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在与内生真菌AR37的新型关联中,真菌内生菌的定殖模式随时间而改变。

Fungal Endophyte Colonization Patterns Alter Over Time in the Novel Association Between and Endophyte AR37.

作者信息

Forte Flavia Pilar, Schmid Jan, Dijkwel Paul P, Nagy Istvan, Hume David E, Johnson Richard D, Simpson Wayne R, Monk Shaun M, Zhang Ningxin, Sehrish Tina, Asp Torben

机构信息

Center for Quantitative Genetics and Genomics, Aarhus University, Slagelse, Denmark.

School of Fundamental Sciences, Massey University, Palmerston North, New Zealand.

出版信息

Front Plant Sci. 2020 Oct 29;11:570026. doi: 10.3389/fpls.2020.570026. eCollection 2020.

Abstract

Infection of the pasture grass with the seed-transmitted fungal endophyte enhances its resilience to biotic and abiotic stress. Agricultural benefits of endophyte infection can be increased by generating novel symbiotic associations through inoculating with selected strains. Natural symbioses have coevolved over long periods. Thus, artificial symbioses will probably not have static properties, but symbionts will coadapt over time improving the fitness of the association. Here we report for the first time on temporal changes in a novel association of strain AR37 and the cultivar Grasslands Samson. Over nine generations, a seed maintenance program had increased the endophyte seed transmission rates to > 95% (from an initial 76%). We observed an approximately fivefold decline in endophyte biomass concentration in vegetative tissues over time (between generations 2 and 9). This indicates strong selection pressure toward reducing endophyte-related fitness costs by reducing endophyte biomass, without compromising the frequency of endophyte transmission to seed. We observed no obvious changes in tillering and only minor transcriptomic changes in infected plants over time. Functional analysis of 40 plant genes, showing continuously decreasing expression over time, suggests that adaptation of host metabolism and defense mechanisms are important for increasing the fitness of this association, and possibly fitness of such symbioses in general. Our results indicate that fitness of novel associations is likely to improve over time and that monitoring changes in novel associations can assist in identifying key features of endophyte-mediated enhancement of host fitness.

摘要

通过种子传播的真菌内生菌感染牧场草,可增强其对生物和非生物胁迫的恢复力。通过接种选定菌株产生新的共生关系,可以增加内生菌感染带来的农业效益。自然共生关系是经过长期共同进化形成的。因此,人工共生关系可能不会具有固定的特性,而是共生体将随着时间共同适应,从而提高共生关系的适应性。在此,我们首次报告了菌株AR37与品种草原参孙之间新共生关系的时间变化。在九代的时间里,一个种子保存计划将内生菌的种子传播率提高到了95%以上(从最初的76%)。我们观察到,随着时间的推移(在第2代和第9代之间),营养组织中内生菌生物量浓度下降了约五倍。这表明存在强大的选择压力,即通过减少内生菌生物量来降低与内生菌相关的适应性成本,同时又不影响内生菌向种子传播的频率。我们观察到分蘖没有明显变化,随着时间的推移,受感染植物的转录组变化也很小。对40个植物基因的功能分析表明,这些基因的表达随时间持续下降,这表明宿主代谢和防御机制的适应对于提高这种共生关系的适应性很重要,可能对一般此类共生关系的适应性也很重要。我们的结果表明,新共生关系的适应性可能会随着时间的推移而提高,监测新共生关系的变化有助于确定内生菌介导的宿主适应性增强的关键特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e859/7658011/c9d46a87b67b/fpls-11-570026-g001.jpg

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