Manipulating microRNA miR408 enhances both biomass yield and saccharification efficiency in poplar

Author:

Guo YayuORCID,Wang ShufangORCID,Yu Keji,Wang Hou-LingORCID,Xu HuiminORCID,Song ChengweiORCID,Zhao YuanyuanORCID,Wen JialongORCID,Fu ChunxiangORCID,Li Yu,Wang ShuizhongORCID,Zhang XiORCID,Zhang YanORCID,Cao YuanORCID,Shao Fenjuan,Wang Xiaohua,Deng XinORCID,Chen TongORCID,Zhao Qiao,Li LeiORCID,Wang GuodongORCID,Grünhofer PaulORCID,Schreiber LukasORCID,Li Yue,Song GuoyongORCID,Dixon Richard A.ORCID,Lin JinxingORCID

Abstract

AbstractThe conversion of lignocellulosic feedstocks to fermentable sugar for biofuel production is inefficient, and most strategies to enhance efficiency directly target lignin biosynthesis, with associated negative growth impacts. Here we demonstrate, for both laboratory- and field-grown plants, that expression of Pag-miR408 in poplar (Populus alba × P. glandulosa) significantly enhances saccharification, with no requirement for acid-pretreatment, while promoting plant growth. The overexpression plants show increased accessibility of cell walls to cellulase and scaffoldin cellulose-binding modules. Conversely, Pag-miR408 loss-of-function poplar shows decreased cell wall accessibility. Overexpression of Pag-miR408 targets three Pag-LACCASES, delays lignification, and modestly reduces lignin content, S/G ratio and degree of lignin polymerization. Meanwhile, the LACCASE loss of function mutants exhibit significantly increased growth and cell wall accessibility in xylem. Our study shows how Pag-miR408 regulates lignification and secondary growth, and suggest an effective approach towards enhancing biomass yield and saccharification efficiency in a major bioenergy crop.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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