Related Experiment Video
Updated: Sep 13, 2025

Double-Staining Method to Detect Pectin in Plant-Fungus Interaction
Published on: February 4, 2022
Insights into the structural alterations of different pectin fractions and their impact on enzymatic browning during
Wenyue Wang1, Jiaxing Hu1, Ying Xu1
1Institute of Food Science and Technology, CAAS, Key Laboratory of Agro-Products Processing, Ministry of Agriculture and Rural Affairs of the People's Republic of China, Beijing 100193, China.
Abstract:
Apple pulp browning is closely related to polyphenol enzymatic oxidation and cell wall structural alterations during processing. This study investigates the structural characteristics of water-soluble pectin (WSP), chelate-soluble pectin (CSP), and sodium carbonate-soluble pectin (NSP), and their variations' impact on enzymatic browning in browning pulp (BR), CaCl2 pretreated pulp (CA), and fresh control (FC) apple groups. In BR, pectin degradation involved altered chain conformations, reduced RG-I branching in CSP and increased RG-I linearity in NSP, leading to compromised cell wall integrity. Conversely, CaCl2 pretreatment enhanced esterification and promoted formation of characteristic linkages (1,3-α-Galp, 1,4-β-Galp, and T-β-Galp) in WSP, contributing to reduced browning. Additionally, CaCl2 stabilized cell wall by reinforcing cross-linking in CSP and NSP, particularly within RG regions, thereby limiting their conversion to WSP, and maintained high molecular weight in NSP due to a high HG content. These findings highlight the crucial role of pectin structure in enzymatic browning.

