首页> 外文期刊>Plant Biotechnology Journal >The wheat durable, multipathogen resistance gene Lr34 confers partial blast resistance in rice
【24h】

The wheat durable, multipathogen resistance gene Lr34 confers partial blast resistance in rice

机译:小麦耐用,多往上抗原性基因LR34赋予水稻中的偏抗抗性

获取原文
获取原文并翻译 | 示例
       

摘要

The wheat gene Lr34 confers durable and partial field resistance against the obligate biotrophic, pathogenic rust fungi and powdery mildew in adult wheat plants. The resistant Lr34 allele evolved after wheat domestication through two gain-of-function mutations in an ATP-binding cassette transporter gene. An Lr34-like fungal disease resistance with a similar broad-spectrum specificity and durability has not been described in other cereals. Here, we transformed the resistant Lr34 allele into the japonica rice cultivar Nipponbare. Transgenic rice plants expressing Lr34 showed increased resistance against multiple isolates of the hemibiotrophic pathogen Magnaportheoryzae, the causal agent of rice blast disease. Host cell invasion during the biotrophic growth phase of rice blast was delayed in Lr34-expressing rice plants, resulting in smaller necrotic lesions on leaves. Lines with Lr34 also developed a typical, senescence-based leaf tip necrosis (LTN) phenotype. Development of LTN during early seedling growth had a negative impact on formation of axillary shoots and spikelets in some transgenic lines. One transgenic line developed LTN only at adult plant stage which was correlated with lower Lr34 expression levels at seedling stage. This line showed normal tiller formation and more importantly, disease resistance in this particular line was not compromised. Interestingly, Lr34 in rice is effective against a hemibiotrophic pathogen with a lifestyle and infection strategy that is different from obligate biotrophic rusts and mildew fungi. Lr34 might therefore be used as a source in rice breeding to improve broad-spectrum disease resistance against the most devastating fungal disease of rice.
机译:小麦基因LR34对成年小麦植物中的耐用性和局部抗性,致病性防锈真菌和白粉病赋予耐用和部分野外抗性。通过在ATP结合盒式转运盒基因中通过两个功能突变在小麦驯化后抗性LR34等位基因。尚未在其他谷物中描述具有类似的广谱特异性和耐久性的LR34样真菌抗病性。在这里,我们将抗性LR34等位基因转化为粳稻品种Nipponbare。表达LR34的转基因水稻植物表现出对稻瘟病植物血管生殖症的多重分离株的抗性增加,稻瘟病患者的因果剂。在稻瘟病的生物营养生长阶段期间宿主细胞侵袭在表达LR34的稻米植物中延迟,导致叶子上的较小的坏死病变。具有LR34的线还开发了一种典型的衰老叶片尖端坏死(LTN)表型。早期幼苗生长期间LTN的发展对某些转基因系中的腋窝芽和小穗的形成产生了负面影响。一种转基因系仅在成人植物阶段开发LTN,其与幼苗阶段的LR34表达水平的较低的LR34表达水平相关。这条线表现出正常的分蘖形成,更重要的是,这种特定系列的抗病性并未受到损害。有趣的是,LR34在水稻中是有效的,患有从属和感染策略的血脂酸病原体,这些病原体不同于迫使生物养殖生锈和霉菌真菌。因此,LR34可能被用作水稻育种的源泉,以改善对大米最毁灭性的真菌疾病的广谱疾病抗性。

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