褪黑素
生物
非生物胁迫
活性氧
转录因子
抗氧化剂
细胞生物学
拟南芥
氧化应激
冷应激
非生物成分
基因
植物
生物化学
内分泌学
生态学
突变体
作者
Vikramjit Bajwa,Mukund R. Shukla,Sherif M. Sherif,Susan J. Murch,Praveen K. Saxena
摘要
Abstract Melatonin ( N ‐acetyl‐5‐methoxytryptamine) has been implicated in abiotic and biotic stress tolerance in plants. However, information on the effects of melatonin in cold‐stress tolerance in vivo is limited. In this study, the effect of melatonin was investigated in the model plant Arabidopsis thaliana challenged with a cold stress at 4⁰C for 72 and 120 hr. Melatonin‐treated plants (10 and 30 μ m ) had significantly higher fresh weight, primary root length, and shoot height compared with the nontreated plants. To aid in the understanding of the role of melatonin in alleviating cold stress, we investigated the effects of melatonin treatment on the expression of cold‐related genes. Melatonin up‐regulated the expression of C‐repeat‐binding factors ( CBF s)/Drought Response Element Binding factors ( DREB s), a cold‐responsive gene, COR 15a , a transcription factor involved in freezing and drought‐stress tolerance CAMTA 1 and transcription activators of reactive oxygen species ( ROS )‐related antioxidant genes, ZAT 10 and ZAT 12 , following cold stress. The up‐regulation of cold signaling genes by melatonin may stimulate the biosynthesis of cold‐protecting compounds and contribute to the increased growth of plants treated with exogenous melatonin under cold stress.
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