Department of Horticulture and Landscape Architecture, Graduate Degree Program in Ecology, Colorado State University, Fort Collins, CO, 80523, USA.
Sci Rep. 2021 Apr 27;11(1):9017. doi: 10.1038/s41598-021-88720-8.
Three different cultivars of Humulus lupulus L. were subjected to a regime of internode touch and bending under greenhouse conditions. Experiments were performed to assess intraspecific variability in plant mechanosensing, flower quality, and yield to quantify the thigmomorphogenic impact on plant compactness and flowering performance. Touching and/or touching plus bending the plant shoot internodes located in the apical meristem zone decreased internode elongation and increased width. The growth responses were due partly to touching and/or touching plus bending perturbation, 25.6% and 28% respectively. Growth of new tissue within the local apical portion of the bine continued to remain mechanosensitive. The number of nodes and female flowers produced was unaffected by either type of mechanical stress. The study provides evidence that thigmomorphogenic cues can be used as a hop crop management tool to increase bine compactness and increase node density per unit area. The findings have broad implications for hop production; production can more readily take place in a confined greenhouse space with the aid of mechanical stimulation to control plant growth without sacrificing yield or flower quality.
三种不同品种的啤酒花(Humulus lupulus L.)在温室条件下进行了节间触摸和弯曲处理。实验旨在评估植物机械感受、花品质和产量的种内变异性,以量化对植物紧凑性和开花性能的生形态发生影响。触摸和/或触摸加弯曲位于顶端分生组织区的植物茎节间会减少节间伸长并增加宽度。生长反应部分归因于触摸和/或触摸加弯曲的干扰,分别为 25.6%和 28%。嫩枝内部局部顶端的新组织的生长仍然对机械刺激敏感。节点和雌花的数量不受任何一种机械胁迫的影响。该研究提供了证据表明,生形态发生线索可以作为啤酒花作物管理工具,增加嫩枝的紧凑性并增加单位面积的节点密度。这一发现对啤酒花生产具有广泛的意义;在机械刺激的帮助下,更容易在封闭的温室空间中进行生产,以控制植物生长,而不会牺牲产量或花品质。