Faculty Opinions recommendation of The Arabidopsis ARGOS-LIKE gene regulates cell expansion during organ growth.

Author(s):  
Kay Schneitz
Keyword(s):  
2015 ◽  
Vol 10 (5) ◽  
pp. e1017169 ◽  
Author(s):  
Guanping Feng ◽  
Gang Liu ◽  
Jianhua Xiao
Keyword(s):  

2006 ◽  
Vol 47 (1) ◽  
pp. 1-9 ◽  
Author(s):  
Yuxin Hu ◽  
Huay Mei Poh ◽  
Nam-Hai Chua
Keyword(s):  

2001 ◽  
Vol 13 (6) ◽  
pp. 1333 ◽  
Author(s):  
Chun-Hai Dong ◽  
Gui-Xian Xia ◽  
Yan Hong ◽  
Srinivasan Ramachandran ◽  
Benedikt Kost ◽  
...  

2003 ◽  
Vol 131 (2) ◽  
pp. 493-506 ◽  
Author(s):  
Christen Y.L. Yuen ◽  
Rebecca S. Pearlman ◽  
Laura Silo-suh ◽  
Pierre Hilson ◽  
Kathleen L. Carroll ◽  
...  
Keyword(s):  

Author(s):  
Huifang Ma ◽  
Liyuan Xu ◽  
Ying Fu ◽  
Lei Zhu

Floral organ development is fundamental to sexual reproduction in angiosperms. Many key floral regulators (most of which are transcription factors) have been identified and shown to modulate floral meristem determinacy and floral organ identity, but not much is known about the regulation of floral organ growth, which is a critical process by which organs to achieve appropriate morphologies and fulfill their functions. Spatial and temporal control of anisotropic cell expansion following initial cell proliferation is important for organ growth. Cortical microtubules are well known to have important roles in plant cell polar growth/expansion and have been reported to guide the growth and shape of sepals and petals. In this study, we identified two homolog proteins, QWRF1 and QWRF2, which are essential for floral organ growth and plant fertility. We found severely deformed morphologies and symmetries of various floral organs as well as a significant reduction in the seed setting rate in the qwrf1qwrf2 double mutant, although few flower development defects were seen in qwrf1 or qwrf2 single mutants. QWRF1 and QWRF2 display similar expression patterns and are both localized to microtubules in vitro and in vivo. Furthermore, we found altered cortical microtubule organization and arrangements in qwrf1qwrf2 cells, consistent with abnormal cell expansion in different floral organs, which eventually led to poor fertility. Our results suggest that QWRF1 and QWRF2 are likely microtubule-associated proteins with functional redundancy in fertility and floral organ development, which probably exert their effects via regulation of cortical microtubules and anisotropic cell expansion.


2018 ◽  
Vol 60 (2) ◽  
pp. 285-302 ◽  
Author(s):  
Peipei Wu ◽  
Mingsheng Peng ◽  
Zhigang Li ◽  
Ning Yuan ◽  
Qian Hu ◽  
...  

Abstract Plant organ development to a specific size and shape is controlled by cell proliferation and cell expansion. Here, we identify a novel Myb-like Arabidopsis gene, Development Related Myb-like1 (DRMY1), which controls cell expansion in both vegetative and reproductive organs. DRMY1 is strongly expressed in developing organs and its expression is reduced by ethylene while it is induced by ABA. DRMY1 has a Myb-like DNA-binding domain, which is predominantly localized in the nucleus and does not exhibit transcriptional activation activity. The loss-of-function T-DNA insertion mutant drmy1 shows reduced organ growth and cell expansion, which is associated with changes in the cell wall matrix polysaccharides. Interestingly, overexpression of DRMY1 in Arabidopsis does not lead to enhanced organ growth. Expression of genes involved in cell wall biosynthesis/remodeling, ribosome biogenesis and in ethylene and ABA signaling pathways is changed with the deficiency of DRMY1. Our results suggest that DRMY1 plays an essential role in organ development by regulating cell expansion either directly by affecting cell wall architecture and/or cytoplasmic growth or indirectly through the ethylene and/or ABA signaling pathways.


2001 ◽  
Vol 13 (6) ◽  
pp. 1333-1346 ◽  
Author(s):  
Chun-Hai Dong ◽  
Gui-Xian Xia ◽  
Yan Hong ◽  
Srinivasan Ramachandran ◽  
Benedikt Kost ◽  
...  

2009 ◽  
Vol 57 (3) ◽  
pp. 511-521 ◽  
Author(s):  
Yanjun Jing ◽  
Dayong Cui ◽  
Fang Bao ◽  
Zhubing Hu ◽  
Zhixiang Qin ◽  
...  
Keyword(s):  

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