Comparative Analyses of Anatomical Structure, Phytohormone Levels, and Gene Expression Profiles Reveal Potential Dwarfing Mechanisms in Shengyin Bamboo ( Phyllostachys edulis f. tubaeformis )

Moso bamboo ( ) is one of the most important bamboo species in China and the third most important plant species for timber production. However, the dwarf variant of moso bamboo, f. (shengyin bamboo), which has shortened internodes, is not well studied. We used anatomical, hormonal, and transcriptomi...

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Veröffentlicht in:International journal of molecular sciences 2018-06, Vol.19 (6), p.1697
Hauptverfasser: Wang, Tao, Liu, Lei, Wang, Xiaojing, Liang, Lixiong, Yue, Jinjun, Li, Lubin
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Sprache:eng
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Zusammenfassung:Moso bamboo ( ) is one of the most important bamboo species in China and the third most important plant species for timber production. However, the dwarf variant of moso bamboo, f. (shengyin bamboo), which has shortened internodes, is not well studied. We used anatomical, hormonal, and transcriptomic approaches to study internode shortening and shoot growth in dwarf shengyin and wild moso bamboo. Phenotypic and anatomical observations showed that dwarfing in shengyin bamboo is due to reduced internode length, and the culm fibers in shengyin bamboo are significantly shorter and thicker than in wild moso bamboo. We measured the levels of endogenous hormones in the internodes and found that shengyin bamboo had lower levels of four hormones while two others were higher in wild moso bamboo. Comparative transcriptome analyses revealed a potential regulating mechanism for internode length involving genes for cell wall loosening-related enzymes and the cellulose and lignin biosynthesis pathways. Genes involved in hormone biosynthesis and signal transduction, especially those that showed significant differential expression in the internodes between shengyin and wild moso bamboo, may be important in determining the shortened internode phenotype. A hypothesis involving possible cross-talk between phytohormone signaling cues and cell wall expansion leading to dwarfism in shengyin bamboo is proposed. The results presented here provide a comprehensive exploration of the biological mechanisms that determine internode shortening in moso bamboo.
ISSN:1422-0067
1661-6596
1422-0067
DOI:10.3390/ijms19061697