Savage Jessica A, Clearwater Michael J, Haines Dustin F, Klein Tamir, Mencuccini Maurizio, Sevanto Sanna, Turgeon Robert, Zhang Cankui
Arnold Arboretum of Harvard University, 1300 Centre Street, Boston, MA, 02131, USA.
School of Science, University of Waikato, Hamilton, 3240, New Zealand.
Plant Cell Environ. 2016 Apr;39(4):709-25. doi: 10.1111/pce.12602. Epub 2015 Sep 19.
Despite the crucial role of carbon transport in whole plant physiology and its impact on plant-environment interactions and ecosystem function, relatively little research has tried to examine how phloem physiology impacts plant ecology. In this review, we highlight several areas of active research where inquiry into phloem physiology has increased our understanding of whole plant function and ecological processes. We consider how xylem-phloem interactions impact plant drought tolerance and reproduction, how phloem transport influences carbon allocation in trees and carbon cycling in ecosystems and how phloem function mediates plant relations with insects, pests, microbes and symbiotes. We argue that in spite of challenges that exist in studying phloem physiology, it is critical that we consider the role of this dynamic vascular system when examining the relationship between plants and their biotic and abiotic environment.
尽管碳运输在整株植物生理学中起着关键作用,且对植物与环境的相互作用及生态系统功能有影响,但相对较少的研究试图探讨韧皮部生理学如何影响植物生态学。在本综述中,我们强调了几个活跃的研究领域,在这些领域中,对韧皮部生理学的探究增进了我们对整株植物功能和生态过程的理解。我们考虑木质部 - 韧皮部相互作用如何影响植物的耐旱性和繁殖,韧皮部运输如何影响树木中的碳分配和生态系统中的碳循环,以及韧皮部功能如何介导植物与昆虫、害虫、微生物和共生体的关系。我们认为,尽管在研究韧皮部生理学方面存在挑战,但在研究植物与其生物和非生物环境之间的关系时,考虑这个动态维管系统的作用至关重要。