Chu Liwei, Shi Chengjing, Wang Xin, Li Benyin, Zuo Siyu, Li Qixuan, Han Jiarui, Wang Hexin, Lou Xin
School of Life and Health, Dalian University, No. 10 Xuefu Street, Dalian 116622, China.
Institute of Modern Agricultural Research, Dalian University, No. 10 Xuefu Street, Dalian 116622, China.
Plants (Basel). 2025 Jul 23;14(15):2269. doi: 10.3390/plants14152269.
Root pruning can promote the transplanting of young green plants, but the overall impact of pruning on root growth, morphology, and physiological functions remains unclear. This study integrated transcriptomics and physiological analyses to elucidate the effects of root pruning on blueberry growth. Appropriate pruning (CT4) significantly promoted plant growth, with above-ground biomass and leaf biomass significantly increasing compared to the control group within 42 days. Photosynthesis temporarily decreased at 7 days but recovered at 21 and 42 days. Transcriptomics analysis showed that the cellulose metabolism pathway was rapidly activated and influenced multiple key genes in the starch metabolism pathway. Importantly, transcription factors associated with vascular development were also significantly increased at 7, 21, and 42 days after root pruning, indicating their role in regulating vascular differentiation. Enhanced aboveground growth was positively correlated with the expression of photosynthesis-related genes, and the transport of photosynthetic products via vascular tissues provided a carbon source for root development. Thus, root development is closely related to leaf photosynthesis, and changes in gene expression associated with vascular tissue development directly influence root development, ultimately ensuring coordinated growth between aboveground and belowground parts. These findings provide a theoretical basis for optimizing root pruning strategies to enhance blueberry growth and yield.
根系修剪可以促进幼嫩绿色植物的移栽,但修剪对根系生长、形态和生理功能的总体影响仍不清楚。本研究结合转录组学和生理分析,以阐明根系修剪对蓝莓生长的影响。适度修剪(CT4)显著促进了植株生长,与对照组相比,地上生物量和叶片生物量在42天内显著增加。光合作用在第7天暂时下降,但在第21天和第42天恢复。转录组学分析表明,纤维素代谢途径被迅速激活,并影响淀粉代谢途径中的多个关键基因。重要的是,与维管发育相关的转录因子在根系修剪后的第7天、第21天和第42天也显著增加,表明它们在调节维管分化中的作用。地上部生长增强与光合作用相关基因的表达呈正相关,光合产物通过维管组织的运输为根系发育提供了碳源。因此,根系发育与叶片光合作用密切相关,与维管组织发育相关的基因表达变化直接影响根系发育,最终确保地上部和地下部的协调生长。这些发现为优化根系修剪策略以提高蓝莓生长和产量提供了理论依据。