种子的相对位置对幼苗生长的影响受根-叶特性的影响

Jing Zhu, Xuelian Wang, Xing Jin, Lan Jiang, Hong-Yu Lin, Yang Hu, Jin-fu Liu, Zhong-Sheng He
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引用次数: 0

摘要

植物性状的变化表明植物对森林环境的适应性,研究植物性状与树木生长的关系可为森林再生提供宝贵的见解。植物种子在森林落叶层或土壤中的空间布局会对根叶性状的变化产生重要影响,从而影响新生幼苗的适应策略。然而,我们目前对不同相对位置的单个根叶性状对幼苗生长的影响以及这些性状是否共同影响生长的了解仍然有限。本研究以中国三明川栲自然保护区内的优势树种川栲为研究对象。本实验旨在研究幼苗根叶性状的变化,重点是种子在不同土层中的相对位置:在枯落物层之下或之上,或在裸土层(无枯落物)中。我们的研究结果提供了支持根和叶性状之间协调关系的证据,即在种子的相对位置上,叶的性状与根的性状共同发生变化。具体来说,我们观察到幼苗的特定叶面积和平均根直径值较高,而根组织密度较低。混合模型解释了根叶性状变异的 86.1%,超过了相对位置所解释的变异。此外,土壤氮作为一种介质,调节着幼苗生长和根叶性状之间的关系,特别是叶片干物质含量和根组织密度。因此,未来的研究应考虑根据根叶性状特征人为操纵树种多样性,以促进森林恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relative position of seeds driven the seedling growth are mediated by root - leaf traits
Variations in plant traits are indicative of plant adaptations to forest environments, and studying their relationships with tree growth provides valuable insights into forest regeneration. The spatial arrangement of plant seeds within the forest litter or soil critically influences the variations of root-leaf traits, thereby affecting the adaptive strategies of emerging seedlings. However, our current understanding of the impacts of individual root-leaf traits on seedling growth in different relative position, and whether these traits together affect growth, remains limited. This study focuses on the dominant tree species, Castanopsis kawakamii, within the Sanming C. kawakamii Nature Reserve of China. The present experiment aimed to examine the variations in root-leaf traits of seedling, focus on the relative positions of seeds within different layers: beneath or above the litter layer, or within the bare soil layer (without litter). Our findings contributed evidence supporting a coordinated relationship between root and leaf traits, wherein leaf traits vary in conjunction with root traits in the relative positions of seeds. Specifically, we observed that seedlings exhibited higher values for specific leaf area and average root diameter, while displaying lower root tissue density. The mixed model explained 86.1% of the variation in root-leaf traits, surpassing the variation explained by the relative positions. Furthermore, soil nitrogen acts as a mediator, regulating the relationship between seedling growth and root-leaf traits, specifically leaf dry matter content and root tissue density. Therefore, future studies should consider artificially manipulating tree species diversity based on root-leaf traits characteristics to promote forest recovery.
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