Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun, Mengla, Yunnan 666303, China.
Tree Physiol. 2012 Apr;32(4):414-22. doi: 10.1093/treephys/tps028. Epub 2012 Apr 11.
Despite considerable investigations of diurnal water use characteristics in different plant functional groups, the research on daily water use strategies of woody bamboo grasses remains lacking. We studied the daily water use and gas exchange of Sinarundinaria nitida (Mitford) Nakai, an abundant subtropical bamboo species in Southwest China. We found that the stem relative water content (RWC) and stem hydraulic conductivity (K(s)) of this bamboo species did not decrease significantly during the day, whereas the leaf RWC and leaf hydraulic conductance (K(leaf)) showed a distinct decrease at midday, compared with the predawn values. Diurnal loss of K(leaf) was coupled with a midday decline in stomatal conductance (g(s)) and CO(2) assimilation. The positive root pressures in the different habitats were of sufficient magnitude to refill the embolisms in leaves. We concluded that (i) the studied bamboo species does not use stem water storage for daily transpiration; (ii) diurnal down-regulation in K(leaf) and gs has the function to slow down potential water loss in stems and protect the stem hydraulic pathway from cavitation; (iii) since K(leaf) did not recover during late afternoon, refilling of embolism in bamboo leaves probably fully depends on nocturnal root pressure. The embolism refilling mechanism by root pressure could be helpful for the growth and persistence of this woody monocot species.
尽管对不同植物功能群的日用水特性进行了大量研究,但木质竹草种的日用水策略研究仍有所欠缺。我们研究了中国西南地区丰富的亚热带竹种——慈竹(Sinarmundinaria nitida (Mitford) Nakai)的日用水和气体交换。我们发现,与清晨值相比,这种竹子的茎相对含水量(RWC)和茎水力传导度(K(s))在白天并没有明显下降,而叶片 RWC 和叶片水力传导度(K(leaf))在中午明显下降。K(leaf)的日损失与中午气孔导度(g(s))和 CO(2)同化的下降有关。不同生境中正值的根压足以补充叶片中的栓塞。我们得出结论:(i)研究的竹种不使用茎部水分储存来进行日常蒸腾;(ii)K(leaf)和 gs 的日下调具有减缓茎部潜在水分损失和保护茎部水力通道免受空化的功能;(iii)由于 K(leaf)在下午晚些时候没有恢复,因此竹叶片中栓塞的填充可能完全依赖于夜间的根压。根压的栓塞填充机制可能有助于这种木本单子叶植物的生长和生存。