Affiliation:
1. Fujian Provincial Key Laboratory of Plant Functional Biology, Fujian Agriculture and Forestry University , 350002 Fuzhou , China
2. Department of Biochemistry and Molecular Biology, Xiamen Medical College , Xiamen 361023 , China
Abstract
Abstract
Plant senescence is an integrated programme of plant development that aims to remobilize nutrients and energy from senescing tissues to developing organs under developmental and stress-induced conditions. Upstream in the regulatory network, a small family of single-stranded DNA/RNA-binding proteins known as WHIRLYs occupy a central node, acting at multiple regulatory levels and via trans-localization between the nucleus and organelles. In this review, we summarize the current progress on the role of WHIRLY members in plant development and stress-induced senescence. WHIRLY proteins can be traced back in evolution to green algae. WHIRLY proteins trade off the balance of plant developmental senescence and stress-induced senescence through maintaining organelle genome stability via R-loop homeostasis, repressing the transcription at a configuration condition, and recruiting RNA to impact organelle RNA editing and splicing, as evidenced in several species. WHIRLY proteins also act as retrograde signal transducers between organelles and the nucleus through protein modification and stromule or vesicle trafficking. In addition, WHIRLY proteins interact with hormones, reactive oxygen species and environmental signals to orchestrate cell fate in an age-dependent manner. Finally, prospects for further research and promotion to improve crop production under environmental constraints are highlighted.
Funder
National Natural Science Foundation of China
Natural Science Foundation of Fujian Province
Young Foundation of Fujian Provincial Education Department
Fujian Provincial Key Laboratory of Plant Functional Biology
Publisher
Oxford University Press (OUP)
Cited by
2 articles.
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