首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Native root-associated bacteria rescue a plant from a sudden-wilt disease that emerged during continuous cropping
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PNAS Plus: Native root-associated bacteria rescue a plant from a sudden-wilt disease that emerged during continuous cropping

机译:PNAS Plus:与根系相关的天然细菌可以使植物免受连续种植过程中突然出现的枯萎病的侵害

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摘要

Plants maintain microbial associations whose functions remain largely unknown. For the past 15 y, we have planted the annual postfire tobacco Nicotiana attenuata into an experimental field plot in the plant’s native habitat, and for the last 8 y the number of plants dying from a sudden wilt disease has increased, leading to crop failure. Inadvertently we had recapitulated the common agricultural dilemma of pathogen buildup associated with continuous cropping for this native plant. Plants suffered sudden tissue collapse and black roots, symptoms similar to a Fusarium–Alternaria disease complex, recently characterized in a nearby native population and developed into an in vitro pathosystem for N. attenuata. With this in vitro disease system, different protection strategies (fungicide and inoculations with native root-associated bacterial and fungal isolates), together with a biochar soil amendment, were tested further in the field. A field trial with more than 900 plants in two field plots revealed that inoculation with a mixture of native bacterial isolates significantly reduced disease incidence and mortality in the infected field plot without influencing growth, herbivore resistance, or 32 defense and signaling metabolites known to mediate resistance against native herbivores. Tests in a subsequent year revealed that a core consortium of five bacteria was essential for disease reduction. This consortium, but not individual members of the root-associated bacteria community which this plant normally recruits during germination from native seed banks, provides enduring resistance against fungal diseases, demonstrating that native plants develop opportunistic mutualisms with prokaryotes that solve context-dependent ecological problems.
机译:植物维持其功能仍然未知的微生物关联。在过去的15年中,我们将一年生火后烟草Nicotiana tensa种植到了植物原生栖息地的实验田中,在过去的8年中,因突然的枯萎病而死的植物数量有所增加,导致作物歉收。不经意间,我们概括了与这种本地植物连续种植相关的病原体积累的常见农业困境。植物遭受突然的组织崩溃和黑根,其症状类似于镰刀菌-Alternaria病复合体,最近在附近的一个自然种群中表现出特征,并发展成为了一种弱毒猪笼草的体外病理系统。在这种体外疾病系统中,在野外进一步测试了不同的保护策略(杀菌剂和接种与自然根相关的细菌和真菌分离物)以及生物炭土壤改良剂。在两个田地中对900多种植物进行的田间试验表明,在感染的田地中接种天然细菌分离株混合物可显着降低疾病发生率和死亡率,而不会影响生长,草食动物抗性或已知介导抗性的32种防御和信号代谢物反对本地食草动物。随后一年的测试表明,由五种细菌组成的核心财团对于减少疾病至关重要。这个财团,但不是发芽过程中通常从本地种子库招募的与根相关的细菌群落的单个成员,提供了对真菌疾病的持久抵抗力,表明本地植物与原核生物发展了机会共生,解决了环境相关的生态问题。

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