The Relationships between Climate, Tree-Ring Growth, and Cone Production in Longleaf Pine

Q4 Agricultural and Biological Sciences
Kimberly A. Bowman, Xiongwen Chen
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引用次数: 0

Abstract

Historically abundant longleaf pine (Pinus palustris Mill.) trees were once a leading source of profit and ecosystem services across the southeastern United States. The widespread decline in longleaf numbers following European colonization has prompted substantial restoration efforts, though much is still not understood about longleaf growth and reproductive processes. In this study, we used Pearson and regression correlation analysis to quantify the relationship between cone production, radial growth, and climate signals in longleaf pine trees at three sites across their range. We documented a high amount of intersite variability; trees at all three sites experienced significant relationships between reproduction, radial growth, and climate, though in different and sometimes contrasting ways. We found a roughly equivalent number of significant cone growth and climate correlations with extreme climate events (e.g., heat stress, hurricane frequency) as with average climate conditions, and highlight the need to consider both over multiple spans of time. This study provides a new understanding of how climate variables relate to the relationship between growth and reproduction in longleaf pine trees.
气候、年轮生长与长叶松球果生产的关系
历史上丰富的长叶松(Pinus palustris Mill.)树木曾经是美国东南部利润和生态系统服务的主要来源。欧洲殖民后,长叶植物数量的广泛下降促使了大量的恢复努力,尽管对长叶植物的生长和繁殖过程仍有很多不了解。在本研究中,我们使用Pearson和回归相关分析来量化长叶松的球果产量、径向生长和气候信号之间的关系。我们记录了大量的站点间变异性;这三个地点的树木都经历了繁殖、径向生长和气候之间的重要关系,尽管方式不同,有时甚至是截然相反。我们发现,与平均气候条件相比,极端气候事件(如热应力、飓风频率)与显著的锥体生长和气候相关性的数量大致相当,并强调需要在多个时间跨度内考虑这两者。该研究为气候变量与长叶松生长与繁殖关系的关系提供了新的认识。
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
International Journal of Plant Biology
International Journal of Plant Biology Agricultural and Biological Sciences-Plant Science
CiteScore
2.00
自引率
0.00%
发文量
44
审稿时长
10 weeks
期刊介绍: The International Journal of Plant Biology is an Open Access, online-only, peer-reviewed journal that considers scientific papers in all different subdisciplines of plant biology, such as physiology, molecular biology, cell biology, development, genetics, systematics, ecology, evolution, ecophysiology, plant-microbe interactions, mycology and phytopathology.
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