Morphological and phenological shifts in the Plantago lanceolata L. species as linked to climate change over the past 100 years

IF 0.6 Q4 ECOLOGY
Hacquetia Pub Date : 2020-06-25 DOI:10.2478/hacq-2020-0006
S. Prokhorova, M. Netsvetov
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引用次数: 0

Abstract

Abstract Herbarium collections have proven to be irreplaceable information base in recent studies directed towards revealing shifts in plants phenology and morphology caused by climate change. We examined eight parameters of morphological traits in the perennial herb species Plantago lanceolata L. collected in the wild between 1905 and 2019 and stored at the KW-herbarium (Kyiv, Ukraine) to find out if there were changes in plants’ organ sizes during the last 114 years. For this period, we also calculated 13 climatic parameters obtained from meteorological records from the State archive that gave us the opportunity to check if there are any relations between the climate change in Kyiv region and shifts in morphological parameters of plants. Our results have shown Plantago lanceolata leaf blades, petioles and spikes had become significantly longer with time, increasing 3.0 cm, 2.1 cm and 0.6 cm respectively. The Co-inertia analysis revealed that 34% of the morphological changes was attributed to climate change. The analysis also demonstrated that leaf length correlated more with raised temperatures when plants were in flower, while spike length depended on the temperatures during bud development. Received knowledge can be used to reveal rapid evolutionary processes of the Plantago species and predicting their further course for the construction of historical climate models based on the leaves traits.
Plantago lanceolata L.物种在过去100年中与气候变化有关的形态和酚学变化
摘要在揭示气候变化引起的植物物候和形态变化的研究中,植物标本室已被证明是不可替代的信息库。研究了1905年至2019年野外采集的多年生草本植物车前草(Plantago lanceolata L.)的8个形态特征参数,以了解在过去的114年里植物的器官大小是否发生了变化。在此期间,我们还计算了从国家档案馆的气象记录中获得的13个气候参数,这使我们有机会检查基辅地区的气候变化与植物形态参数的变化之间是否存在任何关系。结果表明,随着时间的推移,车前草叶片、叶柄和穗状花序的长度显著增加,分别增加了3.0 cm、2.1 cm和0.6 cm。共惯性分析显示,34%的形态变化归因于气候变化。分析还表明,叶片长度与植物开花时的温度升高有关,而穗长与芽发育期间的温度有关。已知的知识可以用来揭示车前草物种的快速进化过程,并预测其进一步的进程,为基于叶片特征的历史气候模型的构建提供依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Hacquetia
Hacquetia Agricultural and Biological Sciences-Forestry
CiteScore
1.50
自引率
20.00%
发文量
20
审稿时长
14 weeks
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