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Bud damage from controlled heat treatments in Quercus garryana

机译:栎属加里纳纳州受控热处理对芽造成的损害

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摘要

Quercus garryana habitats are increasingly being managed with prescribed fire, but acorn dependent wildlife might be adversely affected if fires damage acorn crops. We examined one way that fire might affect subsequent acorn crops: through direct heating and damage of buds containing the following year's floral organs. We measured internal bud temperatures during controlled time and temperature treatments, described damage to heated buds at the tissue and cellular levels and quantified spring flowering to assess the consequences of the treatments. We found that internal bud temperature was logarithmically related to exposure time and linearly related to treatment temperature. Tissue damage was more common in bud scales, staminate and bud scale scar primordia than in leaf, pistillate, leaf axillary primordia and apical meristems. Damaged tissues were sequestered by cells with thickened cell walls. A 133A degrees C treatment applied for 60 s produced minimal damage or mortality, but damage increased rapidly in hotter or longer treatments, culminating in 100% mortality at 273A degrees C for 60 s. Our experiments account only for radiative, not convective heating, but suggest that fires might produce sublethal effects that affect flowering and acorn crops. Q. garryana's large buds possess an internal organ arrangement well suited to minimizing heat damage.
机译:越来越多地使用明火管理栎属植物的栖息地,但是如果大火破坏了橡子作物,那么依赖橡子的野生动植物可能会受到不利影响。我们研究了火灾可能影响随后的橡子作物的一种方式:直接加热并破坏含有次年花器官的芽。我们在受控的时间和温度处理过程中测量了内部芽的温度,描述了组织和细胞水平上受热芽的损伤,并定量了春季开花以评估处理的后果。我们发现内部芽的温度与暴露时间呈对数关系,与处理温度呈线性关系。组织损伤在芽鳞,雄蕊和芽鳞疤原基中比在叶片,雌蕊,叶腋基原基和顶端分生组织中更常见。受损的组织被细胞壁增厚的细胞隔离。 133A摄氏度的处理持续60 s所产生的损害或死亡率极低,但在较热或更长时间的处理中损害迅速增加,最终在273A摄氏度下60 s达到100%的死亡率。我们的实验仅说明了辐射加热,而不是对流加热,但表明大火可能产生致命效应,从而影响开花和橡子作物。 Q. garryana的大芽具有内部器官排列,非常适合于最大程度地减少热损伤。

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