Reactive oxygen species turnover, phenolics metabolism, and some key gene expressions modulate postharvest physiological deterioration in cassava tubers

Author:

Wahengbam Elizabeth Devi,Devi Chingakham Premabati,Sharma Susheel Kumar,Roy Subhra Saikat,Maibam Albert,Dasgupta Madhumita,Luikham Star,Chongtham Tania,Ningombam Arati,Bhupenchandra Ingudam,Singh Laishram Kanta,Devi Yumnam Prabhabati,Thokchom Sushmita,Khaba Chingakham Inao,Singh Nameirakpam Bunindro,Rajashekar Yallappa,Das Sudripta,Mohanty Sansuta,Sahoo Manas Ranjan

Abstract

Rapid postharvest physiological deterioration (PPD) in cassava (Manihot esculentaCrantz) tuber is a significant concern during storage. The freshly harvested tubers start spoiling within 24 to 72 h. Accumulation of H2O2is one of the earliest biochemical events that occurred during PPD, which was detected using the 3,3 diaminobenzidine (DAB) in two contrast cassava genotypes, MNP Local A (29–57 μg g–1) and Sree Prakash (64–141 μg g–1). Accumulating the fluorescence hydroxycoumarin compounds emitted by the cassava tubers observed under an ultraviolet (UV) lamp showed significant variations at 0, 3, 6, 9, 12, and 15 days of storage. The total phenolics and carotenoids significantly and negatively correlated with PPD progression; however, the anthocyanin and flavonoids positively correlated with the PPD–anchored ROS accumulation. The primary compound, Phthalic acid, di(2–propylpentyl) ester, was identified in both the cassava tubers, Sree Prakash (57.21 and 35.21%), and MNP Local A (75.58 and 60.21%) at 0, and 72 h of PPD, respectively. The expression of PPD–associated genesAPX–2, APX–3, PAL, andAPwas higher at 6–12 days of PPD, which signified the synthesis of ROS turnover and phenylpropanoid biosynthesis. A significant, strong, and positive correlation was established between the secondary metabolites and PPD signaling gene expression, which was inversely correlated with hydroxycoumarin and H2O2accumulation. MNP Local A tubers exhibited longer storage life of 15 days with a low PPD score, higher metabolites synthesis, and gene expression. The PPD–resistant lines may be used to augment cassava breeding strategies for large–scale commercial and industrial use.

Funder

Department of Biotechnology, Ministry of Science and Technology, India

Publisher

Frontiers Media SA

Subject

Microbiology (medical),Microbiology

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