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January 25, 2026Plants1 citationsOpen Access

Optimal Branch Bending Angle for Korla Fragrant Pear: A Multi-Trait Physiological Trade-Off Framework

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ANAblah NiyazMNMansur NasirSZShikui Zhang

Key Points

  • The research aims to determine the optimal branch bending angle for maximizing fruit set and quality in Korla fragrant pear.
  • Applied four branch angles (40°, 60°, 80°, 100°) to 8-year-old Korla fragrant pear trees over a 15-day bloom window
  • Evaluated flowering dynamics, bud carbon/nitrogen status, leaf morphology/mineral content, and fruiting-shoot architecture
  • Measured endogenous hormone levels and fruit quality metrics such as single-fruit weight and soluble sugar content
  • Conducted principal component analysis on 57 traits to identify the optimal angle.
  • The 80° angle maximized fruit set (11.77%) and bud soluble sugar content (8.84 mg/g DW)
  • The flowering rate was highest at 100° (7.89%) but similar to 60° and 80°
  • The greatest leaf area (59.51 cm²) and chlorophyll content (3.11 mg/g DW) were at 80°
  • Fruit quality was significantly improved at 80°, with highest single-fruit weight (110.7 g) and sugar/acid ratio (17.08)

Abstract

The optimal branch bending angle for Pyrus sinkiangensis Yü (Korla fragrant pear) remains undefined. In this study, the optimal angle was determined by integrating the phenological, nutritional, hormonal, and fruit-quality responses across a 15-day bloom window. Four branch angles (40°, 60°, 80°, and 100°) were applied to 8-year-old trees in spring 2022, and flowering dynamics, bud carbon/nitrogen status, leaf morphology/mineral content, fruiting-shoot architecture, endogenous hormones, and fruit quality were comprehensively evaluated. The 80° angle maximized the fruit set (11.77%) and bud soluble sugar content (8.84 mg/g DW), significantly outperforming the other angles (p 0.05); calyx removal was greatest at 60° (73.33%), with no significant difference from that at 80° (71%, p > 0.05). These reproductive benefits aligned with enhanced leaf source capacity—80° pulling resulted in the greatest leaf area (59.51 cm2), the greatest amount of chlorophyll (3.11 mg/g DW), and elevated N/Mg/Cu concentrations. Branch architecture was optimized at 80°, with the percentage of medium fruiting spurs reaching 41.1% and the xylem:phloem dry-weight ratio peaking at 1.78, indicating the development of efficient assimilate transport pathways. Hormonally, 80° triggered a distinct cascade: a transient GA4/GA7 surge (50.6 and 1.34 ng/g DW) on 28 April, followed by sustained IAA elevation (2.05 ng/g DW) and zeatin stabilization (0.27–0.29 ng/g DW) during ovary development. Consequently, the fruit quality was comprehensively improved at 80°—the single-fruit weight (110.7 g), soluble sugar content (10.08 mg/g DW), and sugar/acid ratio (17.08) were greatest, whereas the stone-cell content was lowest (0.49 mg/g DW). Principal component analysis of 57 traits confirmed 80° as the system-wide optimum (D = 0.718). These results demonstrate that an 80° bending angle synchronizes carbohydrate supply, hormone signaling, and fruit quality in Korla fragrant pear, providing a low-cost, nonchemical benchmark for precision canopy management in high-density orchards. An 80° branch-bending angle optimizes carbon-hormone synergy via a transient GA4/GA7 surge and sustained IAA-zeatin signaling, maximizing fruit set and quality in high-density Korla fragrant pear orchards.

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Cite This Study

Niyaz et al. (2026) studied this question.

synapsesocial.com/papers/6975b1cefeba4585c2d6d576https://doi.org/10.3390/plants15020339
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