Isolation and characterization of a new, full‐length cellulose synthase cDNA, PtrCesA5 from developing xylem of aspen trees

Author:

Kalluri Udaya C.,Joshi Chandrashekhar P.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

Reference7 articles.

1. Haigler CH , Ivanova‐Datcheva M, Hogan PS, Salnikov VV, Hwang S, Martin LK, Delmer DP. 2001. Carbon partitioning to cellulose synthesis. Plant Molecular Biology47,29–51.

2. Holland N , Holland D, Helentjaris T, Dhugga K, Xoconostle‐Cazares B, Delmer DP. 2000. A comparative analysis of the cellulose synthase (CesA) gene family in plants. Plant Physiology123,1313–1323.

3. Joshi CP . 2003. Xylem‐specific and tension stress‐responsive expression of cellulose synthase genes from aspen trees. Applied Biochemistry and Biotechnology105,17–23.

4. Laosinchai W , Cui X, Brown Jr RM. 2000. A full length cDNA of cotton cellulose synthase has high homology with the Arabidopsis RSW1 gene and the cotton CelA1 gene (Accession No. AF200453) (PGR00‐002). Plant Physiology122, 291.

5. Samuga A , Joshi CP. 2002. A new cellulose synthase gene (PtrCesA2) from aspen xylem is orthologous to Arabidopsis AtCesA7 (irx3) gene associated with secondary cell wall synthesis. Gene296,37–44.

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