A stress‐associated NAC transcription factor (SlNAC35) from tomato plays a positive role in biotic and abiotic stresses

非生物成分 生物逆境 非生物胁迫 转基因 转录因子 生物 转基因作物 细胞生物学 水杨酸 植物 基因 生物化学 生态学
作者
Guodong Wang,Song Zhang,Xiaocui Ma,Yong Wang,Fanying Kong,Qingwei Meng
出处
期刊:Physiologia Plantarum [Wiley]
卷期号:158 (1): 45-64 被引量:100
标识
DOI:10.1111/ppl.12444
摘要

The NAC transcription factor family participates in responses to various kinds of environmental stimuli in plants. Responses of NAC genes to abiotic stresses have been widely studied, but their functions in response to biotic stress are little reported in plants, especially in crops. In the present study, we examined the functions of a novel tomato ( Solanum lycopersicum ) NAC protein ( SlNAC35 ) in abiotic and biotic stress resistance by using transgenic tobacco. Expression analysis found that SlNAC35 expression was induced by drought stress, salt stress, bacterial pathogen, and signaling molecules, suggesting its involvement in plant responses to biotic and abiotic stimuli. Moreover, transgenic lines exhibited a greater number of lateral roots and longer root length compared with Vec lines (empty vector lines) after drought and salt treatment. These results indicate that overexpression of SlNAC35 promoted root growth and development under drought and salt stresses. Higher expressions of NtARF1 , NtARF2 and NtARF8 were observed under drought and salt stresses in transgenic lines, suggesting that overexpression of SlNAC35 promoted growth and development of roots in transgenic lines possibly by involving auxin signaling and by regulating NtARF expression. In addition, SlNAC35 overexpression improved resistance to bacterial pathogen in transgenic tobacco, and reactive oxygen species may be in the upstream of salicylic acid ( SA ) signaling in transgenic tobacco during defense response.

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