Prohexadione calcium and KH2PO4 synergy optimizes pod pepper plant architecture for mechanized harvesting and boosts yield and fruit quality

Abstract Labor shortages and rising high labor costs are primary drivers of increased production costs in pod pepper cultivation. While mechanization represents a viable solution, current incompatibility between agronomic practices and agricultural machinery constrains its efficiency. This underscor...

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Main Authors: Yongqi Geng, Ke Xia, Xiangda Song, Pu Yan, Xueying He, Guoxiu Wu, Yang Li, Yanman Li, Fan Wang, Wenyue Li, Dandan Cui, Shengli Li
Format: Article
Language:English
Published: BMC 2025-07-01
Series:BMC Plant Biology
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Online Access:https://doi.org/10.1186/s12870-025-06979-9
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author Yongqi Geng
Ke Xia
Xiangda Song
Pu Yan
Xueying He
Guoxiu Wu
Yang Li
Yanman Li
Fan Wang
Wenyue Li
Dandan Cui
Shengli Li
author_facet Yongqi Geng
Ke Xia
Xiangda Song
Pu Yan
Xueying He
Guoxiu Wu
Yang Li
Yanman Li
Fan Wang
Wenyue Li
Dandan Cui
Shengli Li
author_sort Yongqi Geng
collection DOAJ
description Abstract Labor shortages and rising high labor costs are primary drivers of increased production costs in pod pepper cultivation. While mechanization represents a viable solution, current incompatibility between agronomic practices and agricultural machinery constrains its efficiency. This underscores the critical need for plant architecture regulation technologies to enable effective mechanized production. This study evaluated the effects of foliar spraying of plant growth regulator prohexadione calcium (ProCa) combined with different substances on the plant architecture, yield and quality of pod peppers. Five treatments were set up in the experiment: (1) ProCa, (2) ProCa + KH2PO4 (ProCa + KDP), (3) ProCa + boron (ProCa + B), (4) ProCa + mepiquat chloride (ProCa + MC), (5) water (CK). The results demonstrated that all treatments significantly altered pod pepper plant architecture indices relative to CK. Specifically, treatments reduced plant height and width, while increasing branch number and decreasing branch angles, with ProCa + KDP treatment exhibiting the most pronounced effects. These effects led to a compact and multiple-branched architecture conductive to mechanical harvesting. Meanwhile, ProCa + KDP treatment enhanced root activity and leaf pigment content of pod pepper during initial and full fruit stages. All treatments except ProCa + B increased fruit dry matter accumulation. ProCa and ProCa + KDP evaluated fruit yield primarily through increased fruit number per plant and individual fruit dry weight. Furthermore, ProCa + KDP treatment significantly improved fruit quality parameters versus control, elevating soluble protein, vitamin C and capsaicin contents. These findings demonstrate that foliar application of ProCa + KDP represents a promising strategy for optimizing plant architecture to enhance mechanized production suitability while simultaneously boosting pod pepper yield and quality.
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spelling doaj-art-cec0906bec3141e9a98f8089e0a41e732025-08-20T03:04:24ZengBMCBMC Plant Biology1471-22292025-07-0125111410.1186/s12870-025-06979-9Prohexadione calcium and KH2PO4 synergy optimizes pod pepper plant architecture for mechanized harvesting and boosts yield and fruit qualityYongqi Geng0Ke Xia1Xiangda Song2Pu Yan3Xueying He4Guoxiu Wu5Yang Li6Yanman Li7Fan Wang8Wenyue Li9Dandan Cui10Shengli Li11College of Horticulture, Henan Agricultural UniversityCollege of Horticulture, Henan Agricultural UniversityCollege of Horticulture, Henan Agricultural UniversityCollege of Horticulture, Henan Agricultural UniversityCollege of Horticulture, Henan Agricultural UniversityCollege of Horticulture, Henan Agricultural UniversityCollege of Horticulture, Henan Agricultural UniversityCollege of Horticulture, Henan Agricultural UniversityCollege of Horticulture, Henan Agricultural UniversityHenan Ouland Seed Industry Co., LTDCollege of Horticulture, Henan Agricultural UniversityCollege of Horticulture, Henan Agricultural UniversityAbstract Labor shortages and rising high labor costs are primary drivers of increased production costs in pod pepper cultivation. While mechanization represents a viable solution, current incompatibility between agronomic practices and agricultural machinery constrains its efficiency. This underscores the critical need for plant architecture regulation technologies to enable effective mechanized production. This study evaluated the effects of foliar spraying of plant growth regulator prohexadione calcium (ProCa) combined with different substances on the plant architecture, yield and quality of pod peppers. Five treatments were set up in the experiment: (1) ProCa, (2) ProCa + KH2PO4 (ProCa + KDP), (3) ProCa + boron (ProCa + B), (4) ProCa + mepiquat chloride (ProCa + MC), (5) water (CK). The results demonstrated that all treatments significantly altered pod pepper plant architecture indices relative to CK. Specifically, treatments reduced plant height and width, while increasing branch number and decreasing branch angles, with ProCa + KDP treatment exhibiting the most pronounced effects. These effects led to a compact and multiple-branched architecture conductive to mechanical harvesting. Meanwhile, ProCa + KDP treatment enhanced root activity and leaf pigment content of pod pepper during initial and full fruit stages. All treatments except ProCa + B increased fruit dry matter accumulation. ProCa and ProCa + KDP evaluated fruit yield primarily through increased fruit number per plant and individual fruit dry weight. Furthermore, ProCa + KDP treatment significantly improved fruit quality parameters versus control, elevating soluble protein, vitamin C and capsaicin contents. These findings demonstrate that foliar application of ProCa + KDP represents a promising strategy for optimizing plant architecture to enhance mechanized production suitability while simultaneously boosting pod pepper yield and quality.https://doi.org/10.1186/s12870-025-06979-9Foliar applicationProhexadione calciumPlant architectureYieldQualityPod pepper
spellingShingle Yongqi Geng
Ke Xia
Xiangda Song
Pu Yan
Xueying He
Guoxiu Wu
Yang Li
Yanman Li
Fan Wang
Wenyue Li
Dandan Cui
Shengli Li
Prohexadione calcium and KH2PO4 synergy optimizes pod pepper plant architecture for mechanized harvesting and boosts yield and fruit quality
BMC Plant Biology
Foliar application
Prohexadione calcium
Plant architecture
Yield
Quality
Pod pepper
title Prohexadione calcium and KH2PO4 synergy optimizes pod pepper plant architecture for mechanized harvesting and boosts yield and fruit quality
title_full Prohexadione calcium and KH2PO4 synergy optimizes pod pepper plant architecture for mechanized harvesting and boosts yield and fruit quality
title_fullStr Prohexadione calcium and KH2PO4 synergy optimizes pod pepper plant architecture for mechanized harvesting and boosts yield and fruit quality
title_full_unstemmed Prohexadione calcium and KH2PO4 synergy optimizes pod pepper plant architecture for mechanized harvesting and boosts yield and fruit quality
title_short Prohexadione calcium and KH2PO4 synergy optimizes pod pepper plant architecture for mechanized harvesting and boosts yield and fruit quality
title_sort prohexadione calcium and kh2po4 synergy optimizes pod pepper plant architecture for mechanized harvesting and boosts yield and fruit quality
topic Foliar application
Prohexadione calcium
Plant architecture
Yield
Quality
Pod pepper
url https://doi.org/10.1186/s12870-025-06979-9
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