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SAO Regulates Aerial Organ Development in Rice

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  • 1Rice Research Institute, Key Laboratory of Crop Molecular Improvement / Academy of Agricultural Sciences, College of Agronomy and Biotechnology, Southwest University, Chongqing 400715, China
    2Yibin Academy of Southwest University, Yi bin, 644000, China
First author contact:

#These authors contributed equally to this work

Zhang Ting (tingzhang@swu.edu.cn)

Received date: 2024-10-24

  Accepted date: 2025-03-13

  Online published: 2025-08-06

Cite this article

Wu Ruhui, Zhang Yi, Jin Kun, Ning Bingyu, Zhang Jichao, Mu Jianyan, Wang Yuxin, Mo Yunyan, Zheng Zhongyi, You Jing, Xiao Wenwen, He Guanghua, Sang Xianchun, Zhang Ting . SAO Regulates Aerial Organ Development in Rice[J]. Rice Science, 2025 , 32(4) : 462 -466 . DOI: 10.1016/j.rsci.2025.03.008

References

[1] Andreo-Jimenez B, Te Beest D E, Kruijer W, et al. 2023. Genetic mapping of the root mycobiota in rice and its role in drought tolerance. Rice, 16(1): 26.
[2] Cho S H, Yoo S C, Zhang H T, et al. 2013. The rice narrow leaf2 and narrow leaf3 loci encode WUSCHEL-related homeobox 3A (OsWOX3A) and function in leaf, spikelet, tiller and lateral root development. New Phytol, 198(4): 1071-1084.
[3] Duan P G, Rao Y C, Zeng D L, et al. 2014. SMALL GRAIN 1, which encodes a mitogen-activated protein kinase kinase 4, influences grain size in rice. Plant J, 77(4): 547-557.
[4] Hirano K, Aya K, Kondo M, et al. 2012. OsCAD2 is the major CAD gene responsible for monolignol biosynthesis in rice culm. Plant Cell Rep, 31(1): 91-101.
[5] Hu B, Wang W, Ou S J, et al. 2015. Variation in NRT1.1B contributes to nitrate-use divergence between rice subspecies. Nat Genet, 47(7): 834-838.
[6] Krapp A. 2015. Plant nitrogen assimilation and its regulation: A complex puzzle with missing pieces. Curr Opin Plant Biol, 25: 115-122.
[7] Li S B, Qian Q, Fu Z M, et al. 2009. Short panicle1 encodes a putative PTR family transporter and determines rice panicle size. Plant J, 58(4): 592-605.
[8] Ma L, Sang X C, Zhang T, et al. 2017. ABNORMAL VASCULAR BUNDLES regulates cell proliferation and procambium cell establishment during aerial organ development in rice. New Phytol, 213(1): 275-286.
[9] Nakamura A, Fujioka S, Sunohara H, et al. 2006. The role of OsBRI1 and its homologous genes, OsBRL1 and OsBRL3, in rice. Plant Physiol, 140(2): 580-590.
[10] Ren D Y, Li Y F, He G H, et al. 2020. Multifloret spikelet improves rice yield. New Phytol, 225(6): 2301-2306.
[11] Shalmani A, Ullah U, Tai L, et al. 2023. OsBBX19-OsBTB97/ OsBBX11 module regulates spikelet development and yield production in rice. Plant Sci, 334: 111779.
[12] Sun S Y, Wang L, Mao H L, et al. 2018. A G-protein pathway determines grain size in rice. Nat Commun, 9(1): 851.
[13] Tanaka K, Murata K, Yamazaki M, et al. 2003. Three distinct rice cellulose synthase catalytic subunit genes required for cellulose synthesis in the secondary wall. Plant Physiol, 133(1): 73-83.
[14] Tang Z, Chen Y, Chen F, et al. 2017. OsPTR7 (OsNPF8.1), a putative peptide transporter in rice, is involved in dimethylarsenate accumulation in rice grain. Plant Cell Physiol, 58(5): 904-913.
[15] Wang J, Lu K, Nie H P, et al. 2018. Rice nitrate transporter OsNPF7.2 positively regulates tiller number and grain yield. Rice, 11(1): 12.
[16] Xia X D, Fan X R, Wei J, et al. 2015. Rice nitrate transporter OsNPF2.4 functions in low-affinity acquisition and long-distance transport. J Exp Bot, 66(1): 317-331.
[17] You J, Xiao W W, Zhou Y, et al. 2022. The APC/CTAD1-WIDE LEAF 1-NARROW LEAF 1 pathway controls leaf width in rice. Plant Cell, 34(11): 4313-4328.
[18] Yue Z C, Wang Z P, Yao Y L, et al. 2024. Variation in WIDTH OF LEAF AND GRAIN contributes to grain and leaf size by controlling LARGE2 stability in rice. Plant Cell, 36(9): 3201-3218.
[19] Zhao H M, Guo M L, Yan M K, et al. 2020. Comparative expression profiling reveals genes involved in Megasporogenesis. Plant Physiol, 182(4): 2006-2024.
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