Kunming Institute of Botany, Chinese Academy of Sciences, Kunming 650204, China.
J Plant Res. 2011 Mar;124(2):289-98. doi: 10.1007/s10265-010-0372-z. Epub 2010 Aug 14.
Paphiopedilum and Cypripedium are closely related in phylogeny, but have contrasting leaf traits and habitats. To understand the divergence in leaf traits of Paphiopedilum and Cypripedium and their adaptive significance, we analyzed the leaf anatomical structures, leaf dry mass per area (LMA), leaf lifespan (LL), leaf nitrogen concentration (N (mass)), leaf phosphorus concentration (P (mass)), mass-based light-saturated photosynthetic rate (A (mass)), water use efficiency (WUE), photosynthetic nitrogen use efficiency (PNUE) and leaf construction cost (CC) for six species. Compared with Cypripedium, Paphiopedilum was characterized by drought tolerance derived from its leaf anatomical structures, including fleshy leaves, thick surface cuticles, huge adaxial epidermis cells, lower total stoma area, and sunken stomata. The special leaf structures of Paphiopedilum were accompanied by longer LL; higher LMA, WUE, and CC; and lower N (mass), P (mass), A (mass), and PNUE compared with Cypripedium. Leaf traits in Paphiopedilum helped it adapt to arid and nutrient-poor karst habitats. However, the leaf traits of Cypripedium reflect adaptations to an environment characterized by rich soil, abundant soil water, and significant seasonal fluctuations in temperature and precipitation. The present results contribute to our understanding of the divergent adaptation of leaf traits in slipper orchids, which is beneficial for the conservation of endangered orchids.
兜兰和杓兰在系统发育上密切相关,但具有相反的叶特征和生境。为了理解兜兰和杓兰叶特征的分歧及其适应意义,我们分析了 6 个物种的叶解剖结构、叶比干质量(LMA)、叶寿命(LL)、叶氮浓度(N(质量))、叶磷浓度(P(质量))、以质量为基础的光饱和光合速率(A(质量))、水分利用效率(WUE)、光合氮利用效率(PNUE)和叶构建成本(CC)。与杓兰相比,兜兰的耐旱性源于其叶解剖结构,包括肉质叶片、厚的表面角质层、巨大的上表皮细胞、较低的总气孔面积和凹陷的气孔。兜兰特殊的叶结构伴随着更长的 LL;更高的 LMA、WUE 和 CC;以及更低的 N(质量)、P(质量)、A(质量)和 PNUE,与杓兰相比。兜兰的叶特征有助于其适应干旱和养分贫瘠的喀斯特生境。然而,杓兰的叶特征反映了对富含土壤、丰富土壤水分以及温度和降水显著季节性波动的环境的适应。本研究结果有助于我们理解拖鞋兰叶特征的分歧适应,这有利于濒危兰花的保护。