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季节性环境温度对具有生理休眠特性物种的火刺激萌发的影响:以博洛尼亚属(芸香科)为例的案例研究

The Effect of Seasonal Ambient Temperatures on Fire-Stimulated Germination of Species with Physiological Dormancy: A Case Study Using Boronia (Rutaceae).

作者信息

Mackenzie Berin D E, Auld Tony D, Keith David A, Hui Francis K C, Ooi Mark K J

机构信息

Centre for Ecosystem Science, University of New South Wales, Kensington, NSW, 2052, Australia.

Ecosystem Management Science, Office of Environment and Heritage (NSW), PO Box 1967, Hurstville, NSW, 2220, Australia.

出版信息

PLoS One. 2016 May 24;11(5):e0156142. doi: 10.1371/journal.pone.0156142. eCollection 2016.

Abstract

Dormancy and germination requirements determine the timing and magnitude of seedling emergence, with important consequences for seedling survival and growth. Physiological dormancy is the most widespread form of dormancy in flowering plants, yet the seed ecology of species with this dormancy type is poorly understood in fire-prone vegetation. The role of seasonal temperatures as germination cues in these habitats is often overlooked due to a focus on direct fire cues such as heat shock and smoke, and little is known about the combined effects of multiple fire-related cues and environmental cues as these are seldom assessed in combination. We aimed to improve understanding of the germination requirements of species with physiological dormancy in fire-prone floras by investigating germination responses across members of the Rutaceae from south eastern Australia. We used a fully factorial experimental design to quantify the individual and combined effects of heat shock, smoke and seasonal ambient temperatures on germination of freshly dispersed seeds of seven species of Boronia, a large and difficult-to-germinate genus. Germination syndromes were highly variable but correlated with broad patterns in seed morphology and phylogenetic relationships between species. Seasonal temperatures influenced the rate and/or magnitude of germination responses in six species, and interacted with fire cues in complex ways. The combined effects of heat shock and smoke ranged from neutral to additive, synergistic, unitive or negative and varied with species, seasonal temperatures and duration of incubation. These responses could not be reliably predicted from the effect of the application of single cues. Based on these findings, fire season and fire intensity are predicted to affect both the magnitude and timing of seedling emergence in wild populations of species with physiological dormancy, with important implications for current fire management practices and for population persistence under climate change.

摘要

休眠和萌发需求决定了幼苗出土的时间和规模,对幼苗的存活和生长具有重要影响。生理休眠是开花植物中最普遍的休眠形式,然而在易发生火灾的植被中,具有这种休眠类型的物种的种子生态学却鲜为人知。由于关注热激和烟雾等直接火灾信号,季节性温度作为这些栖息地萌发信号的作用常常被忽视,而且对于多种与火灾相关的信号和环境信号的综合影响知之甚少,因为很少对它们进行综合评估。我们旨在通过研究澳大利亚东南部芸香科成员的萌发反应,增进对易发生火灾植物区系中具有生理休眠物种的萌发需求的了解。我们采用完全析因实验设计,来量化热激、烟雾和季节性环境温度对七种博洛尼亚属植物(一个大型且难以萌发的属)新散落种子萌发的单独和综合影响。萌发综合征高度可变,但与种子形态的广泛模式以及物种间的系统发育关系相关。季节性温度影响了六个物种的萌发反应速率和/或规模,并以复杂的方式与火灾信号相互作用。热激和烟雾的综合影响从中性到相加、协同、统一或负面不等,且因物种、季节性温度和培养持续时间而异。这些反应无法从单一信号应用的效果可靠地预测出来。基于这些发现,预计火灾季节和火灾强度将影响具有生理休眠物种野生种群中幼苗出土的规模和时间,这对当前的火灾管理实践以及气候变化下的种群持续性具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1f1/4878767/503dfb90bf07/pone.0156142.g001.jpg

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