Luiza Teixeira-Costa, Lukas Wiese, Thomas Speck, Max D Mylo
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引用次数: 0
Abstract
Attachment to a substrate is fundamental for plant growth and development. This is especially true for species that live either partially or fully off the ground, such as mistletoes, which have developed unique adaptations to anchor themselves securely to host trees from which they draw water and some nutrients. While the mechanical properties of attachment during the adult stages in many plant species have been described, the mechanical principles of the initial developmental stages are rarely investigated. Here, we focus on the parasitic European mistletoe (Viscum album L.) and its attachment to a host plant at the seedling stage. Using a combination of germination experiments, microtomography, histological analysis and biomechanical tests, this work investigates the role of the three key attachment structures involved in this process: seed coat, hypocotyl and holdfast. The viscin layer, a sticky coating on the seed, provides initial adhesion before the growing hypocotyl expands towards the host surface where it flattens and forms a holdfast that strengthens adhesion and aids tissue penetration. Tensile tests revealed that these three attachment structures withstand similar forces in the early stages, considerably higher than the weight of the seedling. Within a few months, the endophytic system interlocked with the host bark, forming a robust connection that not only transports water but also increased the mechanical strength of the structure. This work highlights the fundamental mechanisms of the initial mistletoe-host interaction, which forms the basis of their decades-long relationship.
附着在基质上是植物生长发育的基础。对于部分或完全脱离地面生活的物种来说尤其如此,比如槲寄生,它们已经发展出独特的适应性,可以将自己安全地固定在宿主树上,从树上吸取水分和一些营养。虽然许多植物在成虫阶段的附着力学特性已经被描述,但对其初始发育阶段的机械原理却很少进行研究。在这里,我们关注寄生欧洲槲寄生(Viscum album L.)及其在苗期对寄主植物的附着。结合萌发实验、显微断层扫描、组织学分析和生物力学测试,本研究探讨了在这一过程中涉及的三个关键附着结构:种皮、下胚轴和持骨板的作用。粘质层,一种粘在种子上的涂层,在生长的下胚轴向寄主表面扩张之前提供最初的附着力,在寄主表面变平并形成一个加强附着力和帮助组织渗透的固定物。拉伸试验表明,这三种附着结构在早期阶段承受相似的力,大大高于幼苗的重量。在几个月内,内生系统与宿主树皮互锁,形成一个坚固的连接,不仅运输水分,而且增加了结构的机械强度。这项工作强调了最初的寄生相互作用的基本机制,这构成了它们长达数十年的关系的基础。
期刊介绍:
The Journal of Experimental Botany publishes high-quality primary research and review papers in the plant sciences. These papers cover a range of disciplines from molecular and cellular physiology and biochemistry through whole plant physiology to community physiology.
Full-length primary papers should contribute to our understanding of how plants develop and function, and should provide new insights into biological processes. The journal will not publish purely descriptive papers or papers that report a well-known process in a species in which the process has not been identified previously. Articles should be concise and generally limited to 10 printed pages.