ZmMS1/ZmLBD30-orchestrated transcriptional regulatory networks precisely control pollen exine development.

Hou Q, An X, Ma B, Wu S, Wei X, Yan T, Zhou Y, Zhu T, Xie K, Zhang D, Li Z, Zhao L, Niu C, Long Y, Liu C, Zhao W, Ni F, Li J, Fu D, Yang ZN, Wan X

Published: 28 July 2023 in Molecular plant
Keywords: LBD transcription factor, ZmMs1/ZmLBD30, exine, feedback repression, maize, male sterility
Pubmed ID: 37501369
DOI: 10.1016/j.molp.2023.07.010

Because of its significance for plant male fertility and, hence, direct impact on crop yield, pollen exine development has inspired decades of scientific inquiry. However, the molecular mechanism underlying exine formation and thickness remains elusive. In this study, we identified that a previously unrecognized repressor, ZmMS1/ZmLBD30, controls proper pollen exine development in maize. Using an ms1 mutant with aberrantly thickened exine, we cloned a male-sterility gene, ZmMs1, which encodes a tapetum-specific lateral organ boundary domain transcription factor, ZmLBD30. We showed that ZmMs1/ZmLBD30 is initially turned on by a transcriptional activation cascade of ZmbHLH51-ZmMYB84-ZmMS7, and then it serves as a repressor to shut down this cascade via feedback repression to ensure timely tapetal degeneration and proper level of exine. This activation-feedback repression loop regulating male fertility is conserved in maize and sorghum, and similar regulatory mechanism may also exist in other flowering plants such as rice and Arabidopsis. Collectively, these findings reveal a novel regulatory mechanism of pollen exine development by which a long-sought master repressor of upstream activators prevents excessive exine formation.

Beijing Nova Program Z201100006820114
Fundamental Research Funds for the Central Universities of China 06500136
National Key Research and Development Program of China 2021YFF1000302
National Key Research and Development Program of China 2022YFF1002400
National Key Research and Development Program of China 2022YFF1003500
National Key Research and Development Program of China 2022YFF1100501
National Natural Science Foundation of China 31771875
National Natural Science Foundation of China 31871702
National Natural Science Foundation of China 31900610
National Natural Science Foundation of China 31971958