首页> 外文OA文献 >Biological control of septoria leaf blotch and growth promotion in wheat by Paenibacillus sp strain B2 and Curtobacterium plantarum strain EDS
【2h】

Biological control of septoria leaf blotch and growth promotion in wheat by Paenibacillus sp strain B2 and Curtobacterium plantarum strain EDS

机译:B. Paenibacillus sp。B2菌株和植物弯曲杆菌EDS菌株对小麦的脓毒症叶斑病和生长促进的生物学控制

摘要

Many of the non-pathogenic endophytic bacteria that reside in plant roots promote plant growth as well as protection against pathogens attack. However, little is known about their mode of action in wheat. We have previously demonstrated the potential of Paenibacillus sp. strain B2 (PB2) to stimulate plant defense mechanisms via its paenimyxin lipo-polypeptide elicitor. Recently, we isolated the Curtobacterium plantarum strain EDS (EDS) from seeds of almost all wheat cultivars. In the present work, the ability of PB2 and EDS to promote wheat growth and protection against Septoria leaf blotch (SLB) was investigated. Results showed that PB2 is a general root external colonizer and cultivar-dependent endophyte. In the endophytic state and only in co-inoculation, it significantly increased the internal root colonization by EDS, resulting in an increase of root and aerial part fresh weights. qPCR analysis showed that, in the endophytic and nonendophytic states, PB2 conferred >= 59% protection against SLB by inducing systemic resistance which is characterized by the over expression of the pr1, lox, Aos, peroxidase, oxo and gst genes. Paenimyxin conferred 76% local protection characterized by the overexpression of the glu, lox, aos, pal, chs, oxo, and gst genes, and 82% systemic protection by chs. It was concluded that PB2 is potentially very interesting in the biocontrol of SLB and, in a mixture with EDS, in the wheat growth promoting. Genes involved in the flavonoid, salicylic acid, jasmonic acid, reactive oxygen species and basal defense pathways seem to play an important role in the resistance against SLB.
机译:驻留在植物根部的许多非致病性内生细菌可促进植物生长以及抵抗病原体的侵袭。但是,对其在小麦中的作用方式知之甚少。我们之前已经证明了Paenibacillus sp。的潜力。菌株B2(PB2)通过其paenimyxin脂多肽引发剂刺激植物防御机制。最近,我们从几乎所有小麦品种的种子中分离了植物弯曲杆菌菌株EDS(EDS)。在目前的工作中,研究了PB2和EDS促进小麦生长和保护其免受Septoria叶斑(SLB)侵害的能力。结果表明,PB2是一般的根外部定居者和栽培品种依赖性的内生菌。在内生状态下并且仅在共同接种下,它通过EDS显着增加了内部根部定植,从而导致根部和空中部分鲜重增加。 qPCR分析表明,在内生和非内生状态下,PB2通过诱导系统抗性赋予≥59%的SLB保护,其特征是pr1,lox,Aos,过氧化物酶,oxo和gst基因的过度表达。 Paenimyxin赋予了76%的局部保护,其特征在于glu,lox,aos,pal,chs,oxo和gst基因的过表达,而82%的chs具有系统性保护。结论是,PB2在SLB的生物防治中以及与EDS的混合物中在促进小麦生长方面可能非常有趣。类黄酮,水杨酸,茉莉酸,活性氧和基础防御途径相关的基因似乎在抗SLB中起着重要作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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