Differential Analysis of Nutrient Content and Metabolism of Camellia oleifera at Different Growing Periods.

Juanjuan Hu, Hao Song, Qinglong Shu, Xin Sun, Liping Gao, Bangxing Han

Journal: Journal of visualized experiments : JoVE 2026

PMID: 41941513

Abstract

In order to indicate the variations in nutrient content, gene expression associated with nitrogen metabolism, and starch and sucrose metabolism in C. oleifera at different growing periods, leaves from the C. oleifera 'Dabieshan 1' cultivar were collected at the juvenile (2-year-old C. oleifera), early fruiting stage(6-year-old C. oleifera), and peak fruiting stages(10-year-old C. oleifera), which were selected as experimental materials. Determination of nutrient content and analysis of transcriptome sequencing were conducted on leaf samples in the early flowering stage, systematically studying the content of nutrients and related metabolic pathways of C. oleifera during different growing periods. The results distinguished 9 homologous genes related to nitrogen metabolism and 24 related to starch and sucrose metabolism, respectively, after subjecting the C. oleifera leaves collected during both the juvenile and the peak fruiting stage to comparison in the KEGG database. With increasing tree age, changes in the nitrogen metabolism and the starch and sucrose metabolic pathways in C. oleiferaleaves. C. oleifera would enhance both the phenylalanine ammonia-lyase pathway and sucrose biosynthesis. These ultimately led to increased levels of soluble proteins and soluble sugars in C. oleifera leaves. This study provides new insights into the mechanisms of changes in nitrogen metabolism, starch and sucrose metabolism, and nutrient content during the transformation of C. oleifera from vegetative growth to reproductive growth. It offers theoretical references for understanding its fruiting period and applying plant foliar fertilizers to promote flowering and fruiting.

Address: College of Resources and Environmental Engineering, West Anhui University; Anhui Provincial Engineering Laboratory for Conservation and Sustainable Utilization of Traditional Chinese Medicine Resources, West Anhui University; Anhui Key Laboratory of Biomimetic Sensing and Detection Technology, West Anhui University.; College of Resources and Environmental Engineering, West Anhui University.; College of Forestry and Landscape Architecture, Anhui Agricultural University.; College of Life Sciences, Anhui Agricultural University; [email protected].; Traditional Chinese Medicine Institute of Anhui Dabie Mountain, West Anhui University; [email protected].
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