Suppr超能文献

植物叶片:一种用于多功能与经济设计的仿生资源。

The Plant Leaf: A Biomimetic Resource for Multifunctional and Economic Design.

作者信息

Roth-Nebelsick Anita, Krause Matthias

机构信息

State Museum of Natural History, Rosenstein 1, 70191 Stuttgart, Germany.

出版信息

Biomimetics (Basel). 2023 Apr 3;8(2):145. doi: 10.3390/biomimetics8020145.

Abstract

As organs of photosynthesis, leaves are of vital importance for plants and a source of inspiration for biomimetic developments. Leaves are composed of interconnected functional elements that evolved in concert under high selective pressure, directed toward strategies for improving productivity with limited resources. In this paper, selected basic components of the leaf are described together with biomimetic examples derived from them. The epidermis (the "skin" of leaves) protects the leaf from uncontrolled desiccation and carries functional surface structures such as wax crystals and hairs. The epidermis is pierced by micropore apparatuses, stomata, which allow for regulated gas exchange. Photosynthesis takes place in the internal leaf tissue, while the venation system supplies the leaf with water and nutrients and exports the products of photosynthesis. Identifying the selective forces as well as functional limitations of the single components requires understanding the leaf as an integrated system that was shaped by evolution to maximize carbon gain from limited resource availability. These economic aspects of leaf function manifest themselves as trade-off solutions. Biomimetics is expected to benefit from a more holistic perspective on adaptive strategies and functional contexts of leaf structures.

摘要

作为光合作用的器官,叶子对植物至关重要,也是仿生学发展的灵感来源。叶子由相互连接的功能元件组成,这些元件在高选择压力下协同进化,旨在实现利用有限资源提高生产力的策略。本文描述了叶子的选定基本组成部分以及从中衍生出的仿生实例。表皮(叶子的“皮肤”)保护叶子免受不受控制的干燥,并带有蜡晶体和毛发等功能性表面结构。表皮被微孔装置气孔穿透,气孔允许进行调节的气体交换。光合作用发生在叶片内部组织中,而叶脉系统为叶片提供水分和养分,并输出光合作用的产物。要确定单个组成部分的选择力以及功能限制,需要将叶子理解为一个通过进化形成的综合系统,以最大限度地从有限的资源可用性中获取碳收益。叶子功能的这些经济方面表现为权衡解决方案。预计仿生学将从对叶子结构的适应性策略和功能背景的更全面视角中受益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dab2/10123730/c95d14bcbc5c/biomimetics-08-00145-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验