4.7 Article

The transcription factorZmNAC126accelerates leaf senescence downstream of the ethylene signalling pathway in maize

期刊

PLANT CELL AND ENVIRONMENT
卷 43, 期 9, 页码 2287-2300

出版社

WILEY
DOI: 10.1111/pce.13803

关键词

chlorophyll catabolic genes; ethylene; leaf senescence; maize; ZmNAC

资金

  1. National Natural Science Foundation of China [31741098, 31970303]
  2. National Program of Transgenic Variety Development of China [2014ZX08003004-009]
  3. Natural Science Foundation of Shanghai [17ZR1420400]
  4. Science and Technology Commission of Shanghai Municipality [18DZ2260500]
  5. State Key Laboratory of Genetic Engineering [SKLGE-1602]
  6. Fudan University [SKLGE-1602]

向作者/读者索取更多资源

Leaf senescence is an integral part of plant development, during which, nutrients are remobilized from senescent leaves to fast-growing organs. The initiation and progression dynamics of leaf senescence is therefore vital not only to the maximal accumulation of assimilates but also to the efficient remobilization of nutrients. Senescence is a finely tuned process that involves the action of a large number of transcription factors (TFs). The NAC TFs play critical roles in regulating leaf senescence inArabidopsis, wheat, rice and tomato. Here, we identified a NAC TF, ZmNAC126 that is responsive to leaf senescence in maize. Ectopic overexpression ofZmNAC126inArabidopsisand maize enhanced chlorophyll degradation and promoted leaf senescence. Electrophoretic mobility shift and chromatin immunoprecipitation assays revealed that ZmNAC126 could directly bind to the promoters of major chlorophyll catabolic genes in maize. Dual-luciferase assay in maize protoplasts indicated that ZmNAC126 positively regulates these chlorophyll catabolic genes in maize. Moreover,ZmNAC126could be induced by ethylene, and ZmEIN3, a major TF of ethylene signalling, could bind to its promoter to transactivate its expression. Taken together, ZmNAC126 may play a pivotal role in regulating natural and ethylene-triggered leaf senescence in maize.

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