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柠条萌蘖高生长的限制因子。

Limits to the height growth of Caragana korshinskii resprouts.

机构信息

State Key Laboratory of Grassland Agro-ecosystems, Institute of Arid Agroecology, School of Life Sciences, Lanzhou University, Lanzhou 730000, Gansu Province, China.

出版信息

Tree Physiol. 2013 Mar;33(3):275-84. doi: 10.1093/treephys/tpt006. Epub 2013 Mar 5.

Abstract

Predawn leaf water potential (LWP), the LWP between 09:00 and 10:30 h (termed minimum LWP), stem xylem hydraulic conductivity, foliar nitrogen, leaf gas exchange and leaf traits were measured on the same days in adults and 1-year-old to 7-year-old resprouts that had regrown after removing all the aboveground shoots. Height growth and accumulation of aboveground biomass quickly decreased with resprout age and there was no difference between 7-year-old resprouts and the uncut adults. Predawn LWP showed no significant difference between resprouts and adults, but the minimum LWP decreased gradually from -2.0 MPa in 1-year-old resprouts to -3.0 MPa in 7-year-old resprouts. The decrease in minimum LWP was associated with increased hydraulic resistance, as indicated by the gradual decrease in leaf area-specific hydraulic conductivity (KL) and sapwood area-specific hydraulic conductivity (KS) and the associated increase in stem native percentage loss of hydraulic conductivity in older than 2-year-old resprouts. The leaf nitrogen content per unit area (Narea) also decreased steadily from 3.6 g m(-2) in 1-year-old resprouts to 1.7 g m(-2) in 7-year-old resprouts. With the decline in LWP and Narea, the rate of leaf photosynthesis per unit area (Aarea) decreased from 20 μ mol m(-2) s(-1) in 1-year-old resprouts to 11 μ mol m(-2) s(-1) in 7-year-old resprouts. In adults, although KS decreased further compared with 7-year-old resprouts, the minimum LWP, KL, Narea and the rate of photosynthesis increased by 0.3 MPa, 29, 34 and 23%, respectively. The results show that a progressive loss of stem hydraulic conductivity and a steady decrease in foliar nitrogen with age were associated with a decrease in the photosynthetic rate of Caragana korshinskii Kom. resprouts, possibly changing the allocation of photosynthetic assimilates and slowing resprout height growth.

摘要

黎明前叶片水势(LWP)、09:00 至 10:30 之间的 LWP(称为最小 LWP)、茎木质部水力传导度、叶片氮含量、叶片气体交换和叶片特性在成年植株和重新生长的 1-7 年生新芽上于同一日进行测量,去除所有地上部分后重新生长。随着新芽年龄的增长,株高生长和地上生物量积累迅速下降,7 年生新芽与未修剪的成年植株之间没有差异。黎明前 LWP 在新芽和成年植株之间没有显著差异,但最小 LWP 逐渐从 1 年生新芽的-2.0 MPa 下降到 7 年生新芽的-3.0 MPa。最小 LWP 的下降与水力阻力的增加有关,表现为叶片比水力传导度(KL)和边材比水力传导度(KS)逐渐下降,以及大于 2 年生新芽的茎原生水力传导度损失百分比增加。单位面积叶片氮含量(Narea)也从 1 年生新芽的 3.6 g m(-2) 稳定下降到 7 年生新芽的 1.7 g m(-2)。随着 LWP 和 Narea 的下降,单位面积叶片光合作用速率(Aarea)从 1 年生新芽的 20 μmol m(-2) s(-1)下降到 7 年生新芽的 11 μmol m(-2) s(-1)。在成年植株中,尽管与 7 年生新芽相比,KS 进一步下降,但最小 LWP、KL、Narea 和光合作用速率分别增加了 0.3 MPa、29%、34%和 23%。结果表明,茎水力传导度的逐渐丧失和叶片氮含量的稳定下降与柠条锦鸡儿复壮苗的光合作用速率下降有关,可能改变了光合作用同化产物的分配,减缓了复壮苗的株高生长。

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