Letter

OsPS6 Plays Important Role in Anther Development and Microspore Formation

Expand
  • State Key Laboratory of Rice Biology / Chinese National Center for Rice Improvement, China National Rice Research Institute, Hangzhou 310006, China

#These authors contributed equally to this work

Received date: 2019-06-18

  Accepted date: 2019-12-16

  Online published: 2020-03-31

Cite this article

Weimin Zhou, Menghui Ma, Lianping Sun, Peng Zhang, Shiqiong Lv, Zhengzheng Zhong, Hanhua Tong . OsPS6 Plays Important Role in Anther Development and Microspore Formation[J]. Rice Science, 2020 , 27(4) : 259 -262 . DOI: 10.1016/j.rsci.2020.05.002

References

[1] Aya K, Ueguchi-Tanaka M, Kondo M, Hamada K, Yano K, Nishimura M, Matsuoka M. 2009. Gibberellin modulates anther development in rice via the transcriptional regulation of GAMYB. Plant Cell, 21(5): 1453-1472.
[2] Chen Z S, Liu X F, Wang D H, Chen R, Zhang X L, Xu Z H, Bai S N. 2018. Transcription factor OsTGA10 is a target of the MADS protein OsMADS8 and is required for tapetum development. Plant Physiol, 176(1): 819-835.
[3] Du X, Fei Y Y, Wang F Q, Xu Y, Wang J, Li W Q, Zhao L, Chen Z H, Liang G H, Zhou Y, Yang J. 2019. Thermo-sensitive male sterile line created by editing TMS5 gene in japonica rice. Chin J Rice Sci, 33(5): 429-435. (in Chinese with English abstract)
[4] Fu Z Z, Yu J, Cheng X W, Zong X, Xu J, Chen M J, Li Z Y, Zhang D B, Liang W Q. 2014. The rice basic helix-loop-helix transcription factor TDR INTERACTING PROTEIN2 is a central switch in early anther development. Plant Cell, 26(4): 1512-1524.
[5] Jung K H, Han M J, Lee Y S, Kim Y W, Hwang I, Kim M J, Kim Y K, Nahm B H, An G. 2005. Rice undeveloped tapetum1 is a major regulator of early tapetum development. Plant Cell, 17: 2705-2722.
[6] Ko S S, Li M J, Sun-Ben K M, Ho Y C, Lin Y J, Chuang M H, Hsing H X, Lien Y C, Yang H T, Chang H C, Chan M T. 2014. The bHLH142 transcription factor coordinates with TDR1 to modulate the expression of EAT1 and regulate pollen development in rice. Plant Cell, 26(6): 2486-2504.
[7] Li N, Zhang D S, Liu H S, Yin C S, Li X X, Liang W Q, Yuan Z, Xu B, Chu H W, Wang J, Wen T Q, Huang H, Luo D, Ma H, Zhang D B. 2006. The rice tapetum degeneration retardation gene is required for tapetum degradation and anther development. Plant Cell, 18(11): 2999-3014.
[8] Ma H. 2005. Molecular genetics analysis of microsporogenesis and microgametogenesis in flowering plants. Annu Rev Plant Biol, 56: 393-434.
[9] Niu B X, He F R, He M, Ren D, Chen L T, Liu Y G. 2013. The ATP-binding cassette transporter OsABCG15 is required for anther development and pollen fertility in rice. J Integr Plant Biol, 55(8): 710-720.
[10] Nonomura K I, Miyoshi K, Eiguchi M, Suzuki T, Miyao A, Hirochika H, Kurata N. 2003. The MSP1 gene is necessary to restrict the number of cells entering into male and female sporogenesis and to initiate anther wall formation in rice. Plant Cell, 15(8): 1728-1739.
[11] Parish R W, Li S F. 2010. Death of a tapetum: A programme of developmental altruism. Plant Sci, 178(2): 73-89.
[12] Qin P, Tu B, Wang Y P, Deng L C, Quilichini T D, Li T, Wang H, Ma B T, Li S G. 2013. ABCG15 encodes an ABC transporter protein, and is essential for post-meiotic anther and pollen exine development in rice. Plant Cell Physiol, 54(1): 138-154.
[13] Ranjan R, Khurana R, Malik N, Badoni S, Parida S K, Kapoor S, Tyagi A K. 2017. bHLH142 regulates various metabolic pathway-related genes to affect pollen development and anther dehiscence in rice. Sci Rep, 7: 43397.
[14] Scott R J, Spielman M, Dickinson H G. 2004. Stamen structure and function. Plant Cell, 16: S46-S60.
[15] Song W Y, Yamaki T, Yamaji N, Ko D, Jung K H, Fujii-Kashino M, An G, Martinoia E, Lee Y, Ma J F. 2014. A rice ABC transporter, OsABCC1, reduces arsenic accumulation in the grain. Proc Natl Acad Sci USA, 111: 15699-15704.
[16] Walbot V, Egger R L. 2016. Pre-meiotic anther development: Cell fate specification and differentiation. Annu Rev Plant Biol, 67: 365-395.
[17] Wilson Z A, Zhang D B. 2009. From Arabidopsis to rice: Pathways in pollen development. J Exp Bot, 60(5): 1479-1492.
[18] Wu L, Guan Y S, Wu Z G, Yang K, Lv J, Converse R, Huang Y X, Mao J X, Zhao Y, Wang Z W, Min H Q, Kan D Y, Zhang Y. 2014. OsABCG15 encodes a membrane protein that plays an important role in anther cuticle and pollen exine formation in rice. Plant Cell Rep, 33(11): 1881-1899.
[19] Zhang D, Wilson Z A. 2009. Stamen specification and anther development in rice. Chin Sci Bull, 54: 2342-2353.
[20] Zhao D Z, Wang G F, Speal B, Ma H. 2002. The EXCESS MICROSPOROCYTES1 gene encodes a putative leucine-rich repeat receptor protein kinase that controls somatic and reproductive cell fates in the Arabidopsis anther. Genes Dev, 16(15): 2021-2031.
[21] Zhao G C, Shi J X, Liang W Q, Xue F Y, Luo Q, Zhu L, Qu G R, Chen M J, Schreiber L, Zhang D B. 2015. Two ATP binding cassette G transporters, rice ATP binding cassette G26 and ATP binding cassette G15, collaboratively regulate rice male reproduction. Plant Physiol, 169(3): 2064-2079.
[22] Zhu L, Shi J X, Zhao G C, Zhang D B, Liang W Q. 2013. Post- meiotic deficient anther1 (PDA1) encodes an ABC transporter required for the development of anther cuticle and pollen exine in rice. J Plant Biol, 56: 59-68.
Outlines

/

浙ICP备05004719号-15   公安备案号:33010302003355
Copyright © Editorial office of Rice Science
Tel: 0571-63371017 E-mail: crrn@fy.hz.zn.cn; cjrs278@gmail.com
Supported by Beijing Magtech Co., Ltd.
Total visitors:  Visitors of today:  Now online: