Influence of nitrogen fertilization on xylem traits and aquaporin expression in stems of hybrid poplar

木质部 毛果杨 生物 植物 人类受精 水运 导水率 杨柳科 木本植物 园艺 农学 水流 土壤水分 生态学 基因 环境工程 基因组 工程类 生物化学
作者
Uwe G. Hacke,Lenka Plavcová,Adriana M. Almeida‐Rodriguez,Susanne King-Jones,Wenzhe Zhou,Janice E. K. Cooke
出处
期刊:Tree Physiology [Oxford University Press]
卷期号:30 (8): 1016-1025 被引量:172
标识
DOI:10.1093/treephys/tpq058
摘要

We studied the influence of nitrogen (N) on hydraulic traits and aquaporin (AQP) expression in the stem xylem of hybrid poplar saplings (Populus trichocarpa (Torr. & Gray) x deltoides Bartr. ex Marsh clone H11-11). Plants were grown in a controlled environment and were kept well watered throughout the experiments. Hydraulic measurements were done on basal and distal stem segments of plants receiving high N fertilization (high N plants) versus plants receiving only adequate N fertilization (adequate N plants). High N plants grew faster and exhibited more leaf area than adequate N controls. These morphological differences were paralleled by wider vessels and higher specific conductivities (K(S)) in high N plants. However, stems of high N plants were more vulnerable to xylem cavitation, at least in one of two experiments, and showed lower wood densities than stems of adequate N plants. Leaf area was strongly correlated with cross-sectional xylem area in both plant groups. Since higher K(S) in high N plants was accompanied by concomitant increases in leaf area, leaf-specific conductivities were similar in both plant groups. Influences of N on hydraulic traits were paralleled by changes in AQP expression. Seven AQPs were upregulated in the stem xylem of high N plants, five of which have been identified recently as water transporters. The enhanced growth of secondary xylem of high N plants has been shown to result from both increased cambial activity as well as increased cell size. We suggest that some of these water-transporting AQPs could play a role in xylogenesis, facilitating the influx of water into the zone of differentiating and maturing cells in secondary xylem, including expanding vessels.
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