分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

Green and red nets showed opposite influence on carotenoid accumulation in citrus by differential regulation of CitPSY and CitCCD4 gene expression

Abdelmonem Elshahat, Abebe Assefa Gobena, Samy A. Marey, Hai-Qiang Liu, Yin Luo, Essam Elatafi, Basma Elhendawy, Shariq Mahmood Alam, Rohoma Tahir, Mohamed A. Abdelsalam, Muhammad Ateeq, Yong-Zhong L

Journal:PLANT PHYSIOLOGY AND BIOCHEMISTRY

IF:6.2

DOI:10.1016/j.plaphy.2026.111100

PMID:41653602

Published:2026-02-02

research field:肿瘤学分子生物学癌症研究药物再利用细胞生物学免疫治疗

Abstract

This study examined the effects of red, yellow, green, and blue 40–60% shade nets on carotenoid accumulation in the peel of 'Newhall' navel oranges over two seasons. The results indicated that the green 60% shade net significantly enhanced carotenoid accumulation, whereas the red 60% shade net reduced it compared with the control during both shaded seasons. HPLC analysis further revealed that the green 60% shade net significantly elevated the levels of essential carotenoids, including α-carotene, β-carotene, phytoene, violaxanthin, and lutein. In contrast, the red 60% shade net showed lower levels of these compounds than the open field. Both the green and red 60% shade nets effectively reduced temperature and light intensity while increasing relative humidity (RH). However, photosystem II (PSII) efficiency was superior under green 60% compared to red 60%, indicating optimal photosynthetic performance. The results suggest that variations in the color spectrum directly affect photochemical efficiency in citrus. Furthermore, green 60% increased carotenoid biosynthesis genes ( CitPSY , CitLCYB1 , and CitLCYBE ) while downregulating degradation-related genes ( CitCCD4 and CitNCED3 ), whereas red 60% exhibited the inverse effect. Moreover, the differential expression patterns were particularly evident in the second season, with CitPSY exhibiting maximal induction under green 60% and CitCCD4 reaching its peak under red 60% throughout all shading stages. These results underscore the potential of green 60% as an innovative, environmentally sustainable approach for citrus orchards, as it enhances the quality and coloration of citrus fruits by managing environmental and light conditions, thereby regulating the fundamental mechanisms of fruit color and quality.

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