| Literature DB >> 25393559 |
Wenbo Zhang1, Rui Wei1,2, Su Chen1, Jing Jiang1, Huiyu Li1, Haijiao Huang1, Guang Yang1, Shuo Wang1, Hairong Wei1,3, Guifeng Liu1.
Abstract
We cloned a Cinnamoyl-CoA Reductase gene (BpCCR1) from an apical meristem and first internode of Betula platyphylla and characterized its functions in lignin biosynthesis, wood formation and tree growth through transgenic approaches. We generated overexpression and suppression transgenic lines and analyzed them in comparison with the wild-type in terms of lignin content, anatomical characteristics, height and biomass. We found that BpCCR1 overexpression could increase lignin content up to 14.6%, and its underexpression decreased lignin content by 6.3%. Surprisingly, modification of BpCCR1 expression led to conspicuous changes in wood characteristics, including xylem vessel number and arrangement, and secondary wall thickness. The growth of transgenic trees in terms of height was also significantly influenced by the modification of BpCCR1 genes. We discuss the functions of BpCCR1 in the context of a phylogenetic tree built with CCR genes from multiple species.Entities:
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Year: 2014 PMID: 25393559 DOI: 10.1111/ppl.12306
Source DB: PubMed Journal: Physiol Plant ISSN: 0031-9317 Impact factor: 4.500