> 2017年-生物质与生物能源实验室(2023)
2017年

#为共同第一作者(Equal contributors);*为通讯作者(Corresponding Author);IF为当年或五年影响因子;被引次数(Times Cited)更新日期为2023年7月31日。

OsCESA9 conserved-site mutation leads to largely enhanced plant lodging resistance and biomass enzymatic saccharification by reducing cellulose DP and crystallinity in rice

OsCESA9 conserved-site mutation leads to largely enhanced plant lodging resistance and biomass enzymatic saccharification by reducing cellulose DP and crystallinity in rice

Plant Biotechnology Journal. (2017). 15(9): 1093-1104. (IF: 13.8; Times Cited: 121)

Fengcheng Li#, Guosheng Xie#, Jiangfeng Huang, Ran Zhang, Yu Li, Miaomiao Zhang, Yanting Wang, Ao Li, Xukai Li, Tao Xia, Chengcheng Qu, Fan Hu, Arthur J. Ragauskas, Liangcai Peng*.

Ectopic expression of a novel OsExtensin-like gene consistently enhances plant lodging resistance by regulating cell elongation and cell wall thickening in rice

Ectopic expression of a novel OsExtensin-like gene consistently enhances plant lodging resistance by regulating cell elongation and cell wall thickening in rice

Plant Biotechnology Journal. (2017). 16(1): 254-263. (IF: 13.8; Times Cited: 72)

Chunfen Fan, Ying Li, Zhen Hu, Huizhen Hu, Guangya Wang, Ao Li, Youmei Wang, Yuanyuan Tu, Tao Xia, Liangcai Peng, Shengqiu Feng*.

Three AtCesA6-like members enhance biomass production by promoting cell growth and secondary wall thickenings in Arabidopsis

Three AtCesA6-like members enhance biomass production by promoting cell growth and secondary wall thickenings in Arabidopsis

Plant Biotechnology Journal. (2017). 16: 976-988. (IF: 13.8; Times Cited: 47)

Huizhen Hu, Ran Zhang, Shengqiu Feng, Youmei Wang, Yanting Wang, Chunfen Fan, Ying Li, Zengyu Liu, René Schneider, Tao Xia, Shiyou Ding, Staffan Persson, Liangcai Peng*.

Steam-exploded biomass saccharification is predominately affected by lignocellulose porosity and largely enhanced by Tween-80 in Miscanthus

Steam-exploded biomass saccharification is predominately affected by lignocellulose porosity and largely enhanced by Tween-80 in Miscanthus

Bioresource Technology. (2017). 239: 74-81. (IF: 11.4; Times Cited: 58)

Dan Sun, Aftab Alam, Yuanyuan Tu, Shiguang Zhou, Yanting Wang, Tao Xia, Jiangfeng Huang, Ying Li, Zahoor, Xiaoyang Wei, Bo Hao, Liangcai Peng*.

Biomass saccharification is largely enhanced by altering wall polymer features and reducing silicon accumulation in rice cultivars harvested from nitrogen fertilizer supply

Biomass saccharification is largely enhanced by altering wall polymer features and reducing silicon accumulation in rice cultivars harvested from nitrogen fertilizer supply

Bioresource Technology. (2017). 243: 957-965. (IF: 11.4; Times Cited: 32)

Zahoor, Dan Sun, Ying Li, Jing Wang, Yuanyuan Tu, Yanting Wang, Zhen Hu, Shiguang Zhou, Lingqiang Wang, Guosheng Xie, Jianliang Huang, Aftab Alam, Liangcai Peng*.

Mild chemical pretreatments are sufficient for complete saccharification of steam-exploded residues and high ethanol production in desirable wheat accessions

Mild chemical pretreatments are sufficient for complete saccharification of steam-exploded residues and high ethanol production in desirable wheat accessions

Bioresource Technology. (2017). 243: 319-326. (IF: 11.4; Times Cited: 53)

Zahoor, Yuanyuan Tu, Lingqiang Wang, Tao Xia, Dan Sun, Tao Xia, Shiguang Zhou, Yanting Wang, Ying Li, Heping Zhang, Tong Zhang, Meysam Madadi, Liangcai Peng*.

The 2'-O-methyladenosine nucleoside modifcation gene OsTRM13 positively regulates salt stress tolerance in rice

The 2'-O-methyladenosine nucleoside modifcation gene OsTRM13 positively regulates salt stress tolerance in rice

Journal of Experimental Botany. (2017). 68(7): 1479-1491. (IF: 6.9; Times Cited: 35)

Youmei Wang#, Dongqin Li#, Junbao Gao, Xukai Li, Rui Zhang, Xiaohuan Jin, Zhen Hu, Bo Zheng, Staffan Persson, Peng Chen*.

AtCesA8-driven OsSUS3 expression leads to largely enhanced biomass saccharifcation and lodging resistance by distinctively altering lignocellulose features in rice

AtCesA8-driven OsSUS3 expression leads to largely enhanced biomass saccharifcation and lodging resistance by distinctively altering lignocellulose features in rice

Biotechnology for Biofuels. (2017). 10: 221. (IF: 6.3; Times Cited: 70)

Chunfen Fan, Shengqiu Feng, Jiangfeng Huang, Yanting Wang, Leiming Wu, Xukai Li, Lingqiang Wang, Tao Xia, Jingyang Li, Xiwen Cai, Liangcai Peng*.

A precise and consistent assay for major wall polymer features that distinctively determine biomass saccharifcation in transgenic rice by near-infrared spectroscop

A precise and consistent assay for major wall polymer features that distinctively determine biomass saccharifcation in transgenic rice by near-infrared spectroscopy

Biotechnology for Biofuels. (2017). 10(1): 1-14. (IF: 6.3; Times Cited: 32)

Jiangfeng Huang, Ying Li, Yanting Wang, Yuanyuan Chen, Mingyong Liu, Youmei Wang, Ran Zhang, Shiguang Zhou, Jingyang Li, Yuanyuan Tu, Bo Hao, Liangcai Peng, Tao Xia*.

Identification of tRNA nucleoside modification genes critical for stress response and development in rice and Arabidopsis

Identification of tRNA nucleoside modification genes critical for stress response and development in rice and Arabidopsis

BMC Plant Biology. (2017). 17: 261. (IF: 5.3; Times Cited: 42)

Youmei Wang, Chaoqun Pang, Xukai Li, Zhen Hu, Zhengyi Lv, Bo Zheng, Peng Chen*.

Sweet sorghum and Miscanthus: Two potential dedicated bioenergy crops in China

Sweet sorghum and Miscanthus: Two potential dedicated bioenergy crops in China

Journal of Integrative Agriculture. (2017). 16(6): 1236-1243. (IF: 4.8; Times Cited: 18)

Shi-wei Hu, Leiming Wu, Staffan Persson, Liangcai Peng, Shengqiu Feng*.

Domestication of rice has reduced the occurrence of transposable elements within gene coding regions

Domestication of rice has reduced the occurrence of transposable elements within gene coding regions

BMC Genomics. (2017). 18: 55. (IF: 4.4; Times Cited: 27)

Xukai Li, Kai Guo, Xiaobo Zhu, Peng Chen, Ying Li, Guosheng Xie, Lingqiang Wang, Yanting Wang, Staffan Persson*, Liangcai Peng*.

Gene profling of plant cell wall biosynthesis for genetic enhancing biomass enzymatic saccharifcation in cereal crops

Gene profling of plant cell wall biosynthesis for genetic enhancing biomass enzymatic saccharifcation in cereal crops

Journal of Plant Biochemistry & Physiology. (2017). 5(1): 1000179. (IF: 1.525; Times Cited: 3)

Yang Wang, Xukai Li, Kai Guo, Liangcai Peng, Yanting Wang*.

植物次生细胞壁加厚过程的转录调控

植物次生细胞壁加厚过程的转录调控

植物生理学报. (2017). 53(9): 1598-1608. (Times Cited: 32)

朱晓博, 张贵粉, 陈鹏*.

首页上页1下页尾页