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Plant-endophyte interplay protects tomato against a virulent Verticillium dahliae.

机译:植物与内生菌的相互作用可保护番茄免受强毒黄萎病菌的侵害。

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摘要

When tomato Craigella is infected with Verticillium dahliae Dvd-E6 (Dvd-E6), a tolerant state is induced with substantial pathogen load, but few symptoms. Unexpectedly, these plants are more robust and taller with Dvd-E6 behaving as an endophyte. Some endophytes can protect plants from virulent pathogens. This research was undertaken to improve understanding of the cellular and molecular nature of Verticillium tolerance in tomato, especially whether infection by Dvd-E6 can protect Craigella from virulent V. dahliae, race 1 (Vd1). To permit mixed infection experiments a restriction fragment length polymorphism (RFLP)-based assay was developed and used for differentiating Dvd-E6 from Vd1, when present in mixed infections. The results suggested that protection involves molecular interplay between Dvd-E6 and Vd1 in susceptible Craigella (CS) tomatoes, resulting in restricted Vd1 colonization. Further studies showed a dramatic reduction of Vd1 spores and mycelia. To examine genetic changes that account for these biological changes, a customized DNA chip (TVR) was used to analyze defense gene mRNA levels. The defense gene response was categorized into four groups. Group 1 was characterized by strong induction of defense genes followed by suppression. However, Vd1-induced gene suppression was blocked by Dvd-E6 in mixed infections.;These genes included some transcription factors and PR proteins such as class IV chitinases and beta glucanases which are known to target fungal spores and mycelia. Experiments also were repeated with a Craigella resistant (CR) isoline containing a fully active Ve locus ( Ve1+ and Ve2+). The biological results showed that the presence of the Ve1 + allele resulted in restricted Vd1 colonization and, in a mixed infection with Dvd-E6, Vd1 was completely eliminated from the plant stem. Surprisingly, there was no significant increase. in defense gene mRNAs. Rather, elevated basal levels of defense gene products appeared sufficient to combat pathogen attack. To investigate functional effects of the genetic changes observed, an inducible RNAi knockdown vector for a defense gene (TUS15G8) with unknown function (pMW4-TUS15G8) as well as the Ve2 resistance gene (pMW-Ve2) was prepared as a initial step for future transformation analyses. Taken together the results reveal intriguing but complex biological and molecular changes in mixed infections, which remain a basis for future experiments and potential agricultural benefits.
机译:当番茄克雷格氏菌感染了大黄萎病菌Dvd-E6(Dvd-E6)时,会产生大量病原体,但症状很少。出乎意料的是,这些植物具有Dvd-E6作为内生菌的功能,因此更加健壮和更高。一些内生菌可以保护植物免受强毒病原体的侵害。进行这项研究的目的是增进对番茄黄萎病菌耐受性的细胞和分子性质的了解,尤其是通过Dvd-E6感染是否可以保护克雷格氏菌免受强毒大丽菌1号(Vd1)侵害。为了进行混合感染实验,开发了一种基于限制性片段长度多态性(RFLP)的检测方法,用于将Dvd-E6与Vd1区分(当存在于混合感染中时)。结果表明,保护涉及易感克雷格利亚(CS)番茄中Dvd-E6与Vd1之间的分子相互作用,从而导致Vd1定居受到限制。进一步的研究表明Vd1孢子和菌丝体明显减少。为了检查解释这些生物学变化的遗传变化,使用了定制的DNA芯片(TVR)分析防御基因mRNA的水平。防御基因反应分为四组。第一组的特征是强烈诱导防御基因,然后被抑制。然而,在混合感染中,Dvd-E6阻止了Vd1诱导的基因抑制。这些基因包括一些转录因子和PR蛋白,例如IV类几丁质酶和β-葡聚糖酶,已知它们针对真菌孢子和菌丝体。还使用含有完全活性的Ve位点(Ve1 +和Ve2 +)的克雷氏菌(CR)等值线进行重复实验。生物学结果表明,Ve1 +等位基因的存在导致Vd1的定居受到限制,并且在与Dvd-E6的混合感染中,Vd1从植物茎中完全消除。令人惊讶的是,没有明显增加。在防御基因mRNA中。相反,防御基因产物的基础水平升高似乎足以抵抗病原体的侵袭。为了研究观察到的遗传变化的功能效果,准备了功能未知的防御基因(pUS4-TUS15G8)和Ve2抗性基因(pMW-Ve2)的诱导型RNAi敲低载体,作为未来的第一步转换分析。综上所述,结果揭示了混合感染中有趣但复杂的生物学和分子变化,这仍然是未来实验和潜在农业利益的基础。

著录项

  • 作者

    Shittu, Hakeem Olalekan.;

  • 作者单位

    University of Guelph (Canada).;

  • 授予单位 University of Guelph (Canada).;
  • 学科 Biology Molecular.;Agriculture Plant Pathology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 226 p.
  • 总页数 226
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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