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Hydraulic properties and photosynthetic rates in co-occurring lianas and trees in a seasonal tropical rainforest in southwestern China

机译:中国西南地区一种季节性热带雨林中同时存在的藤本植物和树木的水力特性和光合速率

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摘要

In this study, we examined wood anatomy, hydraulic properties, photosynthetic rate, and water status and osmotic regulation in three liana species and three tree species co-occurring in a seasonal tropical rain forest. Our results showed that the three liana species had larger vessel diameter, lower sapwood density, and consequently higher branch sapwood specific hydraulic conductivity (K S) than the three tree species. Across species, K S was positively correlated with leaf nitrogen concentration and maximum net CO assimilation rate. However, it was also positively correlated with xylem water potential at 50% loss of hydraulic conductivity, indicating a trade-off between hydraulic efficiency and safety. Compared to the tree species, the liana species had higher predawn leaf water potential and lower osmotic adjustment in the dry season. The combination of more efficient water transport, higher photosynthetic rates, and their ability to access to more reliable water source at deeper soil layers in the dry season in the lianas should contribute to their fast growth.
机译:在这项研究中,我们研究了季节性热带雨林中同时存在的三种藤本植物和三种树种的木材解剖结构,水力特性,光合速率以及水分状况和渗透调节。我们的结果表明,三种藤本植物具有比三种树种更大的容器直径,更低的边材密度,因此具有更高的分支边材比水导率(KS)。在所有物种中,K S与叶片氮浓度和最大净CO同化率呈正相关。但是,在水力传导率损失50%时,它与木质部水势也呈正相关,表明在水力效率和安全性之间进行了权衡。与树木相比,藤本植物在干旱季节具有较高的黎明前叶片水势和较低的渗透调节作用。在藤本植物的干旱季节,更有效的水运输,更高的光合速率以及在更深的土壤层获得更可靠水源的能力的结合,应有助于它们的快速生长。

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