抗坏血酸
脱氢抗坏血酸
苗木
化学
非生物胁迫
食品科学
谷胱甘肽还原酶
氧化应激
抗氧化剂
园艺
谷胱甘肽
生物化学
酶
植物
生物
基因
谷胱甘肽过氧化物酶
作者
Nan Xiang,Jianguang Hu,Tianxiang Wen,Margaret A. Brennan,Charles S. Brennan,Xinbo Guo
摘要
Abstract BACKGROUND Extreme temperatures are among the primary abiotic stresses that affect plant growth and development. Ascorbic acid (AsA) is an efficient antioxidant for scavenging relative oxygen species accumulated under stress. Folates play a significant role in DNA synthesis and protect plants against oxidative stress. Sweet corn ( Zea mays L.), a crop grown worldwide, is sensitive to extreme temperatures at seedling stage, which may cause yield loss. This study was conducted to explore the biosynthetic regulative mechanism of AsA and folates in sweet corn seedlings under temperature stress. RESULTS The AsA and folate composition and relative gene expression in sweet corn seedlings grown under different temperature stresses (10, 25, and 40 °C) were evaluated. The imposition of temperature stress altered the AsA content mainly by modulating the expression of Zm DHAR , whose encoded enzyme dehydroascorbic reductase (DHAR) is essential in the AsA recycle pathway. Low temperature stress raised the expressions of relative genes, leading to folate accumulation. High temperature stress modulated the folate content by influencing the expression of the correspondence gene for aminodeoxychorismate synthase, Zm ADCS , as well as downstream genes that connected with DNA methylation. CONCLUSION These results provided a theoretical basis, at a genetic level, for understanding the stress responses mechanism in sweet corn seedlings, offering guidance for sweet corn cultivation. © 2019 Society of Chemical Industry
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