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College of Grassland Science
Qingdao Agricultural University, Qingdao, Shandong 266109, China
E-mail: zywang@qau.edu.cn
Area of expertise: forage improvement, molecular genetics and breeding
Selected Publications:
Chai, M., Queralta Castillo, I., Sonntag, A., Wang, S., Zhao, Z., Liu, W., Du, J., Xie, H., Liao, F., Yun, J., Jiang, Q., Sun, J., Molina, I., and Wang, Z. Y. (2021) A seed coat-specific β-ketoacyl-CoA synthase, KCS12, is critical for preserving seed physical dormancy. Plant Physiol. 186: 1606–1615.
Zhao, Z., Chai, M., Sun, L., Cong, L., Jiang, Q., Zhang, Z., and Wang, Z.Y. (2021) Identification of a gene responsible for seedpod spine formation and other phenotypic alterations using whole genome sequencing analysis in Medicago truncatula. J. Exp. Bot. 72: 7769–7777.
Du, J., Lu, S., Chai, M., Zhou, C., Sun, L., Tang, Y., Nakashima, J., Kolape, J., Wen, Z., Behzadirad, M., Zhong, T., Sun, J., Zhang, Y., and Wang, Z. Y. (2021) Functional characterization of PETIOLULE-LIKE PULVINUS (PLP) gene in abscission zone development in Medicago truncatula and its application to genetic improvement of alfalfa. Plant Biotechnol. J. 19: 351–364.
Gou, J., Tang, C., Chen, N., Wang, H., Debnath, S., Sun, L., Flanagan, A., Tang, Y., Jiang, Q., Allen, R. D., and Wang, Z. Y. (2019) SPL7 and SPL8 represent a novel flowering regulation mechanism in switchgrass. New Phytol. 222: 1610–1623.
Zhou, C., Han, L., Zhao, Y., Wang, H., Nakashima, J., Tong, J., Xiao, L., and Wang, Z. Y. (2019) Transforming compound leaf patterning by manipulating REVOLUTA in Medicago truncatula. Plant J. 100: 562–571.
Gou, J., Debnath, S., Sun, L., Flanagan, A., Tang, Y., Jiang, Q., Wen, J., and Wang, Z. Y. (2018) From model to crop: Functional characterization of SPL8 in M. truncatula led to genetic improvement of biomass yield and abiotic stress tolerance in alfalfa. Plant Biotechnol. J. 16: 951–962.
Park, J. J., Yoo, C. G., Flanagan, A., Pu, Y., Debnath, S., Ge, Y., Ragauskas, A. J., and Wang, Z. Y. (2017) Defined tetra-allelic gene disruption of the 4-coumarate:coenzyme A ligase 1 (Pv4CL1) gene by CRISPR/Cas9 in switchgrass results in lignin reduction and improved sugar release. Biotechnol. Biofuels 10: 284.
Gou, J., Fu, C., Liu, S., Tang, C., Debnath, S., Flanagan, A., Ge, Y., Tang, Y., Jiang, Q., Larson, P. R., Wen, J., and Wang, Z. Y. (2017) The miR156-SPL4 module regulates axillary bud formation and shoot architecture. New Phytol. 216: 829–840.
Chai, M., Zhou, C., Molina, I., Fu, C., Nakashima, J., Li, G., Zhang, W., Park, J., Tang, Y., Jiang, Q., and Wang, Z. Y. (2016) A Class II KNOX gene, KNOX4, controls seed physical dormancy. Proc. Natl. Acad. Sci. U. S. A. 113: 6997–7002.
Zhou, C., Han, L., Li, G., Chai, M., Fu, C., Cheng, X., Wen, J., Tang, Y., and Wang, Z. Y. (2014) STM/BP-like KNOXI is uncoupled from ARP in the regulation of compound leaf development in Medicago truncatula. Plant Cell 26: 1464–1479.
Zhou, C., Han, L., Fu, C., Wen, J., Cheng, X., Nakashima, J., Ma, J., Tang, Y., Tan, Y., Tadege, M., Mysore, K. S., Xia, G., and Wang, Z. Y. (2013) The trans-acting short interfering RNA3 pathway and NO APICAL MERISTEM antagonistically regulate leaf margin development and lateral organ separation, as revealed by analyses of an argonaute7/lobed leaflet1 mutant in Medicago truncatula. Plant Cell 25: 4845–4862.
Fu, C., Mielenz, J. R., Xiao, X., Ge, Y., Hamilton, C. Y., Rodriguez, M., Jr, Chen, F., Foston, M., Ragauskas, A., Bouton, J., Dixon, R. A., and Wang, Z. Y. (2011) Genetic manipulation of lignin reduces recalcitrance and improves ethanol production from switchgrass. Proc. Natl. Acad. Sci. U. S. A. 108: 3803–3808.
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