在的解决方案,以用生物控制剂对待米花。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号