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Erratum to the article “The regulation from guaiacyl to syringyl lignin in the differentiating xylem of Robinia pseudoacacia” [C. R. Biologies 327 (2004) 791–797]
Comptes Rendus. Biologies, Volume 328 (2005) no. 3, pp. 297-298.
Métadonnées
Publié le :
DOI : 10.1016/j.crvi.2005.01.007
Kazuchika Yamauchi 1 ; Kazuhiko Fukushima 1

1 Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya 464-8601, Japan
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     journal = {Comptes Rendus. Biologies},
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Kazuchika Yamauchi; Kazuhiko Fukushima. Erratum to the article “The regulation from guaiacyl to syringyl lignin in the differentiating xylem of Robinia pseudoacacia” [C. R. Biologies 327 (2004) 791–797]. Comptes Rendus. Biologies, Volume 328 (2005) no. 3, pp. 297-298. doi : 10.1016/j.crvi.2005.01.007. https://comptes-rendus.academie-sciences.fr/biologies/articles/10.1016/j.crvi.2005.01.007/

Version originale du texte intégral

The publisher would like to apologize for the following errors in the article printing.

In p. 794, §3 ‘Results and discussion’: in the second sentence, the reference number [17] should have appeared as [16].

In p. 797, § ‘References’: the reference numbers of were incorrectly printed, and should have appeared like in the following list.


Bibliographie

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[2] B.J. Fergus; D.A.I. Goring The location of guaiacyl and syringyl lignins in birch xylem tissue, Holzforschung, Volume 24 (1970), pp. 113-117

[3] B.J. Fergus; D.A.I. Goring The distribution of lignin in birch wood as determined by ultraviolet microscopy, Holzforschung, Volume 24 (1970), pp. 118-124

[4] J.M. Humphreys; M.R. Hemm; C. Chapple New routes for lignin biosynthesis defined by biochemical characterization of recombinant ferulate 5-hydroxylase, a multifunctional cytochrome P450-dependent monooxygenase, Proc. Natl Acad. Sci. USA, Volume 96 (1999), pp. 10045-10050

[5] L. Li; J.L. Popko; T. Umezawa; V.L. Chiang 5-Hydroxyconiferyl aldehyde modulates enzymatic methylation for syringyl monolibnol formation, a new view of monolignol biosynthesis in angiosperms, J. Biol. Chem., Volume 275 (2000), pp. 6537-6545

[6] T. Higuchi Lignin biochemistry: Biosynthesis and biodegradation, Wood Sci. Technol., Volume 24 (1990), pp. 23-63

[7] H.L. Hardell; G.J. Leary; M. Stoll; U. Westermark Variation in lignin structures in defined morphological parts of birch, Svensk Papperstidn., Volume 83 (1980), pp. 71-74

[8] D. Guo; F. Chen; K. Inoue; J.W. Blount; R.A. Dixon Downregulation of caffeic acid 3-O-methyltransferase and caffeoyl CoA 3-O-methyltransferase in transgenic alfalfa: impacts on lignin structure and implications for the biosynthesis of G and S lignin, Plant Cell, Volume 13 (2001), pp. 73-88

[9] K. Yamauchi; S. Yasuda; K. Fukushima Evidence for the biosynthetic pathway from sinapic acid to syringyl lignin using labeled sinapic acid with stable isotope at both methoxy groups in Robinia pseudoacacia and Nerium indicum, J. Agric. Food Chem., Volume 50 (2002), pp. 3222-3227

[10] Y. Musha; D.A.I. Goring Distribution of syringyl and guaiacyl moieties in hardwoods as indicated by ultraviolet microscopy, Wood Chem. Technol., Volume 9 (1975), pp. 45-58

[11] N. Terashima; K. Fukushima; S. Tsuchiya; K. Takabe Heterogeneity in formation of lignin VII: An autoradiographic study on the formations of guaiacyl and syringyl lignin in poplar, J. Wood Chem. Technol., Volume 6 (1986), pp. 495-504

[12] N. Terashima; K. Fukushima; K. Takabe Heterogeneity in formation of lignin VIII: An autoradiographic study on the formations of guaiacyl and syringyl lignin in Magnolia kobus DC, Holzforshung (Suppl.), Volume 40 (1986), pp. 101-105

[13] S. Saka; D.A.I. Goring Localization of lignins in wood cell wall (T. Higuchi, ed.), Biosynthesis and Biodegradation of Wood Component, Academic Press Inc., Orlando, 1985, pp. 51-62

[14] G. Schoch; S. Goepfert; M. Morant; A. Hehn; D. Meyer; P. Ullmann; D. Werck-Reichhart CYP98A3 from Arabidopsis thaliana is a 3-hydroxylase of phenolic esters, a missing link in the phenylpropanoid pathway, J. Biol. Chem., Volume 276 (2001), pp. 36566-36574

[15] K. Yamauchi; S. Yasuda; K. Hamada; Y. Tsutsumi; K. Fukushima Multiform biosynthetic pathway of syringyl lignin in angiosperms, Planta, Volume 216 (2003), pp. 496-501

[16] F. Lu; J. Ralph Derivatization followed by reductive cleavage (DFRC method), a new method for lignin analysis: protocol for analysis of DFRC monomers, J. Agric. Food Chem., Volume 45 (1997), pp. 2590-2592

[17] K. Fukushima; N. Terashima Heterogeneity in formation of lignin XIII: Formations of p-hydroxyphenyl lignin in various hardwood visualized by microautoradiography, J. Wood Chem. Technol., Volume 10 (1990), pp. 413-533


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