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不同树形龙安柚冠层特性

张抗萍 李荣飞 刘松月 何桥 梁国鲁 陆智明 易佑文 胡涛 郭启高

生态学报2017,Vol.37Issue(24):8456-8466,11.
生态学报2017,Vol.37Issue(24):8456-8466,11.DOI:10.5846/stxb201611222386

不同树形龙安柚冠层特性

Analysis of the canopy structural characteristics of different training systems for Citrus grandis var.longanyou

张抗萍 1李荣飞 2刘松月 1何桥 1梁国鲁 1陆智明 1易佑文 1胡涛 3郭启高4

作者信息

  • 1. 南方山地园艺学教育部重点实验室/西南大学园艺园林学院,重庆400716
  • 2. 西南大学农学与生物科技学院,重庆400716
  • 3. 四川省广安市科技开发培训中心,广安638500
  • 4. 四川省广安市广安区农业局,广安 638500
  • 折叠

摘要

Abstract

In this study,four types of training systems for Citrus grandis var.longanyou,natural round shape,double-layered shape,open center shape,and Y-shape,were used,and structural characteristics of the different canopies and structural and physiological characteristics of the leaves were compared for a better understanding of the canopy microclimate and correlation with canopy growth to provide guidance and support for orchard production practices such as pruning,watering,and fertilizing.The results showed that:(1) The gap fraction threshold of open center shape was the highest,which was 4.33 times of the natural round shape.Photosynthetically active radiation (PAR) and transmission coefficient of the open center shape and Y-shape systems were significantly higher than those of the other two training systems,which indicates that the capabilities of the open center shape and Y-shape systems to intercept and distribute light in the canopy were better than those of the other two systems.(2) Parameters such as Leaf thickness (LT),Stomata density (SD),Leaf area (LA),Thickness rate of palisade and sponge tissue (PTT/ STT),and Organizational structure closely degrees (CTR) measured for the open center shape and Y-shape systems were higher than those of the other two systems,which indicates that the leaves of the former two systems show improved photosynthesis and reduced transpiration.(3) Parameters such as Net photosynthetic rate (Pn),Water use efficiency (WUE),Max apparent electron transport rate (ETRmax),Initial slope (α),and Half-saturation light intensity (Ik) measured for the open center shape and Y-shape were higher,which indicates that these two training systems have better tolerance to strong light.However,Transpiration rate (Tr=2.43 mmol m-2 s-1) and the photoinhibition parameters (β =0.629) of the bearing branches were minimum for the open center shape system,which is the best system to photosynthetic efficiency.(4) The measured parameters' correlativity between canopy microclimate and structural and physiological characteristics of the leaves was highly significant,but the correlation for the open center shape system was lower than that of the other systems.This indicates that the leaves of the vegetative and bearing branches show the lowest differences in the whole canopy of the open center shape system and that the open center shape is the best training system for light interception and distribution in the canopy.

关键词

龙安柚/树形/冠层微环境/叶片特性/叶片光合生理

Key words

Citrus grandis var.longanyou/training system/canopy microclimate/leaf characteristics/leaf photosynthetic physiology

引用本文复制引用

张抗萍,李荣飞,刘松月,何桥,梁国鲁,陆智明,易佑文,胡涛,郭启高..不同树形龙安柚冠层特性[J].生态学报,2017,37(24):8456-8466,11.

基金项目

“十二五”国家科技支撑计划项目(2014BAD1680102-I) (2014BAD1680102-I)

生态学报

OA北大核心CHSSCDCSCDCSTPCD

1000-0933

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