Gundel Pedro E, Pierik Ronald, Mommer Liesje, Ballaré Carlos L
Plant Production Research, MTT Agrifood Research Finland, Jokioinen, Finland,
Oecologia. 2014 Sep;176(1):1-10. doi: 10.1007/s00442-014-2983-x. Epub 2014 Jun 4.
Plant responses to competition have often been described as passive consequences of reduced resource availability. However, plants have mechanisms to forage for favorable conditions and anticipate competition scenarios. Despite the progresses made in understanding the role of light signaling in modulating plant-plant interactions, little is known about how plants use and integrate information gathered by their photoreceptors aboveground to regulate performance belowground. Given that the phytochrome family of photoreceptors plays a key role in the acquisition of information about the proximity of neighbors and canopy cover, it is tempting to speculate that changes in the red:far-red (R:FR) ratio perceived by aboveground plant parts have important implications shaping plant behavior belowground. Exploring data from published experiments, we assess the neglected role of light signaling in the control of root function. The available evidence indicates that plant exposure to low R:FR ratios affects root growth and morphology, root exudate profiles, and interactions with beneficial soil microorganisms. Although dependent on species identity, signals perceived aboveground are likely to affect root-to-root interactions. Root systems could also be guided to deploy new growth predominantly in open areas by light signals perceived by the shoots. Studying interactions between above- and belowground plant-plant signaling is expected to improve our understanding of the mechanisms of plant competition.
植物对竞争的反应通常被描述为资源可用性降低的被动结果。然而,植物具有寻找有利条件和预测竞争情况的机制。尽管在理解光信号在调节植物间相互作用中的作用方面取得了进展,但对于植物如何利用和整合地上光感受器收集的信息来调节地下性能却知之甚少。鉴于光感受器的光敏色素家族在获取关于邻居接近程度和冠层覆盖的信息方面起着关键作用,很容易推测地上植物部分感知到的红光:远红光(R:FR)比值变化对塑造地下植物行为具有重要意义。通过分析已发表实验的数据,我们评估了光信号在控制根系功能中被忽视的作用。现有证据表明,植物暴露于低R:FR比值会影响根系生长和形态、根系分泌物谱以及与有益土壤微生物的相互作用。尽管依赖于物种特性,但地上感知到的信号可能会影响根际相互作用。地上部分感知到的光信号也可能引导根系系统主要在开阔区域进行新的生长。研究地上与地下植物间信号的相互作用有望增进我们对植物竞争机制的理解。