Letter

SDF5 Encoding P450 Protein Is Required for Internode Elongation in Rice

Expand
  • 1Agricultural College, Anhui Agricultural University, Hefei 230036, China
    2Rice Research Institute, Anhui Academy of Agricultural Sciences, Hefei 230031, China
    3School of Life Sciences, University of Science and Technology of China, Hefei 230026, China

Received date: 2020-07-31

  Accepted date: 2020-11-18

  Online published: 2021-07-28

Cite this article

Yachun Yang, Juan Li, Hao Li, Zuntao Xu, Ruiying Qin, Wenge Wu, Pengcheng Wei, Yong Ding, Jianbo Yang . SDF5 Encoding P450 Protein Is Required for Internode Elongation in Rice[J]. Rice Science, 2021 , 28(4) : 313 -316 . DOI: 10.1016/j.rsci.2021.05.001

References

[1] Arite T, Umehara M, Ishikawa S, Hanada A, Maekawa M, Yamaguchi S, Kyozuka J. 2009. d14, a strigolactone-insensitive mutant of rice, shows an accelerated outgrowth of tillers. Plant Cell Physiol, 50(8): 1416-1424.
[2] Asano K, Hirano K, Ueguchi-Tanaka M, Angeles-Shim R B, Komura T, Satoh H, Kitano H, Matsuoka M, Ashikari M. 2009. Isolation and characterization of dominant dwarf mutants, Slr1-d, in rice. Mol Genet Genom, 281: 223-231.
[3] Ashikari M, Wu J, Yano M, Sasaki T, Yoshimura A. 1999. Rice gibberellin-insensitive dwarf mutant gene Dwarf 1 encodes the α-subunit of GTP-binding protein. Proc Natl Acad Sci USA, 96(18): 10284-10289.
[4] Fujisawa Y, Kato T, Ohki S, Ishikawa A, Kitano H, Sasaki T, Asahi T, Iwasaki Y. 1999. Suppression of the heterotrimeric G protein causes abnormal morphology, including dwarfism, in rice. Proc Natl Acad Sci USA, 96: 7575-7580.
[5] Jiang L, Liu X, Xiong G S, Liu H H, Chen F L, Wang L, Meng X B, Liu G F, Yu H, Yuan Y D, Yi W, Zhao L H, Ma H L, He Y Z, Wu Z S, Melcher K, Qian Q, Xu H E, Wang Y H, Li J Y. 2013. DWARF53 acts as a repressor of strigolactone signalling in rice. Nature, 504: 401-405.
[6] Liang F, Xin X Y, Hu Z J, Xu J D, Wei G, Qian X Y, Yang J S, He H H, Luo X J. 2011. Genetic analysis and fine mapping of a novel semidominant dwarfing gene LB4D in rice. J Integr Plant Biol, 53(4): 312-323.
[7] Lin H, Wang R X, Qian Q, Yan M X, Meng X B, Fu Z M, Yan C Y, Jiang B, Su Z, Li J Y, Wang Y H. 2009. DWARF27, an iron- containing protein required for the biosynthesis of strigolactones, regulates rice tiller bud outgrowth. Plant Cell, 21(5): 1512-1525.
[8] Liu B M, Wu Y J, Fu X D, Qian Q. 2009. Characterizations and molecular mapping of a novel dominant semi-dwarf gene Sdd(t) in rice (Oryza sativa). Plant Breeding, 127(2): 125-130.
[9] Magome H, Nomura T, Hanada A, Takeda-Kamiya N, Ohnishi T, Shinma Y, Katsumata T, Kawaide H, Kamiya Y, Yamaguchi S. 2013. CYP714B1 and CYP714B2 encode gibberellin 13-oxidases that reduce gibberellin activity in rice. Proc Natl Acad Sci USA, 110(5): 1947?1952.
[10] Monna L, Kitazawa N, Yoshino R, Suzuki J, Masuda H, Maehara Y, Tanji M, Sato M, Nasu S, Minobe Y. 2002. Positional cloning of rice semidwarfing gene, sd-1: Rice ‘green revolution gene’ encodes a mutant enzyme involved in gibberellin synthesis. DNA Res, 9(1): 11-17.
[11] Osbourn A, Goss R J M, Field R A. 2011. The saponins: Polar isoprenoids with important and diverse biological activities. Nat Prod Rep, 28: 1261-1268.
[12] Sasaki A, Ashikari M, Ueguchi-Tanaka M, Itoh H, Nishimura A, Swapan D, Ishiyama K, Saito T, Kobayashi M, Khush G S, Kitano H, Matsuoka M. 2002. A mutant gibberellin-synthesis gene in rice. Nature, 416(2): 701-702.
[13] Spielmeyer W, Ellis M H, Chandler P M. 2002. Semidwarf (sd-1), ‘green revolution’ rice, contains a defective gibberellin 20-oxidase gene. Proc Natl Acad Sci USA, 99(13): 9043-9048.
[14] Sun L J, Li X J, Fu Y C, Zhu Z F, Tan L B, Liu F X, Sun X Y, Sun X W, Sun C Q. 2013. GS6, a member of the GRAS gene family, negatively regulates grain size in rice. J Integr Plant Biol, 55(5): 938-949.
[15] Sunohara H, Kawai T, Shimizu-Sato S, Sato Y, Sato K, Kitano H. 2009. A dominant mutation of TWISTED DWARF 1 encoding an α-tubulin protein causes severe dwarfism and right helical growth in rice. Genes Genet Syst, 84(3): 209-218.
[16] Ueguchi-Tanaka M, Fujisawa Y, Kobayashi M, Ashikari M, Iwasaki Y, Kitano H, Matsuoka M. 2000. Rice dwarf mutant d1, which is defective in the α subunit of the heterotrimeric G protein, affects gibberellin signal transduction. Proc Natl Acad Sci USA, 97(21): 11638-11643.
[17] Wang X, Yu H X, Tang D, Huang J, Gong Z Y, Cheng Z K. 2008. Genetic analysis of a dominant dwarf mutant in rice (Oryza sativa L.). Sci Agric China, 41: 3959?3966. (in Chinese with English abstract)
[18] Xia K F, Ou X J, Tang H D, Wang R, Wu P, Jia Y X, Wei X Y, Xu X L, Kang S H, Kim S K, Zhang M Y. 2015. Rice microRNA osa-miR1848 targets the obtusifoliol 14α-demethylase gene OsCYP51G3 and mediates the biosynthesis of phytosterols and brassinosteroids during development and in response to stress. New Phytol, 208(3): 790-802.
[19] Yan H F, Saika H, Maekawa M, Takamure I, Tsutsumi N, Kyozuka J, Nakazono M. 2007. Rice tillering dwarf mutant dwarf3 has increased leaf longevity during darkness-induced senescence or hydrogen peroxide-induced cell death. Genes Genet Syst, 82(4): 361-366.
[20] Zhang S Y, Li G, Fang J, Chen W Q, Jiang H P, Zou J H, Liu X, Zhao X F, Li X B, Chu C C, Xie Q, Jiang X N, Zhu L H. 2010. The interactions among DWARF10, auxin and cytokinin underlie lateral bud outgrowth in rice. J Integr Plant Biol, 52(7): 626-638.
[21] Zhang L G, Cheng Z J, Qin R Z, Qiu Y, Wang J L, Cui X K, Gu L F, Zhang X, Guo X P, Wang D, Jiang L, Wu C Y, Wang H Y, Cao X F, Wan J M. 2012. Identification and characterization of an Epi-allele of FIE1 reveals a regulatory linkage between two epigenetic marks in rice. Plant Cell, 24(11): 4407-4421.
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: