Rodríguez-Gamir Juan, Primo-Millo Eduardo, Forner-Giner María Ángeles
Department of Citriculture and Vegetal Production, Valencian Institute of Agrarias Research, Moncada, Valencia, Spain.
PLoS One. 2016 May 25;11(5):e0155246. doi: 10.1371/journal.pone.0155246. eCollection 2016.
Hydraulic conductance exerts a strong influence on many aspects of plant physiology, namely: transpiration, CO2 assimilation, growth, productivity or stress response. However we lack full understanding of the contribution of root or shoot water transport capacity to the total water balance, something which is difficult to study in trees. Here we tested the hypothesis that whole plant hydraulic conductance modulates plant transpiration using two different seedlings of citrus rootstocks, Poncirus trifoliata (L.) Raf. and Cleopatra mandarin (Citrus reshni Hort ex Tan.). The two genotypes presented important differences in their root or shoot hydraulic conductance contribution to whole plant hydraulic conductance but, even so, water balance proved highly dependent on whole plant conductance. Further, we propose there is a possible equilibrium between root and shoot hydraulic conductance, similar to that between shoot and root biomass production, which could be related with xylem anatomy.
水力导度对植物生理学的许多方面都有很大影响,即:蒸腾作用、二氧化碳同化、生长、生产力或应激反应。然而,我们对根系或地上部水分运输能力对总水平衡的贡献还缺乏全面的了解,而这在树木中很难进行研究。在这里,我们使用两种不同的柑橘砧木幼苗,枳(Poncirus trifoliata (L.) Raf.)和埃及酸橙(Cleopatra mandarin (Citrus reshni Hort ex Tan.)),来检验全株水力导度调节植物蒸腾作用这一假设。这两种基因型在根系或地上部水力导度对全株水力导度的贡献方面存在重要差异,但即便如此,水分平衡仍高度依赖于全株导度。此外,我们提出根系和地上部水力导度之间可能存在一种平衡,类似于地上部和根系生物量生产之间的平衡,这可能与木质部解剖结构有关。