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The relevance of seed size in modulating leaf physiology and early plant performance in two tree species

机译:种子大小与两种树种调控叶片生理和早期植物生长的相关性

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The size of seeds and the microsite of seed dispersal may affect the early establishment of seedlings through different physiological processes. Here, we examined the effects of seed size and light availability on seedling growth and survival, and whether such effects were mediated by water use efficiency. Acorns of Quercus petraea and the more drought-tolerant Quercus pyrenaica were sowed within and around a tree canopy gap in a sub-Mediterranean forest stand. We monitored seedling emergence and measured predawn leaf water potential (Ψpd), leaf nitrogen per unit area (Na), leaf mass per area, leaf carbon isotope composition (δ13C) and plant growth at the end of the first summer. Survival was measured on the next year. Path analysis revealed a consistent pattern in both species of higher δ13C as Ψpd decreased and higher δ13C as seedlings emerged later in the season, indicating an increase in 13C as the growing season is shorter and drier. There was a direct positive effect of seed size on δ13C in Q. petraea that was absent in Q. pyrenaica. Leaf δ13C had no effect on growth but the probability of surviving until the second year was higher for those seedlings of Q. pyrenaica that had lower δ13C on the first year. In conclusion, leaf δ13C is affected by seed size, seedling emergence time and the availability of light and water, however, leaf δ13C is irrelevant for first year growth, which is directly dependent on the amount of seed reserves.
机译:种子的大小和种子散布的微部位可能通过不同的生理过程影响幼苗的早期建立。在这里,我们研究了种子大小和光利用率对幼苗生长和存活的影响,以及这种影响是否由水分利用效率介导。将地中海栎树的橡子和耐旱性更高的栎栎种在一个地中海南部林分的树冠间隙内和周围。我们监测幼苗出苗并测量黎明前叶片水势(Ψ pd ),单位面积叶片氮(N a ),单位面积叶片质量,叶片碳同位素组成(δ 13 C)和第一个夏天结束时的植物生长。在下一年测量存活率。通径分析显示,随着Ψ pd 的减少,两种较高δ 13 C物种的模式一致,而随着幼苗后来出现,δ 13 C更高。季节,表明 13 C随着生长季节的缩短和干燥而增加。种子大小对Q. petraea中的δ 13 C有直接的正效应,而pyrenaica中却没有。叶片δ 13 C对生长无影响,但存活到第二年的概率对于那些在第一年中δ 13 C较低的pyr藜幼苗年。总之,叶片δ 13 C受种子大小,幼苗出苗时间以及光和水的有效利用的影响,但是叶片δ 13 C与第一年的生长无关。 ,这直接取决于种子储备的数量。

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