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Diversity and management effects on forest evolution - TREEvolution

Diversity and management effects on forest evolution - TREEvolution
多样性和管理对森林演化的影响 - TREEvolution
批准号:
512413528
负责人:
Professorin Dr. Katrin Heer
金额:
$0.0万
依托单位国家:
德国
项目类别:
Infrastructure Priority Programmes
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:

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中文摘要
翻译
森林覆盖了近40%的欧洲,是我们文化景观中最多样化和物种最丰富的栖息地之一。森林还通过其对气候强迫的地球物理反馈对区域气候产生重大影响,并提供各种生态系统服务。然而,极端天气事件,如德国2018年至2020年春季和夏季的干旱,威胁着中欧森林的健康,从而威胁着森林的生态系统功能。欧洲水青冈仍然是中欧最重要的森林树种,在这些干旱之后受到严重损害。然而,它很快就变得明显,即使在看台上的树木对干旱的反应变化很大,干旱受损的树木邻近健康的树木,从而表明一个基因型背景。大多数林木的一个共同的生活史特征是种子的大量终生生产与众所周知的大的长期遗传变异相结合,为选择提供了坚实的基础。假设极端年份的频率增加,这种选择将确保山毛榉林在未来更好地适应初夏干旱事件。随着染色体水平的山毛榉基因组的可用性和独特的实验设置的生物多样性探索,我们计划调查的山毛榉种群的基因组多样性动态之间的生命阶段(幼苗,树苗和成年树)在一个大的代表性样本使用所有山毛榉包含实验森林地块的生物多样性探索。我们的目标是确定人口统计过程和基因选择,调查森林管理的影响和建立的一年,使用FOX多站点实验,应用减少代表性和低覆盖率测序方法。考虑到大量的非生物和生物环境变量可能会影响对山毛榉幼苗和树苗的选择,生物多样性探索站为TREEvolution提供了一个完美的环境,这是由于在这些相同的网站上以前和正在进行的研究提供了大量的数据。反过来,我们将提供全基因组的多样性信息的关键物种之一,在实验地块中,它是存在的。TREEvolution将提供对幼树年龄进化动力学的见解,这将塑造我们未来森林的抵抗力和恢复力。这将有助于我们了解山毛榉林是否以及如何快速地进化跟踪当前的气候变化,并能够适应当前的标准造林管理。
英文摘要
Forests cover nearly 40% of Europe and are among the most diverse and species-rich habitats in our cultural landscape. Forests also exert a significant influence on regional climates through their biogeophysical feedbacks to climate forcing and provide various ecosystem services. However, extreme weather events, like the drought during spring and summer in the years 2018 to 2020 in Germany, threaten the health and thus the ecosystem functioning of forests in central Europe. Fagus sylvatica, still the most important forest tree species in Central Europe, showed significant damages following these droughts. However, it became quickly evident, that even within stands tree reactions to the drought varied substantially with drought-damaged trees neighboring healthy trees and thus suggesting a genotypic background. One life-history trait common to most forest trees is the massive life-time production of seeds combined with a well-known large standing genetic variation, offering a substantial basis for selection to act upon. Assuming that extreme years increase in frequency, such selection would ensure that beech forests in the future are better adapted to early summer drought events. With the availability of a chromosome-level beech genome and the unique experimental setup of the Biodiversity-Exploratories, we plan to investigate the genomic diversity dynamics in beech populations among life stages (seedlings, saplings and adult trees) across a large representative sample using all beech-containing Experimental Forest Plots of the Biodiversity-Exploratories. We aim at identifying the demographic processes and genes under selection, investigate the effects of forest management and the year of establishment using the FOX multi-site experiment, applying reduced-representation and low-coverage sequencing methods. Given the multitude of abiotic and biotic environmental variables that potentially can influence the selection acting on beech seedlings and saplings, the Biodiversity-Exploratories provide a perfect environment for TREEvolution, due to the large amount of data available from previous and ongoing research on these same sites. In turn, we will provide genome-wide diversity information for one of the key-species in the Experimental plots in which it is present. TREEvolution will provide insights into the evolutionary dynamics at young tree age, which shape the resistance and resilience of our forests of tomorrow. This will help us to understand if and how fast beech forests can evolutionarily track the current climatic changes, and to be able to adapt the current standard silvicultural management.
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Vertical stratification of plant-animal interactions and their impact on pollination and seed dispersal within a single Neotropical plant species
Effect of primate seed dispersal on the spatial genetic structure of a Neotropical tree species
SP1 - Epigenetic acclimation to abiotic and biotic stress in clonal oaks.
国内基金
海外基金
城镇居民亚健康状态的评价方法学及健康管理模式研究
  • 批准号:
    81172775
  • 项目类别:
    面上项目
  • 资助金额:
    14.0万元
  • 批准年份:
    2011
  • 负责人:
    许军
  • 依托单位:
数字版权管理中数字权利传播的小世界网络建模及风险控制
  • 批准号:
    61003234
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    19.0万元
  • 批准年份:
    2010
  • 负责人:
    张志勇
  • 依托单位:
海拔对榕小蜂群落多样性及榕-蜂互惠体系的影响
海岸带综合管理与可持续发展模式研究
  • 批准号:
    70573018
  • 项目类别:
    面上项目
  • 资助金额:
    20.0万元
  • 批准年份:
    2005
  • 负责人:
    吴伟
  • 依托单位: