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Results 41-50 of 115 (Search time: 0.004 seconds).
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PreviewIssue DateTitleAuthor(s)
2010An effective approach for identification of in vivo protein-DNA binding sites from paired-end ChIP-Seq dataWang, C.; Xu, J.; Zhang, D.; Wilson, Z.A.; Zhang, D.
2014DWARF TILLER1, a WUSCHEL-related homeobox transcription factor, is required for tiller growth in riceWang, W.; Li, G.; Zhao, J.; Chu, H.; Lin, W.; Zhang, D.; Wang, Z.; Liang, W.; Springer, N.
2013Evaluation of four endogenous reference genes and their real-time PCR assays for common wheat quantification in GMOs detectionHuang, H.; Cheng, F.; Wang, R.; Zhang, D.; Yang, L.; Forster, R.
2008A novel universal real-time PCR system using the attached universal duplex probes for quantitative analysis of nucleic acidsYang, L.; Liang, W.; Jiang, L.; Li, W.; Cao, W.; Wilson, Z.A.; Zhang, D.
2012PMRD: a curated database for genes and mutants involved in plant male reproductionCui, X.; Wang, Q.; Yin, W.; Xu, H.; Wilson, Z.; Wei, C.; Pan, S.; Zhang, D.
2021Rice transcription factor MADS32 regulates floral patterning through interactions with multiple floral homeotic genesHu, Y.; Wang, L.; Jia, R.; Liang, W.; Zhang, X.; Xu, J.; Chen, X.; Lu, D.; Chen, M.; Luo, Z.; Xie, J.; Cao, L.; Xu, B.; Yu, Y.; Persson, S.; Zhang, D.; Yuan, Z.; Wellmer, F.
2017Biphasic regulation of the transcription factor ABORTED MICROSPORES (AMS) is essential for tapetum and pollen development in ArabidopsisFerguson, A.; Pearce, S.; Band, L.; Yang, C.; Ferjentsikova, I.; King, J.; Yuan, Z.; Zhang, D.; Wilson, Z.
2016Flower development: the evolutionary history and functions of the AGL6 subfamily MADS-box genesDreni, L.; Zhang, D.
2015GMO detection in food and feed through screening by visual loop-mediated isothermal amplification assaysWang, C.; Li, R.; Quan, S.; Shen, P.; Zhang, D.; Shi, J.; Yang, L.
2015Interactions of OsMADS1 with floral homeotic genes in rice flower developmentHu, Y.; Liang, W.; Yin, C.; Yang, X.; Ping, B.; Li, A.; Jia, R.; Chen, M.; Luo, Z.; Cai, Q.; Zhao, X.; Zhang, D.; Yuan, Z.