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首页> 外文期刊>Phytobiomes Journal >Topography-driven shape, spread, and retention of leaf surface water impacts microbial dispersion and activity in the phyllosphere
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Topography-driven shape, spread, and retention of leaf surface water impacts microbial dispersion and activity in the phyllosphere

机译:叶片表面用水的地形驱动的形状,传播和保留影响了文学的微生物分散和活性

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摘要

To study the impact of lateral variation in surface topography on the microbial colonization of plant leaves, we used a two-step casting process to generate topomimetic “replicasts” in polydimethylsiloxane which faithfully resembled leaf surface topography at submicrometer scale. This process revealed that the shape and size of the phyllotelma—the collective body of standing water on a leaf surface—was a function of wetting method and presence of surface features, in particular leaf veins. The use of dyes and fluorescently labeled bacteria showed that these veins, especially on the abaxial side, contributed to the pooling, retention, and lateral spread of water and microorganisms. Bodies of water along veins acted as conduits that allowed bacterial cells to sense chemicals over distances exceeding their body length by four orders of magnitude. Bacterial survival rates under conditions of low relative humidity were twice as high on leaf replicasts as on flat surfaces, suggesting topography-dependent protection from desiccation. Our findings highlight the need for greater quantitative understanding of the impact of leaf surface topography on phyllotelma connectivity and the outcomes of interactions between microorganisms and with their plant host. Such understanding benefits both theory and practice of phyllosphere microbiology in areas such as foliar disease management and food safety of leafy greens.
机译:为了研究横向变异在表面形貌对植物叶片微生物定殖的影响,我们使用了两步铸造方法,在亚尺度忠实地类似于叶面形状的聚二甲基硅氧烷中产生拓粒子“复制品”。该方法揭示了Phyllotelma的形状和尺寸 - 叶表面上的常设水的集体体 - 是润湿方法和表面特征的存在的函数,特别是叶静脉。染料和荧光标记的细菌的使用表明,这些静脉,特别是在轴向侧,有助于汇集,保留和微生物的侧面蔓延。沿着静脉的水体担任导管,使细菌细胞允许在超过其体长度的距离上感测化学品的化学物质。低的相对湿度的条件下细菌存活率分别为两倍高叶片replicasts如在平坦的表面,这表明从干燥地形依赖性保护。我们的研究结果突出了对叶面形貌对植物局部连接性的影响的需要以及微生物与其植物宿主的相互作用的影响。这种理解有利于叶状疾病管理和叶茂盛蔬菜的食品安全等地区植物微生物学的理论和实践。

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