Krintza Nir, Dener Efrat, Seifan Merav
Albert Katz International School for Desert Studies, Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Midreshet Ben-Gurion 8499000, Israel.
Mitrani Department of Desert Ecology, Swiss Institute for Dryland Environment and Energy Research, Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Midreshet Ben-Gurion 8499000, Israel.
Plants (Basel). 2024 Jan 16;13(2):256. doi: 10.3390/plants13020256.
Variations in plant characteristics in response to habitat heterogeneity can provide valuable insights into the mechanisms governing plant responses to environmental conditions. In this study, we investigated the role of environmental factors associated with arid conditions in shaping the phenotypic responses of an arid annual plant, , across several populations found along an aridity gradient and across multiple spatial scales. Utilizing both field surveys and a net house experiment, we assessed the effects of environmental factors on trait variability within and between populations. The results indicated a significant convergence in plant height due to site aridity, reflecting growth potential based on abiotic resources. Convergence was also observed in the plant's electrolyte leakage with aridity and in plant height concerning soil salinity at specific sites. Phenotypic plasticity was pivotal in maintaining trait variability, with plant height plasticity increasing with soil salinity, SLA plasticity decreasing with aridity, and leaf number plasticity rising with aridity. In conclusion, our findings underscore the adaptive significance of phenotypic variability, especially plasticity, in arid conditions. Notably, trait variability and plasticity did not consistently diminish in stressful settings, emphasizing the adaptive value of flexible responses in such environments.
植物特征因生境异质性而产生的变化,能够为理解植物对环境条件的响应机制提供有价值的见解。在本研究中,我们调查了与干旱条件相关的环境因素在塑造一种干旱一年生植物( )表型响应中的作用,该植物分布于沿着干旱梯度的多个种群中,跨越了多个空间尺度。通过实地调查和网室实验,我们评估了环境因素对种群内部和种群之间性状变异性的影响。结果表明,由于立地干旱,株高出现显著趋同,这反映了基于非生物资源的生长潜力。在特定地点,随着干旱程度增加,植物的电解质渗漏也出现趋同,并且在土壤盐分方面株高也表现出趋同。表型可塑性在维持性状变异性方面起着关键作用,株高可塑性随土壤盐分增加而增加,比叶面积可塑性随干旱程度增加而降低,叶数可塑性随干旱程度增加而升高。总之,我们的研究结果强调了表型变异性,尤其是可塑性,在干旱条件下的适应意义。值得注意的是,在胁迫环境中,性状变异性和可塑性并非始终降低,这强调了在这类环境中灵活响应的适应价值。