Training systems affect spatial distribution of Korla fragrant pear (Pyrus sinkiangensis Yu) fruits by altering canopy structure and light distribution
文献类型: 外文期刊
作者: Yan, Pan 1 ; Deng, Yonghui 1 ; An, Shi-jie 1 ; Ma, Ling 1 ; Li, Tianle 1 ; Chen, Qi-ling 1 ; Zheng, Qiangqing 1 ;
作者机构: 1.Xinjiang Acad Agr & Reclamat Sci, Inst Forestry & Hort, Tiemenguan Test Stn, Xinjiang Prod & Construct Corp Key Lab Korla Fragr, Shihezi, Peoples R China
关键词: Pyrus sinkiangensis Yu; canopy structure; light distribution; fruit spatial distribution; yield
期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:4.8; 五年影响因子:5.7 )
ISSN: 1664-462X
年卷期: 2025 年 16 卷
页码:
收录情况: SCI
摘要:
Objective: This study aims to elucidate the relationship between canopy structure and fruit spatial distribution, establish a model linking canopy light distribution with fruit positioning, and identify optimal training strategies for consistently high yield. The findings provide a theoretical foundation for optimizing modern cultivation practices in Korla fragrant pear orchards. Methods: Four training treatments were established: precision pruning, reduction, falling head, and thinning. Canopy structural parameters and light distribution were measured, along with canopy light interception (ALI). Fruit number and individual fruit weight were recorded at different canopy positions. Correlation analysis was used to revealing the relationship between canopy structure, light distribution, and spatial distribution of fruits. Results: (1) Canopy Structure: Reduction and falling head effectively controlled canopy spread, significantly reduced the proportion of long branches while increased the proportion of middle branches. Thinning, however, increased the proportion of long branches, total branch length and average branch length, led to significant expansion in canopy diameter, surface area, and volume. (2) Light Distribution: Reduction increased average light interception (ALI) by 15%, while thinning improved ALI by 11% significantly, enhanced light availability across different canopy aspects, falling head notably improved light penetration in the middle and lower canopy layers. Persistent low-light zones (ALI < 300 mu mol
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