Rho Hyungmin, Van Epps Victor, Wegley Nicholas, Doty Sharon L, Kim Soo-Hyung
School of Environmental and Forest Sciences, College of the Environment, University of Washington, Seattle, WA, United States.
Department of Biology, University of Washington, Seattle, WA, United States.
Front Plant Sci. 2018 Mar 2;9:188. doi: 10.3389/fpls.2018.00188. eCollection 2018.
Bacterial and yeast endophytes isolated from the Salicaceae family have been shown to promote growth and alleviate stress in plants from different taxa. To determine the physiological pathways through which endophytes affect plant water relations, we investigated leaf water potential, whole-plant water use, and stomatal responses of rice plants to Salicaceae endophyte inoculation under CO enrichment and water deficit. Daytime stomatal conductance and stomatal density were lower in inoculated plants compared to controls. Leaf ABA concentrations increased with endophyte inoculation. As a result, transpirational water use decreased significantly with endophyte inoculation while biomass did not change or slightly increased. This response led to a significant increase in cumulative water use efficiency at harvest. Different endophyte strains produced the same results in host plant water relations and stomatal responses. These stomatal responses were also observed under elevated CO conditions, and the increase in water use efficiency was more pronounced under water deficit conditions. The effect on water use efficiency was positively correlated with daily light integrals across different experiments. Our results provide insights on the physiological mechanisms of plant-endophyte interactions involving plant water relations and stomatal functions.
从杨柳科植物中分离出的细菌和酵母内生菌已被证明能促进不同分类群植物的生长并缓解其胁迫。为了确定内生菌影响植物水分关系的生理途径,我们研究了在二氧化碳浓度升高和水分亏缺条件下,水稻植株接种杨柳科内生菌后的叶片水势、整株植物水分利用和气孔反应。与对照相比,接种植株的白天气孔导度和气孔密度较低。随着内生菌接种,叶片脱落酸浓度增加。结果,接种内生菌后蒸腾水分利用显著降低,而生物量没有变化或略有增加。这种反应导致收获时累积水分利用效率显著提高。不同的内生菌菌株在寄主植物水分关系和气孔反应方面产生了相同的结果。在二氧化碳浓度升高的条件下也观察到了这些气孔反应,并且在水分亏缺条件下水分利用效率的增加更为明显。在不同实验中,对水分利用效率的影响与日光照积分呈正相关。我们的结果为涉及植物水分关系和气孔功能的植物 - 内生菌相互作用的生理机制提供了见解。