Flowering seasonality and airborne pollen recent trends in Sierra de las Nieves, the southernmost National Park in continental Spain

IF 5.6 1区 农林科学 Q1 AGRONOMY Agricultural and Forest Meteorology Pub Date : 2024-11-05 DOI:10.1016/j.agrformet.2024.110295
Enrique de Gálvez-Montañez, M. Mar Trigo, Marta Recio, Antonio Picornell
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Abstract

Sierra de las Nieves is the southernmost National Park in continental Spain and, in a global warming scenario, it is important to determine the impacts of climatic variations on the vegetation, with special relevance to their reproductive cycles. The flowering seasonality and intensity of the dominant anemophilous species usually reflect the response of the vegetation to climate variations, which can be monitored through the atmospheric pollen concentrations. In this study, airborne pollen was analysed for 6 years (2018–2023). A pollen calendar was elaborated to show the flowering seasonality and intensity of the dominant anemophilous taxa. Spring was the season with the highest airborne pollen diversity and intensity, Quercus being the pollen type with the highest concentrations. We observed that weather conditions influenced the presence of airborne pollen. Precipitation and relative humidity reduce pollen concentrations, while temperature rises increase them during the pre-peak period and reduce them during the post-peak. Wind dynamics play different roles depending on the pollen type considered given the heterogeneous distribution of the pollen emission sources. Significant advances were detected in the start date of the main pollen season of Quercus and Olea, as well as in the peak date of Quercus. On the contrary, other taxa such as Pinus or Poaceae did not show any trend. This brings to the fore that the responses to climatic variations may differ from one taxon to another, a continuous study in natural areas being required for detecting possible changes in the observed trends.
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西班牙大陆最南端国家公园 Sierra de las Nieves 的开花季节性和空气中花粉的最新趋势
尼维斯山脉是西班牙大陆最南端的国家公园,在全球变暖的情况下,确定气候变化对植被的影响非常重要,尤其是对植被的繁殖周期的影响。主要嗜蚊物种的开花季节和强度通常反映了植被对气候变化的反应,这可以通过大气中的花粉浓度进行监测。本研究分析了 6 年(2018-2023 年)的空气花粉。制定了花粉日历,以显示主要嗜风媒类群的开花季节和强度。春季是空气传播花粉多样性和强度最高的季节,柞树是浓度最高的花粉类型。我们观察到,天气条件影响了空气中花粉的存在。降水和相对湿度会降低花粉浓度,而气温升高则会在高峰前期增加花粉浓度,并在高峰后期降低花粉浓度。由于花粉排放源的分布不均,风的动态作用取决于所考虑的花粉类型。柞树和油茶的主要花粉季节开始日期以及柞树的高峰日期都有明显提前。相反,其他分类群(如松科或坡科)没有显示出任何趋势。由此可见,不同类群对气候变化的反应可能不同,需要在自然区域进行持续研究,以发现观察到的趋势中可能出现的变化。
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来源期刊
CiteScore
10.30
自引率
9.70%
发文量
415
审稿时长
69 days
期刊介绍: Agricultural and Forest Meteorology is an international journal for the publication of original articles and reviews on the inter-relationship between meteorology, agriculture, forestry, and natural ecosystems. Emphasis is on basic and applied scientific research relevant to practical problems in the field of plant and soil sciences, ecology and biogeochemistry as affected by weather as well as climate variability and change. Theoretical models should be tested against experimental data. Articles must appeal to an international audience. Special issues devoted to single topics are also published. Typical topics include canopy micrometeorology (e.g. canopy radiation transfer, turbulence near the ground, evapotranspiration, energy balance, fluxes of trace gases), micrometeorological instrumentation (e.g., sensors for trace gases, flux measurement instruments, radiation measurement techniques), aerobiology (e.g. the dispersion of pollen, spores, insects and pesticides), biometeorology (e.g. the effect of weather and climate on plant distribution, crop yield, water-use efficiency, and plant phenology), forest-fire/weather interactions, and feedbacks from vegetation to weather and the climate system.
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