Molecular Plant Science and Plant Biochemistry, University of Wuppertal, Wuppertal, Germany.
Plant Biol (Stuttg). 2020 Sep;22(5):781-793. doi: 10.1111/plb.13150. Epub 2020 Jul 16.
Research into the influence of stress factors, such as drought, different temperatures and/or varied light conditions, on plants due to climate changes is becoming increasingly important. Epiphytes, like many species of the Bromeliaceae, are particularly affected by this, but little is known about impacts on nectar composition and nectary metabolism. We investigated the influence of drought, different temperatures and light-dark regimes on nectar and nectaries of the epiphytic bromeliad species, Aechmea fasciata, and also the influence of drought with the terrestrial bromeliad, Billbergia nutans. The content of sugars, amino acids and ions in nectar and nectaries was analysed using HPLC. In addition, the starch content and the activities of different invertases in nectaries were determined. Compositions of nectar and nectaries were hardly influenced, neither by light nor dark, nor by different temperatures. In contrast, drought revealed changes in nectar volumes and nectar sugar compositions in the epiphytic bromeliad as well as in the terrestrial bromeliad. In both species, the sucrose-to-hexose ratio in nectar decreased considerably during the drought period. These changes in nectar sugar composition do not correlate with changes in the nectaries. The total sugar, amino acid and ion concentrations remained constant in nectar as well as in nectaries during the drought period. Changes in nectar composition or in the production of floral pollinator rewards are likely to affect plant-pollinator interactions. It remains questionable how far the adaptations of the bromeliads to drought and diverse light or temperature conditions are still sufficient.
由于气候变化,研究压力因素(如干旱、不同温度和/或光照条件变化)对植物的影响变得越来越重要。气生植物,如许多凤梨科物种,尤其受到影响,但对花蜜成分和蜜腺代谢的影响知之甚少。我们研究了干旱、不同温度和明暗周期对附生凤梨科植物 Aechmea fasciata 的花蜜和蜜腺的影响,以及干旱对陆生凤梨科植物 Billbergia nutans 的影响。使用 HPLC 分析了花蜜和蜜腺中糖、氨基酸和离子的含量。此外,还测定了蜜腺中淀粉含量和不同转化酶的活性。花蜜和蜜腺的组成不受光照或黑暗、不同温度的影响。相比之下,干旱导致附生凤梨科植物和陆生凤梨科植物的花蜜体积和花蜜糖组成发生变化。在这两个物种中,花蜜中的蔗糖-己糖比率在干旱期间显著下降。花蜜糖组成的这些变化与蜜腺的变化无关。在干旱期间,花蜜和蜜腺中的总糖、氨基酸和离子浓度保持不变。花蜜成分或花卉传粉者奖励的产生的变化可能会影响植物-传粉者的相互作用。凤梨科植物对干旱和多样化的光照或温度条件的适应程度仍存在疑问。