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与系统性真菌内生菌的共生关系促进宿主免受媒介传播疾病的侵害。

Symbiosis with systemic fungal endophytes promotes host escape from vector-borne disease.

作者信息

Perez L I, Gundel P E, Marrero H J, Arzac A González, Omacini M

机构信息

IFEVA-Facultad de Agronomía (UBA)/CONICET, Cátedra de Ecología, Av. San Martín 4453, C1417DSE, Buenos Aires, Argentina.

Instituto Argentino de Investigaciones de las Zonas Áridas, CONICET, CC 507, 5500, Mendoza, Argentina.

出版信息

Oecologia. 2017 May;184(1):237-245. doi: 10.1007/s00442-017-3850-3. Epub 2017 Mar 18.

DOI:10.1007/s00442-017-3850-3
PMID:28315955
Abstract

Plants interact with a myriad of microorganisms that modulate their interactions within the community. A well-described example is the symbiosis between grasses and Epichloë fungal endophytes that protects host plants from herbivores. It is suggested that these symbionts could play a protective role for plants against pathogens through the regulation of their growth and development and/or the induction of host defences. However, other endophyte-mediated ecological mechanisms involved in disease avoidance have been scarcely explored. Here we studied the endophyte impact on plant disease caused by the biotrophic fungus, Claviceps purpurea, under field conditions through (1) changes in the survival of the pathogen´s resistance structure (sclerotia) during overwintering on the soil surface, and (2) effects on insects responsible for the transportation of pathogen spores. This latter mechanism is tested through a visitor exclusion treatment and the measurement of plant volatile cues. We found no significant effects of the endophyte on the survival of sclerotia and thus on disease inocula. However, both pathogen incidence and severity were twofold lower in endophyte-symbiotic plants than in non-symbiotic ones, though when insect visits were prevented this difference disappeared. Endophyte-symbiotic and non-symbiotic plots presented different emission patterns of volatiles suggesting that they can play a role in this protection. We show a novel indirect ecological mechanism by which endophytes can defend host grasses against diseases through negatively interacting with intermediary vectors of the epidemic process.

摘要

植物与无数微生物相互作用,这些微生物调节着它们在群落中的相互作用。一个广为人知的例子是禾本科植物与内生真菌Epichloë之间的共生关系,这种共生关系可保护宿主植物免受食草动物侵害。有人认为,这些共生体可以通过调节植物的生长发育和/或诱导宿主防御,对植物抵御病原体起到保护作用。然而,其他由内生菌介导的与病害规避相关的生态机制却鲜有研究。在此,我们通过以下方式研究了田间条件下内生菌对由活体营养型真菌麦角菌引起的植物病害的影响:(1)病原体抗性结构(菌核)在土壤表面越冬期间的存活变化;(2)对负责病原体孢子传播的昆虫的影响。后一种机制通过访客排除处理和植物挥发性信号的测量来进行测试。我们发现内生菌对菌核的存活没有显著影响,因此对病害接种体也没有显著影响。然而,内生菌共生植物中的病原体发病率和严重程度比非共生植物低两倍,不过当阻止昆虫访花时,这种差异就消失了。内生菌共生地块和非共生地块呈现出不同的挥发性物质排放模式,这表明它们在这种保护中可能发挥作用。我们展示了一种新的间接生态机制,通过这种机制内生菌可以通过与病害流行过程的中间媒介产生负相互作用,来保护宿主禾本科植物免受病害。

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本文引用的文献

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Infection with a Shoot-Specific Fungal Endophyte (Epichloë) Alters Tall Fescue Soil Microbial Communities.感染一种特定于茎的真菌内生菌(Epichloë)会改变高羊茅土壤微生物群落。
Microb Ecol. 2016 Jul;72(1):197-206. doi: 10.1007/s00248-016-0750-8. Epub 2016 Mar 18.
2
Epichloë endophytes alter inducible indirect defences in host grasses.Epichloë内生真菌改变宿主禾本科植物中的诱导性间接防御。
PLoS One. 2014 Jun 30;9(6):e101331. doi: 10.1371/journal.pone.0101331. eCollection 2014.
3
Multiple mutualist effects: conflict and synergy in multispecies mutualisms.
内生菌促进的种子病原体增强宿主草对昆虫食草作用的抗性。
Front Microbiol. 2022 Jan 11;12:786619. doi: 10.3389/fmicb.2021.786619. eCollection 2021.
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Interaction between Grasses and Endophytes and Its Significance to Biotic and Abiotic Stress Tolerance and the Rhizosphere.禾本科植物与内生真菌之间的相互作用及其对生物和非生物胁迫耐受性以及根际的意义。
Microorganisms. 2021 Oct 20;9(11):2186. doi: 10.3390/microorganisms9112186.
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Antagonism to Plant Pathogens by Fungal Endophytes-A Review.真菌内生菌对植物病原体的拮抗作用——综述
Plants (Basel). 2021 Sep 24;10(10):1997. doi: 10.3390/plants10101997.
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Reciprocal Effects of Silicon Supply and Endophytes on Silicon Accumulation and Colonization in Grasses.硅供应与内生菌对禾本科植物硅积累和定殖的相互影响
Front Plant Sci. 2020 Oct 27;11:593198. doi: 10.3389/fpls.2020.593198. eCollection 2020.
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