Bulletin of Botanical Research ›› 2019, Vol. 39 ›› Issue (2): 287-293.doi: 10.7525/j.issn.1673-5102.2019.02.015
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YAN Bin, WU Dan-Yang, LI Hui-Yu
Received:
2018-11-05
Online:
2019-03-05
Published:
2019-03-20
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YAN Bin, WU Dan-Yang, LI Hui-Yu. Genetic Transformation and Resistance Analysis of BpBEE2 Gene from Betula platyphylla[J]. Bulletin of Botanical Research, 2019, 39(2): 287-293.
1. Friedrichsen D M,Nemhauser J,Muramitsu T,et al. Three redundant brassinosteroid early response genes encode putative bHLH transcription factors required for normal growth[J]. Genetics,2002,162(3):1445-1456. 2. Noh S A,Choi Y I,Cho J S,et al. The poplar basic helix-loop-helix transcription factor BEE3-Like gene affects biomass production by enhancing proliferation of xylem cells in poplar[J]. Biochemical & Biophysical Research Communications,2015,462(1):64-70. 3. Cifuentes-Esquivel N,Bou-Torrent J,Galstyan A,et al. The bHLH proteins BEE and BIM positively modulate the shade avoidance syndrome in Arabidopsis seedlings[J]. The Plant Journal,2013,75(6):989-1002. 4. Heisler M G,Atkinson A,Bylstra Y H,et al. SPATULA,a gene that controls development of carpel margin tissues in Arabidopsis,encodes a bHLH protein[J]. Development,2001,128(7):1089-1098. 5. Ling H Q,Bauer P,Bereczky Z,et al. The tomato fer gene encoding a bHLH protein controls iron-uptake responses in roots[J]. Proceedings of the National Academy of Sciences of the United States of America,2002,99(21):13938-13943. 6. Rajani S,Sundaresan V. The Arabidopsis myc/bHLH gene ALCATRAZ enables cell separation in fruit dehiscence[J]. Current Biology,2001,11(24):1914-1922. 7. Seo J S,Joo J,Kim M J,et al. OsbHLH148,a basic helix-loop-helix protein,interacts with OsJAZ proteins in a jasmonate signaling pathway leading to drought tolerance in rice[J]. The Plant Journal,2011,65(6):907-921. 8. Li H M,Sun J Q,Xu Y X,et al. The bHLH-type transcription factor AtAIB positively regulates ABA response in Arabidopsis[J]. Plant Molecular Biology,2007,65(5):655-665. 9. Jiang Y Q,Yang B,Deyholos M K. Functional characterization of the Arabidopsis bHLH92 transcription factor in abiotic stress[J]. Molecular Genetics & Genomics,2009,282(5):503-516. 10. 刘晓月,王文生,傅彬英. 植物bHLH转录因子家族的功能研究进展[J]. 生物技术进展,2011,1(6):391-397. Liu X Y,Wang W S,Fu B Y. Research progress of plant bHLH transcription factor family[J]. Current Biotechnology,2011,1(6):391-397. 11. Wang Y J,Zhang Z G,He X J,et al. A rice transcription factor OsbHLH1 is involved in cold stress response[J]. Theoretical & Applied Genetics,2003,107(8):1402-1409. 12. Yuan X Y,Mao Z J,Gu H Y,et al. Reproductive strategies and seeds behavior of Betula platyphylla Suk. population[J]. Journal of Forestry Research,2000,11(4):241-244. 13. B hlenius H,Huang T,Charbonnel-Campaa L,et al. CO/FT regulatory module controls timing of flowering and seasonal growth cessation in trees[J]. Science,2006,312(5776):1040-1043. 14. 肖素勤,孙振,轩秀霞,等. 用于通路(Gateway)克隆技术的植物表达载体研究进展[J]. 植物科学学报,2012,30(5):528-544. Xiao S Q,Sun Z,Xuan X X,et al. Research progress on plant expression vectors for Gateway cloning technology[J]. Plant Science Journal,2012,30(5):528-544. 15. Ossowski S,Schwab R,Weigel D. Gene silencing in plants using artificial micro RNAs and other small RNAs[J]. The Plant Journal,2008,53(4):674-690. 16. 张瑞萍. 脱水素基因逆境表达模式与白桦遗传转化研究[D]. 哈尔滨:东北林业大学,2009. Zhang R P. Study on expression pattern of ThDHN responding to different abiotic stress and establishment of genetic transformation of Betula platyphylla[D]. Harbin:Northeast Forestry University,2009. 17. 武丹阳,杨洋,李慧玉. 3个白桦BpBEE基因的克隆与表达分析[J]. 浙江农林大学学报,2017,34(1):137-144. Wu D Y,Yang Y,Li H Y. Cloning and expression of three BpBEE genes in Betula platyphylla[J]. Journal of Zhejiang A & F University,2017,34(1):137-144. 18. Moreno J E,Moreno-Piovano G,Chan R L. The antagonistic basic helix-loop-helix partners BEE and IBH1 contribute to control plant tolerance to abiotic stress[J]. Plant Science,2018,271:143-150. 19. Toledo-Ortiz G,Huq E,Quail P H. The Arabidopsis Basic/Helix-Loop-Helix transcription factor family[J]. The Plant Cell,2003,15(8):1749-1770. 20. 许思佳,颜斌,董京祥,等. 白桦BpBEE1基因启动子的表达特性分析[J]. 植物研究,2018,38(2):247-253. Xu S J,Yan B,Dong J X,et al. Analysis of BpBEE1 gene promoter in Betula platyphylla[J]. Bulletin of Botanical Research,2018,38(2):247-253. 21. Li X X,Duan X P,Jiang H X,et al. Genome-wide analysis of basic/helix-loop-helix transcription factor family in rice and Arabidopsis[J]. Plant Physiology,2006,141(4):1167-1184. 22. Zhou J,Li F,Wang J L,et al. Basic helix-loop-helix transcription factor from wild rice(OrbHLH2) improves tolerance to salt-and osmotic stress in Arabidopsis[J]. Journal of Plant Physiology,2009,166(12):1296-1306. |
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