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Thigmomorphogenetic responses of an aquatic macrophyte to hydrodynamic stress

机译:水生植物对水动力应力的致生形态反应

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摘要

The response of aquatic plants to abiotic factors is a crucial study topic, because the diversity of aquatic vegetation is strongly related to specific adaptations to a variety of environments. This biodiversity ensures resilience of aquatic communities to new and changing ecological conditions. In running water, hydrodynamic disturbance is one of the key factors in this context. While plant adaptations to resource stress (nutrients, light…) are well documented, adaptations to mechanical stress, particularly flow, are largely unknown. The submerged species Egeria densa was used in an experiment to detect whether the presence or absence of hydrodynamic stress causes plant thigmomorphogenetic responses (i) in terms of plant biogenic silica (BSi), cellulose and lignin concentrations, and (ii) in terms of plant strength. Plant silica concentrations, as well as lignin concentrations were significantly higher in presence of hydrodynamic stress. These physiological changes are accompanied by some significant changes in stem biomechanical traits: stem resistance to tensile forces (breaking force and breaking strength) and stiffness were higher for plants exposed to hydrodynamic stress. We conclude that the response of this aquatic plant species to mechanical stress is likely the explaining factor for a higher capacity to tolerate stress through the production of mechanically hardened shoots.
机译:水生植物对非生物因子的反应是一个至关重要的研究课题,因为水生植物的多样性与对各种环境的特定适应性密切相关。这种生物多样性可确保水生社区适应新的和不断变化的生态条件。在流水中,水动力扰动是这种情况下的关键因素之一。尽管有充分的文献证明植物对资源胁迫(营养素,光...)的适应性,但对机械应力(尤其是流量)的适应性却鲜为人知。在实验中使用了淹没物种Egeria densa,以检测是否存在水动力胁迫,从而导致植物形态发生反应(i)就植物生物硅(BSi),纤维素和木质素浓度而言,以及(ii)就植物而言强度。在存在水动力胁迫的情况下,植物二氧化硅的浓度以及木质素的浓度明显更高。这些生理变化伴随着茎生物力学特性的一些显着变化:暴露于水动力胁迫下的植物茎对拉伸力(断裂力和断裂强度)和刚度的抵抗力更高。我们得出的结论是,这种水生植物物种对机械应力的响应可能是通过产生机械硬化芽提高耐受胁迫的能力的解释性因素。

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