食品科学 ›› 2026, Vol. 47 ›› Issue (17): 254-262.doi: 10.7506/spkx1002-6630-20260313-109

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氯吡脲处理对猕猴桃贮藏性能、矿质元素的影响及相关性分析

喻丽,林树花,杨开放,杨远,邓放明,赖灯妮   

  1. (1.湖南农业大学食品科学技术学院,湖南?长沙 410128;2.湖南省农产品加工与质量安全研究所,湖南?长沙 410125;3.湖南农业大学环境与生态学院,湖南?长沙 410128)
  • 出版日期:2026-09-15 发布日期:2026-09-03
  • 基金资助:
    湖南省重点研发计划项目(2024JK2159);岳麓山实验室种业专项(YLS-2025-ZY02035)

Effect of Forchlorfenuron Treatment on the Storage Performance and Mineral Elements of Kiwifruits and Correlation Analysis

YU Li, LIN Shuhua, YANG Kaifang, YANG Yuan, DENG Fangming, LAI Dengni   

  1. (1. School of Food Science and Technology, Hunan Agricultural University, Changsha 410128, China; 2. Hunan Agricultural Products Processing Institute, Changsha 410125, China; 3. College of Environment & Ecology, Hunan Agricultural University, Changsha 410128, China)
  • Online:2026-09-15 Published:2026-09-03

摘要: 为明确氯吡脲(forchlorfenuron,CPPU)在猕猴桃中的残留消解规律及其对果实矿质元素与贮藏品质的影响。本研究以‘米良一号’猕猴桃为试材,于花后25 d分别施用5、10、20 mg/L CPPU,测定其残留量、22 种矿质元素含量及贮藏期间品质指标。结果表明,所有处理组CPPU降解率虽在贮藏90 d后均超过98%,但20 mg/L CPPU处理在采收当天(68.06 μg/kg)和贮藏12 d后(56.69 μg/kg)残留量仍高于国家限量标准(50 μg/kg),存在超标风险。CPPU处理显著改变了矿质元素积累,采收时对照组果实中P、Ca、Mg、As、Mn、Mo、Sr、Ti、Sn等元素含量显著高于处理组。贮藏期间,CPPU处理组硬度下降更快,总可溶性固形物含量更高,质量损失率和腐烂率显著上升,且20 mg/L组最早腐烂,表明CPPU降低了果实耐贮性。相关性分析显示,CPPU处理减弱了多数元素间的相关性,少数增强或逆转。主成分分析中,对照与处理组明显分离,对照组与Sn、P、S等元素及较低软化程度相关,而CPPU处理加速腐烂质量损失。综上,CPPU处理会干扰猕猴桃矿质元素稳态,加快果实衰老,且质量浓度20 mg/L时存在残留风险,建议生产中CPPU使用质量浓度控制在10 mg/L以下。

关键词: 猕猴桃;氯吡脲;矿质元素;贮藏性能;农药残留;相关性分析

Abstract: This study sought to clarify the residue degradation pattern of forchlorfenuron (CPPU) in kiwifruits and its effects on the mineral elements and storage quality of the fruit. Kiwifruits ‘Miliang No. 1’ were applied with CPPU at concentrations of 5, 10, and 20 mg/L at 25 days after flowering, and CPPU residue levels, 22 mineral elements, and quality indicators were measured during postharvest storage. The results showed that although the degradation rate of CPPU exceeded 98% after 90 days, the residue level in the 20 mg/L treatment group was still higher than the national standard (50 μg/kg) on the day of harvest (68.06 μg/kg) and after 12 days of storage (56.69 μg/kg). CPPU treatment significantly altered mineral element accumulation in kiwifruits, with the control group showing significantly higher P, Ca, Mg, As, Mn, Mo, Sr, Ti, and Sn contents than the treated groups at harvest. During storage, the CPPU-treated groups exhibited a faster decline in hardness, higher total soluble solids content (TSSC), and significantly increased mass loss and rot incidence, with the 20 mg/L group rotting earliest, indicating that CPPU reduces fruit storability. Correlation analysis showed that CPPU treatment weakened the correlations among most elements, but enhanced or reversed those among a few elements. Principal component analysis (PCA) revealed clear separation between the control and treated groups, with the control group associated with elements such as Sn, P, S and a lower softening degree, whereas CPPU treatment accelerated rot and mass loss. Collectively, CPPU treatment interferes with mineral element homeostasis in kiwifruits, accelerates fruit senescence, and poses residue risks when applied at 20 mg/L. It is recommended that the application concentration of CPPU in production be controlled below 10 mg/L.

Key words: kiwifruit; forchlorfenuron; mineral elements; storage performance; pesticide residues; correlation analysis

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