TY - JOUR A1 - Metz, Johannes A1 - von Oppen, Jonathan A1 - Tielbörger, Katja T1 - Parental environmental effects due to contrasting watering adapt competitive ability, but not drought tolerance, in offspring of a semi-arid annual Brassicaceae JF - The journal of ecology N2 - Parental effects (PE) can be adaptive and improve offspring performance when parents and offspring experience similar environmental conditions. However, it is unknown whether adaptive PE exist also in habitats where such similarity is unlikely due to strong temporal variation. In particular, we do not know whether PE can adapt offspring to fluctuating levels of neighbour competition in such habitats. Here, we tested for adaptive PE in terms of two key environmental factors in a semi-arid annual system, competition and drought. While rainfall was stochastic in the study site, the competitive environment was partly predictable: higher plant densities followed after favourable (rainy) years due to high seed production. We therefore expected PE to adapt the offspring's competitive ability to these (predictable) fluctuations in plant densities, rather than to adapt the offspring's drought tolerance to the (unpredictable) occurrence of intensified drought. Parental plants of Biscutella didyma, an annual Brassicaceae, were raised under favourable watering and under drought conditions. Offspring performance was then tested under a full-factorial combination of two neighbour regimes and six watering levels in the glasshouse. Offspring of parents grown under favourable conditions were stronger competitors. This was associated with a small shift in phenology but not with higher parental seed provisioning. Offspring from parents grown under drought showed no improved drought tolerance. Moreover, no PE were detectable when offspring were grown without neighbours. Our results suggest a novel path of adaptive PE: higher competitive ability was induced in offspring that were more likely to experience high neighbour densities. Together with the lack of adaptive PE towards drought tolerance, this emphasizes that a correlation between parental and offspring environment is crucial for adaptive PE to evolve. Our results also call for the inclusion of competitive effects in future PE studies.Synthesis. This study demonstrates the important role of adaptive PE for plant fitness (regarding competition) but also their limits (regarding drought) in temporally variable environments, based on the predictability of the respective environmental factor. KW - annual plants KW - Biscutella didyma KW - competition KW - dryland ecosystems KW - maternal environmental effects KW - phenology KW - plant population and community dynamics KW - plant-plant interactions KW - transgenerational plasticity KW - water stress Y1 - 2015 U6 - https://doi.org/10.1111/1365-2745.12411 SN - 0022-0477 SN - 1365-2745 VL - 103 IS - 4 SP - 990 EP - 997 PB - Wiley-Blackwell CY - Hoboken ER - TY - JOUR A1 - Lampei, Christian A1 - Metz, Johannes A1 - Tielboerger, Katja T1 - Clinal population divergence in an adaptive parental environmental effect that adjusts seed banking JF - New phytologist : international journal of plant science N2 - Bet-hedging via between-year seed dormancy is a costly strategy for plants in unpredictable environments. Theoretically, fitness costs can be reduced through a parental environmental effect when the environment is partly predictable. We tested whether populations from environments that differ in predictability diverged in parental effects on seed dormancy. Common garden-produced seeds of the two annual plant species Biscutella didyma and Bromus fasciculatus collected along an aridity gradient were grown under 12 irrigation treatments. Offspring germination was evaluated and related to environmental correlations between generations and their fitness consequences at the four study sites. One species exhibited strong seed dormancy that increased with unpredictability in seasonal precipitation. The parental effect on seed dormancy also increased proportionally with the environmental correlation between precipitation in the parental season and seedling density in the following season; this correlation increased from mesic to arid environments. Because fitness was negatively related to density, this parental effect may be adaptive. However, the lack of dormancy in the second species indicates that bet-hedging is not the only strategy for annual plants in arid environments. Our results provide the first evidence for clinal variation in the relative strength of parental effects along environmental gradients. KW - bet-hedging KW - clinal variation KW - environmental autocorrelation KW - maternal effect KW - parental effect KW - risk spreading KW - seed dormancy KW - transgenerational plasticity Y1 - 2017 U6 - https://doi.org/10.1111/nph.14436 SN - 0028-646X SN - 1469-8137 VL - 214 SP - 1230 EP - 1244 PB - Wiley CY - Hoboken ER -