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  • Qin ZX, Zhang XR, Zhang X, Xin W, Li J, Hu YX*. 2014. The Arabidopsis transcription factor IIB-related protein BRP4 is involved in the regulation of mitotic cell-cycle progression during male gametogenesis. Journal of Experimental Botany, 65: 2521-2531   [下载]
  • Chen Q, Dai X, De-Paoli H, Cheng YF, Takebayashi Y, Kasahara H, Kamiya Y, Zhao YD*.2014. Auxin overproduction in shoots cannot rescue auxin deficiencies in Arabidopsis roots. Plant Cell Physiology, 55: 1072-1079   [下载]
  • Chu HW, Liang WQ, Li J, Hong F, Wu YF, Wang LK, Wang J, Wu P, Liu CM, Zhang QF, Xu J, Zhang DB*. 2013. A CLE–WOX signalling module regulates root meristem maintenance and vascular tissue development in rice.Journal of Experimental Botany, 64: 5359–5369   [下载]
  • Zhang JD, Han LD, Yan SJ, Liu CM*. 2014. The non-metabolizable glucose analog D-glucal inhibits aflatoxin biosynthesis and promotes kojic acid production in Aspergillus flavus. BMC Microbiology, 14: 95-104   [下载]
  • Wang QN, Huang SJ*. 2014. Visualization of microtubule organization and dynamics in living Arabidopsis embryonic cells. Molecular Plant, 7: 1397-1401   [下载]
  • Chi X, Zhang YC, Xue ZY, Feng LB, Liu HQ, Wang F, Qi XQ*. 2014. Discovery of rare mutations in extensively pooled DNA samples using multiple target enrichment. Plant Biotechnology Journal, 12: 709-717   [下载]
  • Chong K*, Xu ZH. 2014. Investment in plant research and development bears fruit in China. Plant Cell Reports, 33: 541-550   [下载]
  • Yang KZ, Wang HZ, Shan X, Qu XX, Zou JJ, Le J*. 2014. Requirement of A-type cyclin-dependent kinase and cyclins for the terminal division in the stomatal lineage of Arabidopsis. Journal of Experimental Botany, 65: 2449-2461   [下载]
  • Xu ZY, Kim SY, Hyeon DY, Kim DH, Dong T, Park Y, Jin JB, Joo SH, Kim SK, Hong JC, Hwang D, Hwang I*. 2013. The Arabidopsis NAC transcription factor ANAC096 cooperates with bZIP-type transcription factors in dehydration and osmotic stress responses. Plant Cell, 25: 4708-4724   [下载]
  • Xu ZY, Lee KH, Dong T, Jeong JC, Jin JB, Kanno Y, Kim DH, Kim SY, Seo M, Bressan RA, Yun DJ, Hwang I*. 2012. A vacuolar b-glucosidase homolog that possesses glucose-conjugated abscisic acid hydrolyzing activity plays an important role in osmotic stress responses in Arabidopsis. Plant Cell, 24: 2184-2199   [下载]
  • Morimoto K, Mizoi J, Qin F, Kim JS, Sato H, Osakabe Y, Shinozaki K and Yamaguchi-Shinozaki K*. 2013. Stabilization of Arabidopsis DREB2A Is Required but Not Sufficient for the Induction of Target Genes under Conditions of Stress. PLoS ONE, 8: e80457   [下载]
  • Lin XL, Wu F, Du XQ, Shi XW, Liu Y, Liu SJ, Hu YX, Theiben G*, Meng Z*. 2014. The pleiotropic SEPALLATA-like gene OsMADS34 reveals that the ‘empty glumes’ of rice (Oryza sativa) spikelets are in fact rudimentary lemmas. New Phytologist, 202: 689-702   [下载]
  • Qi P#, Lin YL#, Song XJ#, Shen JB, Huang W, Shan JX, Zhu MZ, Jiang LW, Gao JP, Lin HX*. 2012. The novel quantitative trait locus GL3.1 controls rice grain size and yield by regulating cyclin-T1;3. Cell Research, 22: 1666-1680   [下载]
  • Miura K, Ikeda M, Matsubara A, Song XJ, Ito M, Asano K, Matsuka M, Kitano H, Ashikari M*. 2010. OsSPL14 promotes panicle branching and higher grain productivity in rice. Nature Genetics, 42: 545-550   [下载]
  • Hattori Y, Nagai K, Furukawa S, Song XJ, Kawano R, Sakakibara H, Wu JZ, Matsumoto T, Yoshimura A, Kitano H, Matsuoka M, Mori H, Ashikari M*. 2009. The ethylene response factors SNORKEL1 and SNORKEL2 allow rice to adapt to deep water. Nature, 460: 1026-1030   [下载]
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