首页|期刊导航|Crop Design|The pentose phosphate pathway influences maize radicle growth through regulating reactive oxygen species levels

The pentose phosphate pathway influences maize radicle growth through regulating reactive oxygen species levelsOA

中文摘要

The radicle of maize(Zea mays L.)is the first nutritional organ to emerge during seedling growth.However,the regulatory mechanisms underlying the pentose phosphate pathway(PPP)in radicle growth remain poorly understood.In this study,we investigated the effects of PPP inhibition on maize radicle development by treating maize seeds with the PPP inhibitor(6-amino nicotinamide,6-AN).We evaluated radicle phenotypes and key energy and redox indicators,and performed integrated transcriptomic and metabolomic analyses to identify differentially expressed genes,metabolites,and affected pathways.Our results showed that 6-AN treatment significantly reduced radicle length and altered the NADPH/NADP+and NADH/NAD+ratios,with a marked decrease in reactive oxygen species(ROS)levels,total antioxidant capacity(T-AOC),and activities of SnRK1 and NADPH oxidase(NOX).These findings suggest that PPP inhibition leads to a significant reduction in energy and redox status.Additionally,transcriptomic and metabolomic analyses revealed that redox-related pathways were significantly affected.Notably,ROS levels in the radicle were restored to some extent by the addition of H_(2)O_(2)and NADPH,confirming that PPP regulates radicle growth by modulating ROS homeostasis through NADPH.This study highlights the critical role of the PPP in regulating radicle development via ROS balance.

Zhenlong Zhang;Zhibo Li;Fuchao Jiao;Haiyan Zhang;Jingtang Chen;Ming Wang

College of Agronomy,Qingdao Agricultural University,Qingdao,266109,ChinaCollege of Agronomy,Qingdao Agricultural University,Qingdao,266109,ChinaCollege of Agronomy,Qingdao Agricultural University,Qingdao,266109,ChinaCollege of Agronomy,Qingdao Agricultural University,Qingdao,266109,ChinaCollege of Agronomy,Qingdao Agricultural University,Qingdao,266109,ChinaCollege of Agronomy,Qingdao Agricultural University,Qingdao,266109,China

农业科技

Pentose phosphate pathway(PPP)Radicle developmentMaizeROSNADPH oxidase

《Crop Design》 2026 (1)

P.70-78,9

supported by National Key Research and Development Program(2021YFD1900903)Innovation Team of Young Scientist in Shandong(2022KJ171)Key Research and Development Program of Shandong province(2023LZGC010)Shandong Provincial Key R&D Program(2025CXPT152&2024TSGC0327)Maize Industry Technology System Genetic and Breeding Positions in Shandong(SDAIT-02-01)Taishan Leading Talents in Industry Project in Shandong Province(tscx202312048)Shandong Provincial Government Sponsored Overseas Study Program.

10.1016/j.cropd.2025.100131

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