转录组
生物
植物
压力(语言学)
基因
基因表达
计算生物学
遗传学
哲学
语言学
作者
Wenjun Wu,Chengying Jiang,Qianqian Wei,Ling He,Gaoming Jin,Yuming Zheng,Jianli Qi,Rong Zhang,Yufang Yao,Dongshi Wan,Jiaojiao Lv
出处
期刊:Tree Physiology
[Oxford University Press]
日期:2024-07-03
卷期号:44 (8)
被引量:4
标识
DOI:10.1093/treephys/tpae075
摘要
Olive (Olea europaea L.), an economically important oil-producing crop, is sensitive to low temperature, which severely limits its productivity and geographical distribution. However, the underlying mechanism of cold tolerance in olive remains elusive. In this study, a chilling experiment (4 °C) on the living saplings of two olive cultivars revealed that O. europaea cv. Arbequina showed stronger cold tolerance with greater photosynthetic activity compared with O. europaea cv. Leccino. Transcriptome analyses revealed that early light-inducible protein 1 (ELIP1), the main regulator for chlorophyll synthesis, is dramatically induced to protect the photosynthesis at low temperatures. Furthermore, weighted gene co-expression network analysis, yeast one-hybrid and luciferase assays demonstrated that transcription factor bHLH66 serves as an important regulator of ELIP1 transcription by binding to the G-box motif in the promoter. Taken together, our research revealed a novel transcriptional module consisting of bHLH66-ELIP1 in the adaptation of olive trees to cold stress.
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