Song Kahye, Chang Shyr-Shea, Lee Sang Joon
School of Interdisciplinary Bioscience and Bioengineering, Pohang University of Science and Technology (POSTECH), Pohang, Gyeongbuk, Korea.
Department of Mathematics, University of California Los Angeles, Los Angeles, CA 90095, USA.
Front Life Sci. 2017;10(1):38-47. doi: 10.1080/21553769.2017.1287777. Epub 2017 Feb 13.
One of the primary purposes of pine cones is the protection and distant dispersal of pine seeds. Pine cones open and release their embedded seeds on dry and windy days for long-distance dispersal. In this study, how the pine seed attach to/ detach from the pine cone scale for efficient seed dispersal were experimentally investigated by using X-ray micro-imaging technique. The cone and seeds adhere to one another in the presence of water, which could be explained by the surface tension and the contact angle hysteresis. Otherwise, without water, the waterproof seed wing surface permits rapid drying for detach and dispersion. On the other hand, during wildfires, pine cones open their seed racks and detach the pine seeds from pine cones for rapid seed dispersal. Due to these structural advantages, pine seeds are released safely and efficiently on adjust condition. These advantageous structure could be mimicked in practical applications.
松果的主要功能之一是保护松子并将其远距离传播。松果在干燥多风的日子里打开并释放其中的种子以实现远距离传播。在本研究中,利用X射线显微成像技术对松子如何与松果鳞片附着/分离以实现高效种子传播进行了实验研究。在有水的情况下,松果和种子相互粘附,这可以通过表面张力和接触角滞后现象来解释。否则,在没有水的情况下,防水的种子翅表面能够快速干燥以便分离和传播。另一方面,在野火期间,松果会打开其种子架并使松子从松果上分离以便快速传播种子。由于这些结构优势,松子在适宜条件下能够安全高效地释放。这些有利结构可在实际应用中加以模仿。