Integrated genetic and chemical modification with rice straw for maximum bioethanol production
Yuanhang Ai(Huazhong Agricultural University), Liangcai Peng(Huazhong Agricultural University), Mengdan Sun(Huazhong Agricultural University), Limin Cao(Capital Normal University), Ran Zhang(Huazhong Agricultural University), Shengqiu Feng(Huazhong Agricultural University), Jun Lü(Hubei University of Arts and Science), Zhen Hu(Shandong University), Peng Liu(China West Normal University), Tao Xia(Anhui Medical University), Yanting Wang(Huazhong Agricultural University), Huizhen Hu(Huazhong Agricultural University), Youmei Wang(Henan University), Hao Peng(Yangtze Normal University)
Cited by 21
Related Papers
Methionine restriction extends lifespan of Drosophila melanogaster under conditions of low amino-acid status
|Nature Communications|2014|293
Temperature-Sensitive Alleles of <i>RSW2</i> Link the KORRIGAN Endo-1,4-β-Glucanase to Cellulose Synthesis and Cytokinesis in Arabidopsis
|PLANT PHYSIOLOGY|2001|271
Os<scp>CESA</scp>9 conserved‐site mutation leads to largely enhanced plant lodging resistance and biomass enzymatic saccharification by reducing cellulose <scp>DP</scp> and crystallinity in rice
|Plant Biotechnology Journal|2017|212
Molecular Design for In‐Situ Polymerized Solid Polymer Electrolytes Enabling Stable Cycling of Lithium Metal Batteries
|Advanced Energy Materials|2024|205