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Maximised photosynthetic capacity and decreased hydraulic failure risk during aging in the clump bamboo, Bambusa chungii

机译:在丛林竹子,Bambusa chunii期间,最大化的光合容量和液压失效风险减少

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摘要

To assess the water use of a clumped bamboo species, we investigated water use, physiological responses and structural changes related to culm aging in the clumped bamboo species Bambusa chungii McClure. Anisohydric behaviour was characterised by the independent stomatal conductance (g(s)) to leaf water potential ((L)), and the low stomatal sensitivity (-m) in the young (0.52) and mature groups together with the aged group (0.41): g(s) was negatively related to intercellular CO2 (C-i), especially during the dry season (R-2=0.62). Hydraulic conductivity (k(s)) decreased by 57.9 and 58.8% in the mature and aged groups. This was accompanied by a leaf area (A(L)) decrease of 55.7 and 63.7% and a water transport path (h) reduction of 8.5 and 23.3% to maintain the hydraulic safety. The net photosynthetic rate (A(n)) was similar among the three age groups even during the dry season when water deficits occurred. The observed increase in chlorophyll content (5.3% greater for the mature group) and stomata density (7.4 and 8.1% greater for the mature and aged groups) with age might compensation the reduced whole culm carbon assimilation caused by decreased A(L). Physiological and structural regulation contributes to the fitness of B. chungii.
机译:为了评估丛生竹种的用水,我们调查了与Clumped Bamams竹菌Bambusa Chungii McClure有关的水使用,生理反应和与秆衰老相关的结构变化。异液行为的特征在于将叶片水电位(G(S))((1))和杨氏气孔敏感(-M)与年龄组(0.41 ):g(s)与细胞间CO 2(CI)呈负相关,特别是在干燥季节(R-2 = 0.62)。液压导电性(K(S))在成熟和老年的组中降低57.9和58.8%。这伴有叶面积(a(l))减少55.7%和63.7%,水运输路径(h)减少8.5和23.3%,以保持液压安全性。净光合速率(A(n))甚至在旱季发生时,在旱季发生时也是相似的。观察到的叶绿素含量的增加(成熟组的5.3%)和气孔密度随着年龄的增长可能会补偿由降低的A(L)引起的整个秆碳同化的减少。生理和结构调节有助于B. chungii的适应性。

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