1) Li Y# , Zhuo J# , Liu P, Chen P, Hu H, Wang Y, Zhou S, Tu Y, Peng L, Wang Y*. Distinct wall polymer deconstruction for high biomass digestibility under chemical pretreatment in Miscanthus and rice. Carbohydr Polym, 2018, 192: 273-281.
2) Wang Y# , Fan C# , Hu H, Li Y, Sun D, Wang Y, Peng L* . Genetic modification of plant cell walls to enhance biomass yield and biofuel production in bioenergy crops. Biotechnol Adv, 2016, 34: 997-1017.
3) Wang Y# , Huang J# , Li Y, Xiong K, Wang Y, Li F, Liu M, Wu Z, Tu Y, Peng L* . Ammonium
oxalate-extractable uronic acids positively affect biomass enzymatic digestibility by reducing lignocellulose crystallinity in Miscanthus. Bioresour Technol, 2015, 196: 391-398.
4) 王艳婷,徐正丹,彭良才* . 植物细胞壁沟槽结构与生物质利用研究展望.中国科学:生命科学,2014,8:766-774.
5) Huang J, Li Y, Wang Y, Chen Y, Liu M, Wang Y, Zhang R, Zhou S, Li J, Tu Y, Hao B, Peng L, Xia T* . A precise and consistent assay for major wall polymer features that distinctively determine biomass saccharifcation in transgenic rice by near-infrared spectroscopy. Biotechnol Biofuels, 2017, 10: 294.
6) Fan C, Feng S, Huang J, Wang Y, Wu L, Li X, Wang L, Tu Y, Xia T, Li J, Cai X, Peng L* . AtCesA8-driven OsSUS3 expression leads to largely enhanced biomass saccharifcation and lodging resistance by distinctively altering lignocellulose features in rice. Biotechnol Biofuels, 2017, 10:221.
7) Hu H, Zhang R, Feng S, Wang Y, Wang Y, Fan C, Li Y, Liu Z, Schneider R, Xia T, Ding S, Persson S, Peng L* . Three AtCesA6-like members enhance biomass production by promoting cell growth and secondary wall thickenings in Arabidopsis. Plant Biotechnol J, 2018, 16: 976-988.
8) Li Y, Liu P, Huang J, Zhang R, Hu Z, Feng S, Wang Y, Wang L, Xia T* , Peng L* . Mild chemical pretreatments are sufficient for bioethanol production in the transgenic rice straws overproducing glucosidase. Green Chem, 2018, DOI:10.1039/C8GC00694F.
9) Hu H, Zhang R, Dong S, Li Y, Fan C, Wang Y, Xia T, Chen P, Feng S, Persson S, Peng L* . AtCSLD3 and GhCSLD3 mediate root growth and cell elongation downstream of the ethylene response pathway in Arabidopsis. J Exp Bot, 2018, DOI:10.1093/jxb/erx470.