冬青科植物昼夜节律调节的生态相关性和变异性探讨

Pub Date : 2022-11-07 DOI:10.1640/0002-8444-112.4.303
Daniela Aros-Mualin, J. Flexas, Florian Galbier, M. Kessler
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引用次数: 2

摘要

摘要沼泽科是一个独特的半水生蕨类植物科,主要生长在世界各地的季节性湿地。这些栖息地带来了一些挑战,因为植物从完全淹没到暴露在空中条件下,增加了干旱压力。尽管异叶性已被研究为对这些环境变化的适应,但关于马鞭草科生态学的潜在机制,仍有许多问题没有得到解答。我们研究了冬青科所有三个属的四个物种的气孔导度、碳同化率、内在水分利用效率(iWUE)和叶片运动的昼夜节律调节,并将我们的发现与可能的水分胁迫适应联系起来。在球毛藻中没有检测到昼夜节律调节,而Regnellidium diphyllum和两个Marsilea物种的气孔导度和iWUE具有明显的节律,具有物种特异性模式。此外,光独立的叶片运动仅在马西莲属物种中发现。总之,iWUE和叶片运动的节律,以及其他保水的解剖特征,推断出了增加碳增益或减少水利用的不同策略。我们的研究代表了了解该家族昼夜节律调节的潜在驱动因素和适应性价值的第一步。
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Exploring the Ecological Relevance and Variability of Circadian Regulation in Marsileaceae
Abstract. Marsileaceae is a unique family of semi-aquatic ferns mainly growing in seasonal wetlands worldwide. These habitats present several challenges, since plants go from being wholly submerged to being exposed to aerial conditions, increasing drought stress. Although heterophylly has been studied as an adaptation to these environmental changes, there are still many unanswered questions concerning the mechanisms underlying the ecology of Marsileaceae. We studied the presence of circadian regulation in stomatal conductance, carbon assimilation rate, intrinsic water-use efficiency (iWUE), and leaf movement of four species from all three genera of Marsileaceae, and related our findings to possible water stress adaptations. No circadian regulation was detected in Pilularia globulifera, whereas Regnellidium diphyllum and two Marsilea species had an apparent rhythm in their stomatal conductance and iWUE, with species-specific patterns. Moreover, light-independent leaf movement was only found in Marsilea species. Taken together, the rhythm in iWUE and leaf movement, along with other anatomical traits for conserving water, infers different strategies to either increase carbon gain or reduce water use in Marsileaceae. Our study represents the first steps towards understanding the underlying drivers and adaptive value of circadian regulation in this family.
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