病原菌对板栗丹参叶片表面润湿性的影响

IF 2.1 3区 环境科学与生态学 Q2 ECOLOGY
Ecohydrology Pub Date : 2025-01-06 DOI:10.1002/eco.2755
Shin-Taro Saiki, Anna Ilek, Yuho Ando, Norio Sahashi, Kazuki Nanko
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引用次数: 0

摘要

叶片表面润湿性对降雨截留和森林生态系统整体水分平衡有显著影响。然而,生物因素,特别是真菌,对这一关键特性的影响尚未得到广泛的记录。在本研究中,我们评估了白粉病真菌赤霉(Erysiphe castaneigena)对板栗叶片润湿性的影响。通过测量叶片表面水滴的接触角,比较了叶片的润湿性。我们的分析表明,与未感染白粉病菌的叶片相比,感染白粉病菌的叶片表现出明显更高的疏水性。随着真菌覆盖叶表面的扩大,这种疏水性的增加与菌丝体的致密化有关。这些发现强调了层球微生物如白粉病真菌对叶片润湿性的实质性影响。我们的研究结果也增强了我们对叶片表面微生物相互作用的生态水文含义的理解,强调需要进一步研究这些过程如何影响更广泛的生态和水文系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Pathogenic Fungi on Leaf Surface Wettability: A Case Study of Erysiphe castaneigena

Leaf surface wettability significantly influences rainfall interception and the overall water balance within forest ecosystems. However, the effects of biological factors, particularly fungi, on this critical property have not been extensively documented. In this study, we assessed the impact of Erysiphe castaneigena, a powdery mildew fungus, on the wettability of leaves from Japanese chestnut trees. We compared the wettability of infected and uninfected leaves by measuring the contact angles of water droplets on their surfaces. Our analysis revealed that leaves infected with the powdery mildew fungus displayed significantly higher hydrophobicity compared with uninfected leaves. This increased hydrophobicity correlated with the densification of the mycelium as the fungal coverage of the leaf surface expanded. These findings emphasize the substantial influence of phyllosphere microorganisms such as powdery mildew fungi on leaf wettability. Our results also enhance our understanding of the ecohydrological implications of microbial interactions on leaf surfaces, highlighting the need for further research into how these processes impact broader ecological and hydrological systems.

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来源期刊
Ecohydrology
Ecohydrology 环境科学-生态学
CiteScore
5.10
自引率
7.70%
发文量
116
审稿时长
24 months
期刊介绍: Ecohydrology is an international journal publishing original scientific and review papers that aim to improve understanding of processes at the interface between ecology and hydrology and associated applications related to environmental management. Ecohydrology seeks to increase interdisciplinary insights by placing particular emphasis on interactions and associated feedbacks in both space and time between ecological systems and the hydrological cycle. Research contributions are solicited from disciplines focusing on the physical, ecological, biological, biogeochemical, geomorphological, drainage basin, mathematical and methodological aspects of ecohydrology. Research in both terrestrial and aquatic systems is of interest provided it explicitly links ecological systems and the hydrologic cycle; research such as aquatic ecological, channel engineering, or ecological or hydrological modelling is less appropriate for the journal unless it specifically addresses the criteria above. Manuscripts describing individual case studies are of interest in cases where broader insights are discussed beyond site- and species-specific results.
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