Download PDF (external access)

Frontiers in Plant Science

Publication date: 2016-03-18
Pages: 419 - 419
Publisher: Frontiers Research Foundation

Author:

Van de Mijnsbrugge, Kristine
Turcsân, Arion ; Maes, Jorne ; Duchêne, Nils ; Meeus, Steven ; Steppe, Kathy ; Steenackers, Marijke

Keywords:

drought, re-watering, oak provenance, seedling, survival, leaf senescene, bud burst, GLM, Science & Technology, Life Sciences & Biomedicine, Plant Sciences, leaf senescence, general linear mixed models, FAGUS-SYLVATICA L., PLANT-RESPONSES, GROWTH CESSATION, LEAF SENESCENCE, MATT. LIEBL., ROBUR, DRY, PHOTOSYNTHESIS, VULNERABILITY, SIGNALS, 0607 Plant Biology, 3004 Crop and pasture production, 3108 Plant biology

Abstract:

Climate change predicts harsher summer droughts for mid-latitudes in Europe. To enhance our understanding of the putative impacts on forest regeneration, we studied the response of oak seedlings (Quercus petraea) to water deficit. Potted seedlings originating from three locally sourced provenances were subjected to two successive drought periods during the first growing season each followed by a plentiful re-watering. Here we describe survival and phenological responses after the second drought treatment, applying general linear mixed modelling. From the 441 drought treated seedlings 189 subsisted with higher chances of survival among smaller plants and among single plants per pot compared to doubles. Remarkably, survival was independent of the provenance, although relatively more plants had died off in two provenances compared to the third one with mean plant height being higher in one provenance and standard deviation of plant height being higher in the other. Timing of leaf senescence was clearly delayed after the severe drought treatment followed by re-watering, with two seedlings per pot showing a lesser retardation compared to single plants. This delay can be interpreted as a compensation time in which plants recover before entering the subsequent developmental process of leaf senescence, although it renders seedlings more vulnerable to early autumn frosts because of the delayed hardening of the shoots. Onset of bud flush in the subsequent spring still showed a significant but small delay in the drought treated group, independent of the number of seedlings per pot, and can be considered as an after effect of the delayed senescence. In both phenological models significant differences among the three provenances were detected independent from the treatment. The only provenance that is believed to be local of origin, displayed the earliest leaf senescence and the latest flushing, suggesting an adaptation to the local maritime climate. This provenance also displayed the highest standard deviation of plant height, which can be interpreted as an adaptation to variable and unpredictable weather conditions, favouring smaller plants in drought-prone summers and higher plants in more normal growing seasons.