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温带森林树木叶片气体交换与木质部空化脆弱性之间的功能协调

Functional coordination between leaf gas exchange and vulnerability to xylem cavitation in temperate forest trees.

作者信息

Maherali Hafiz, Moura Catarina E, Caldeira Maria C, Willson Cynthia J, Jackson Robert B

机构信息

Department of Integrative Biology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

出版信息

Plant Cell Environ. 2006 Apr;29(4):571-83. doi: 10.1111/j.1365-3040.2005.01433.x.

Abstract

We examined functional coordination among stem and root vulnerability to xylem cavitation, plant water transport characteristics and leaf traits in 14 co-occurring temperate tree species. Relationships were evaluated using both traditional cross-species correlations and phylogenetically independent contrast (PIC) correlations. For stems, the xylem tension at which 50% of hydraulic conductivity was lost (psi50) was positively associated (P < 0.001) with specific conductivity (K(S)) and with mean hydraulically weighted xylem conduit diameter (D(h-w)), but was only marginally (P = 0.06) associated with leaf specific conductivity (K(L)). The PIC correlation for each of these relationships, however, was not statistically significant. There was also no relationship between root psi50 and root K(S) in either cross-species or PIC analysis. Photosynthetic rate (A) and stomatal conductance (g(s)) were strongly and positively correlated with root psi50 in the cross-species analysis (P < 0.001), a relationship that was robust to phylogenetic correction (P < 0.01). A and g(s) were also positively correlated with stem psi50 in the cross-species analysis (P = 0.02 and 0.10, respectively). However, only A was associated with stem psi50 in the PIC analysis (P = 0.04). Although the relationship between vulnerability to cavitation and xylem conductivity traits within specific organs (i.e. stems and roots) was weak, the strong correlation between g(s) and root psi50 across species suggests that there is a trade-off between vulnerability to cavitation and water transport capacity at the whole-plant level. Our results were therefore consistent with the expectation of coordination between vulnerability to xylem cavitation and the regulation of stomatal conductance, and highlight the potential physiological and evolutionary significance of root hydraulic properties in controlling interspecific variation in leaf function.

摘要

我们研究了14种共生温带树种的茎和根对木质部空穴化的脆弱性、植物水分运输特征和叶片性状之间的功能协调性。使用传统的跨物种相关性和系统发育独立对比(PIC)相关性来评估它们之间的关系。对于茎而言,水力传导率损失50%时的木质部张力(psi50)与比导率(K(S))以及平均水力加权木质部导管直径(D(h-w))呈正相关(P < 0.001),但与叶片比导率(K(L))仅呈微弱相关(P = 0.06)。然而,这些关系的PIC相关性均无统计学意义。在跨物种分析或PIC分析中,根的psi50与根的K(S)之间也不存在关系。在跨物种分析中,光合速率(A)和气孔导度(g(s))与根的psi50呈强正相关(P < 0.001),这种关系在系统发育校正后依然稳健(P < 0.01)。在跨物种分析中,A和g(s)与茎的psi50也呈正相关(分别为P = 0.02和0.10)。然而,在PIC分析中只有A与茎的psi50相关(P = 0.04)。尽管特定器官(即茎和根)内空穴化脆弱性与木质部传导性状之间的关系较弱,但跨物种的g(s)与根的psi50之间的强相关性表明,在整株植物水平上,空穴化脆弱性与水分运输能力之间存在权衡。因此,我们的结果与木质部空穴化脆弱性和气孔导度调节之间协调性的预期一致,并突出了根水力特性在控制叶片功能种间变异方面潜在的生理和进化意义。

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