Germination temperature sensitivity differs between co-occurring tree species and climate origins resulting in contrasting vulnerability to global warming.

Q3 Agricultural and Biological Sciences Plant-environment interactions (Hoboken, N.J.) Pub Date : 2023-06-01 DOI:10.1002/pei3.10108
João C Filipe, Collin C Ahrens, Margaret Byrne, Giles Hardy, Paul D Rymer
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Abstract

Climate change is shifting temperatures from historical patterns, globally impacting forest composition and resilience. Seed germination is temperature-sensitive, making the persistence of populations and colonization of available habitats vulnerable to warming. This study assessed germination response to temperature in foundation trees in south-western Australia's Mediterranean-type climate forests (Eucalyptus marginata (jarrah) and Corymbia calophylla (marri)) to estimate the thermal niche and vulnerability among populations. Seeds from the species' entire distribution were collected from 12 co-occurring populations. Germination thermal niche was investigated using a thermal gradient plate (5-40°C). Five constant temperatures between 9 and 33°C were used to test how the germination niche (1) differs between species, (2) varies among populations, and (3) relates to the climate of origin. Germination response differed among species; jarrah had a lower optimal temperature and thermal limit than marri (T o 15.3°C, 21.2°C; ED50 23.4°C, 31°C, respectively). The thermal limit for germination differed among populations within both species, yet only marri showed evidence for adaptation to thermal origins. While marri has the capacity for germination at higher thermal temperatures, jarrah is more vulnerable to global warming exceeding safety margins. This discrepancy is predicted to alter species distributions and forest composition in the future.

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发芽温度敏感性在共生树种和气候起源之间存在差异,从而导致对全球变暖的不同脆弱性。
气候变化正在改变历史模式的温度,对全球森林的组成和恢复力产生影响。种子发芽对温度敏感,这使得种群的持续存在和可用栖息地的殖民化容易受到变暖的影响。本研究评估了澳大利亚西南部地中海型气候森林(边缘桉(Eucalyptus marginata, jarrah)和山茱萸(Corymbia calophylla, marri)基础树发芽对温度的响应,以估计种群间的热生态位和脆弱性。从12个共存种群中收集了该物种整个分布的种子。采用热梯度板(5-40℃)研究萌发热生态位。在9 ~ 33℃的5个恒定温度下,研究了种子萌发生态位(1)在物种之间的差异,(2)在种群之间的差异,以及(3)与原产地气候的关系。萌发响应在不同物种间存在差异;jarrah的最佳温度和热极限低于marri(15.3°C, 21.2°C;ED50 23.4°C, 31°C)。种子萌发的热极限在两个物种的种群之间存在差异,但只有marri显示出对热源的适应证据。虽然马利有能力在较高的热温度下发芽,但jarrah更容易受到超过安全范围的全球变暖的影响。这种差异预计将在未来改变物种分布和森林组成。
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来源期刊
CiteScore
2.70
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0.00%
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0
审稿时长
15 weeks
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