Hebbern Christopher A, Laursen Kristian Holst, Ladegaard Anne H, Schmidt Sidsel B, Pedas Pai, Bruhn Dan, Schjoerring Jan K, Wulfsohn Dvoralai, Husted Søren
Department of Agriculture and Ecology, University of Copenhagen, Frederiksberg C, Denmark.
Physiol Plant. 2009 Mar;135(3):307-16. doi: 10.1111/j.1399-3054.2008.01188.x. Epub 2009 Jan 7.
To investigate if latent manganese (Mn) deficiency leads to increased transpiration, barley plants were grown for 10 weeks in hydroponics with daily additions of Mn in the low nM range. The Mn-starved plants did not exhibit visual leaf symptoms of Mn deficiency, but Chl a fluorescence measurements revealed that the quantum yield efficiency of PSII (F(v)/F(m)) was reduced from 0.83 in Mn-sufficient control plants to below 0.5 in Mn-starved plants. Leaf Mn concentrations declined from 30 to 7 microg Mn g(-1) dry weight in control and Mn-starved plants, respectively. Mn-starved plants had up to four-fold higher transpiration than control plants. Stomatal closure and opening upon light/dark transitions took place at the same rate in both Mn treatments, but the nocturnal leaf conductance for water vapour was still twice as high in Mn-starved plants compared with the control. The observed increase in transpiration was substantiated by (13)C-isotope discrimination analysis and gravimetric measurement of the water consumption, showing significantly lower water use efficiency in Mn-starved plants. The extractable wax content of leaves of Mn-starved plants was approximately 40% lower than that in control plants, and it is concluded that the increased leaf conductance and higher transpirational water loss are correlated with a reduction in the epicuticular wax layer under Mn deficiency.
为了研究潜在的锰(Mn)缺乏是否会导致蒸腾作用增强,将大麦植株在水培条件下培养10周,每天添加低纳摩尔范围的锰。缺锰植株未表现出缺锰的可见叶片症状,但叶绿素a荧光测量结果显示,光系统II的量子产率效率(F(v)/F(m))从锰充足的对照植株的0.83降至缺锰植株的0.5以下。对照植株和缺锰植株的叶片锰浓度分别从30微克锰/克干重降至7微克锰/克干重。缺锰植株的蒸腾作用比对照植株高四倍。在两种锰处理中,光/暗转换时气孔的关闭和开放速率相同,但缺锰植株夜间叶片对水蒸气的导度仍比对照植株高两倍。通过(13)C同位素判别分析和水分消耗的重量测量证实了观察到的蒸腾作用增加,表明缺锰植株的水分利用效率显著降低。缺锰植株叶片的可提取蜡质含量比对照植株低约40%,得出的结论是,缺锰条件下叶片导度增加和较高的蒸腾失水量与表皮蜡层减少有关。