首页> 外文期刊>Journal of Agricultural and Food Chemistry >Fusarium graminearum TRI14 Is Required for High Virulence and DON Production on Wheat but Not for DON Synthesis in Vitro
【24h】

Fusarium graminearum TRI14 Is Required for High Virulence and DON Production on Wheat but Not for DON Synthesis in Vitro

机译:禾本科镰孢镰刀菌TRI14对小麦具有高毒力和DON产生,但对于DON的体外合成则不需要

获取原文
获取原文并翻译 | 示例
       

摘要

Fusarium head blight(FHB)of wheat(Triticum aestivum L),caused by the fungus Fusarium graminearum,is a major concern worldwide.FHB grain is reduced in yield,may fail to germinate,and is often contaminated with deoxynivalenol,a trichothecene mycotoxin linked to a variety of animal diseases and feed refusals.Annual losses in the tens of millions of dollars due to FHB underscore the need to develop improved methods of disease control and prevention.Previous research has identified deoxynivalenol biosynthesis as a virulence factor on wheat.Recently,we found that the TRI14 gene of F.sporotrichioides,closely related to F.graminearum,was not required for synthesis of a related trichothecene,T-2 toxin.TRI14 does not share similarity with any previously described genes in the databases.In this study,we examined the role that F.graminearum TRI14 may play in both deoxynivalenol synthesis and in virulence on wheat.TRI14 deletion mutants synthesize deoxynivalenol on cracked maize kernel medium and exhibit wild-type colony morphology and growth rate on complex and minimal agar media.However,FHB assays on greenhouse-grown wheat indicate that FgATri14 mutants cause 50-80% less disease than wild type and do not produce a detectable quantity of deoxynivalenol on plants.We discuss a number of possible roles that TRI14 may play in the disease process.
机译:小麦(Fusarium graminearum)引起的小麦枯萎病(Fusarium head a枯萎病)是全世界关注的主要问题。FHB谷物产量下降,可能无法发芽,并且经常被脱氧新雪茄烯醇(一种天花粉真菌毒素)污染FHB造成的每年数千万美元的损失突显出需要开发改进的疾病控制和预防方法的需要。以前的研究已经确定脱氧雪茄烯醇的生物合成是小麦的致病因子。我们发现与F.graminearum紧密相关的F.sporotrichioides的TRI14基因对于合成相关的天花粉蛋白T-2毒素不是必需的.TRI14与数据库中以前描述的任何基因都不具有相似性。 ,我们研究了F.graminearum TRI14可能在脱氧雪茄烯醇的合成和对小麦的毒力中的作用。TRI14缺失突变体在破裂的玉米籽粒培养基和e上合成了脱氧雪茄烯醇在复杂和最低限度的琼脂培养基上可以抑制野生型菌落的形态和生长速率我们讨论了TRI14在疾病过程中可能扮演的许多可能角色。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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