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Leaf hydraulic conductance is coordinated with leaf morpho-anatomical traits and nitrogen status in the genus Oryza

机译:稻谷属叶片的水导率与叶片的形态解剖特征和氮素状态协调一致

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摘要

Leaf hydraulic conductance (K leaf) is a major determinant of photosynthetic rate in plants. Previous work has assessed the relationships between leaf morpho-anatomical traits and K leaf with woody species, but there has been very little focus on cereal crops. The genus Oryza, which includes rice (Oryza sativa) and wild species (such as O. rufipogon cv. Griff), is ideal material for identifying leaf features associated with K leaf and gas exchange. Leaf morpho-anatomical traits, K leaf, leaf N content per leaf area, and CO2 diffusion efficiency were investigated in 11 Oryza cultivars. K leaf was positively correlated with leaf thickness and related traits, and therefore positively correlated with leaf mass per area and leaf N content per leaf area, and negatively with inter-veinal distance. K leaf was also positively correlated with leaf area and its related traits, and therefore negatively correlated with the proportion of minor vein length per area. In addition, coordination between K leaf and CO2 diffusion conductance in leaves was observed. We conclude that leaf morpho-anatomical traits and N content per leaf area strongly influence K leaf. Our results suggest that more detailed anatomical and structural studies are needed to elucidate the impacts of leaf feature traits on K leaf and gas exchange in grasses.
机译:叶片水力传导率(K叶片)是植物光合作用速率的主要决定因素。先前的工作已经评估了叶片形态解剖特征与木质植物钾叶之间的关系,但是很少关注谷物作物。 Oryza属包括水稻(Oryza sativa)和野生物种(例如O. rufipogon cv。Griff),是鉴定与K叶片和气体交换相关的叶片特征的理想材料。研究了11个水稻品种的叶片形态解剖特征,K叶片,每叶面积N含量和CO2扩散效率。钾叶与叶片厚度和相关性状呈正相关,因此与单位面积叶片质量和单位叶片面积氮含量呈正相关,与小叶间距离呈负相关。钾叶与叶面积及其相关性状也呈正相关,因此与单位面积次要脉长的比例呈负相关。此外,观察到钾叶与叶片中CO 2扩散电导之间的协调。我们得出的结论是,叶片的形态解剖特征和每叶面积的N含量会强烈影响K叶片。我们的结果表明,需要更详细的解剖和结构研究来阐明叶片特征性状对草中K叶片和气体交换的影响。

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