Effect of low light condition on the growth and carbon use of legume seedlings

Citra Gilang Qur’ani, K. Yoshimura
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Abstract

Abstract. Qur’ani CG, Yoshimura K. 2020. Effect of low light condition on the growth and carbon use of legume seedlings. Asian J For 5: 51-59. Plants exhibit flexible changes of morphological and physiological traits to adapt to low light environments. However, the interaction between growth, functional traits among plant organs, and non-structural carbohydrates (NSCs) concentration to determine the adaptation strategies remain unclear. Three legume- and shade-intolerant species, Robinia pseudoacacia (L.), Falcataria moluccana (Miq.), and Acacia mangium (Willd.) were grown under full light (open) and 15% of light availability (shade). Changes in shoot length, diameter, organ respiration rates, and NSCs concentration were observed throughout 6 months of the growing period. Only R. pseudoacacia developed longer (13.67%) and bigger (26.61%) shoots in open sites than shade sites. Specific Leaf Area (SLA) and Specific Root Area (SRA) were bigger in shade than in open site for all species (SLA=±2 times; SRA=±1-4 times). Dry mass, respiration rates, and NSCs in R. pseudoacacia were allocated more to the roots but were more to the leaves in F. moluccana and A. mangium. Based on the interactions among morphological and physiological parameters, our results show that different legume species develop specific growth, morphological traits and carbon use (NSCs) under shade conditions, which exhibit flexibility changes as part of adaptation strategy to the low-light environment.
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弱光条件对豆科植物幼苗生长和碳利用的影响
摘要古安尼CG,吉村K. 2020。弱光条件对豆科植物幼苗生长和碳利用的影响。亚洲J: 5:51 -59。为适应弱光环境,植物表现出灵活的形态和生理变化。然而,植物器官之间的生长、功能性状和非结构性碳水化合物(NSCs)浓度之间的相互作用对适应策略的影响尚不清楚。在全光(开放)和15%光效(遮荫)条件下生长3种不耐豆科植物和遮荫的树种:刺槐(Robinia pseudoacacia, L.)、假黄豆(Falcataria moluccana, Miq.)和相思(Acacia mangium,野生)。在6个月的生长期内,观察到茎长、直径、器官呼吸速率和NSCs浓度的变化。只有遮荫地刺槐的新梢长(13.67%),大(26.61%)。所有树种的比叶面积(SLA)和比根面积(SRA)均大于露天立地(SLA=±2倍);SRA =±1 - 4次)。干质量、呼吸速率和NSCs在刺槐中更多地分配给根,而在黄颡鱼和mangium中更多地分配给叶。基于形态和生理参数之间的相互作用,我们的研究结果表明,不同豆科植物在荫蔽条件下发展出特定的生长、形态特征和碳利用(NSCs),这些特征表现出灵活性变化,是对低光环境的适应策略的一部分。
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