Giza Aleksandra, Hermanowicz Paweł, Ważny Rafał, Domka Agnieszka, Rozpądek Piotr, Łabuz Justyna
Malopolska Centre of Biotechnology, Jagiellonian University, Kraków, Poland.
Doctoral School of Exact and Natural Sciences, Jagiellonian University, Kraków, Poland.
PLoS One. 2025 May 15;20(5):e0323576. doi: 10.1371/journal.pone.0323576. eCollection 2025.
UV-A, an important part of sunlight radiation, is typically absent in experiments on plant-endophyte interactions. We examined the impact of UV-A in the 350-400 nm range (UV-A1 waveband) on the plant interactions with fungal endophytes belonging to different taxonomic groups: Paraphoma chrysanthemicola, Phomopsis columnaris, Diaporthe eres, Mucor sp., and yeast Sporobolomyces ruberrimus. Physiologically relevant levels of UV-A did not substantially affect the colonisation of shoots and roots by endophytes. UV-A upregulated the expression of genes involved in the establishment of symbiosis. Specifically, the expression of PDF1.2 was affected by P. chrysanthemicola and S. ruberrimus only under UV-A conditions. Additionally, UV-A exposure upregulated the mRNA levels of ICS1 and PAL1, genes important for plant responses to stress factors. Inoculation with P. chrysanthemicola and S. ruberrimus led to increased expression of the ICS1 gene. We did not observe significant interactions between the effects of UV-A and the presence of endophytes on other examined plant traits, including plant fresh weight, root system architecture, and expression of plant photoreceptor genes. For these physiological parameters, the effects of the presence of endophytes did not depend on UV-A supplementation. Our findings indicate that while UV-A does not substantially influence plant colonisation by the endophytes, it does trigger the upregulation of plant defence genes and affects the shoot growth of Arabidopsis.
紫外线A(UV-A)是阳光辐射的重要组成部分,在植物与内生菌相互作用的实验中通常不存在。我们研究了350 - 400纳米范围内的紫外线A(UV-A1波段)对植物与不同分类群真菌内生菌相互作用的影响,这些内生菌包括菊花拟茎点霉、柱状拟茎点霉、间座壳属菌、毛霉属菌以及酵母类的深红掷孢酵母。生理相关水平的UV-A对内生菌在地上部和根部的定殖没有实质性影响。UV-A上调了参与共生建立的基因的表达。具体而言,只有在UV-A条件下,PDF1.2的表达才受到菊花拟茎点霉和深红掷孢酵母的影响。此外,暴露于UV-A会上调ICS1和PAL1的mRNA水平,这两个基因对植物应对胁迫因子很重要。接种菊花拟茎点霉和深红掷孢酵母会导致ICS1基因表达增加。我们没有观察到UV-A的影响与内生菌的存在对其他检测的植物性状之间有显著相互作用,这些性状包括植物鲜重、根系结构以及植物光受体基因的表达。对于这些生理参数,内生菌存在的影响并不依赖于UV-A补充。我们的研究结果表明,虽然UV-A对内生菌在植物上的定殖没有实质性影响,但它确实会引发植物防御基因的上调,并影响拟南芥地上部的生长。