Literature DB >> 20639405

Tyloses and phenolic deposits in xylem vessels impede water transport in low-lignin transgenic poplars: a study by cryo-fluorescence microscopy.

Peter Kitin1, Steven L Voelker, Frederick C Meinzer, Hans Beeckman, Steven H Strauss, Barbara Lachenbruch.   

Abstract

Of 14 transgenic poplar genotypes (Populus tremula × Populus alba) with antisense 4-coumarate:coenzyme A ligase that were grown in the field for 2 years, five that had substantial lignin reductions also had greatly reduced xylem-specific conductivity compared with that of control trees and those transgenic events with small reductions in lignin. For the two events with the lowest xylem lignin contents (greater than 40% reduction), we used light microscopy methods and acid fuchsin dye ascent studies to clarify what caused their reduced transport efficiency. A novel protocol involving dye stabilization and cryo-fluorescence microscopy enabled us to visualize the dye at the cellular level and to identify water-conducting pathways in the xylem. Cryo-fixed branch segments were planed in the frozen state on a sliding cryo-microtome and observed with an epifluorescence microscope equipped with a cryo-stage. We could then distinguish clearly between phenolic-occluded vessels, conductive (stain-filled) vessels, and nonconductive (water- or gas-filled) vessels. Low-lignin trees contained areas of nonconductive, brown xylem with patches of collapsed cells and patches of noncollapsed cells filled with phenolics. In contrast, phenolics and nonconductive vessels were rarely observed in normal colored wood of the low-lignin events. The results of cryo-fluorescence light microscopy were supported by observations with a confocal microscope after freeze drying of cryo-planed samples. Moreover, after extraction of the phenolics, confocal microscopy revealed that many of the vessels in the nonconductive xylem were blocked with tyloses. We conclude that reduced transport efficiency of the transgenic low-lignin xylem was largely caused by blockages from tyloses and phenolic deposits within vessels rather than by xylem collapse.

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Year:  2010        PMID: 20639405      PMCID: PMC2949004          DOI: 10.1104/pp.110.156224

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  64 in total

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Journal:  Plant Physiol       Date:  2003-12-04       Impact factor: 8.340

2.  Embolism repair and xylem tension: Do We need a miracle?

Authors: 
Journal:  Plant Physiol       Date:  1999-05       Impact factor: 8.340

3.  Genome-wide analysis of the structural genes regulating defense phenylpropanoid metabolism in Populus.

Authors:  Chung-Jui Tsai; Scott A Harding; Timothy J Tschaplinski; Richard L Lindroth; Yinan Yuan
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Review 4.  The control of stomata by water balance.

Authors:  Thomas N Buckley
Journal:  New Phytol       Date:  2005-11       Impact factor: 10.151

5.  Stiffness gradients in vascular bundles of the palm Washingtonia robusta.

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Journal:  Proc Biol Sci       Date:  2008-10-07       Impact factor: 5.349

6.  Characterization in vitro and in vivo of the putative multigene 4-coumarate:CoA ligase network in Arabidopsis: syringyl lignin and sinapate/sinapyl alcohol derivative formation.

Authors:  Michael A Costa; Diana L Bedgar; Syed G A Moinuddin; Kye-Won Kim; Claudia L Cardenas; Fiona C Cochrane; Jay M Shockey; Gregory L Helms; Yoshiaki Amakura; Hironobu Takahashi; Jessica K Milhollan; Laurence B Davin; John Browse; Norman G Lewis
Journal:  Phytochemistry       Date:  2005-09       Impact factor: 4.072

7.  In situ analysis of lignins in transgenic tobacco reveals a differential impact of individual transformations on the spatial patterns of lignin deposition at the cellular and subcellular levels.

Authors:  M Chabannes; K Ruel; A Yoshinaga; B Chabbert; A Jauneau; J P Joseleau; A M Boudet
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8.  Evolution of xylem lignification and hydrogel transport regulation.

Authors:  C Kevin Boyce; Maciej A Zwieniecki; George D Cody; Chris Jacobsen; Sue Wirick; Andrew H Knoll; N Michele Holbrook
Journal:  Proc Natl Acad Sci U S A       Date:  2004-12-01       Impact factor: 11.205

9.  Molecular phenotyping of lignin-modified tobacco reveals associated changes in cell-wall metabolism, primary metabolism, stress metabolism and photorespiration.

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  23 in total

1.  Antisense down-regulation of 4CL expression alters lignification, tree growth, and saccharification potential of field-grown poplar.

Authors:  Steven L Voelker; Barbara Lachenbruch; Frederick C Meinzer; Michael Jourdes; Chanyoung Ki; Ann M Patten; Laurence B Davin; Norman G Lewis; Gerald A Tuskan; Lee Gunter; Stephen R Decker; Michael J Selig; Robert Sykes; Michael E Himmel; Peter Kitin; Olga Shevchenko; Steven H Strauss
Journal:  Plant Physiol       Date:  2010-08-20       Impact factor: 8.340

2.  Defense Responses in Aspen with Altered Pectin Methylesterase Activity Reveal the Hormonal Inducers of Tyloses.

Authors:  Joanna Leśniewska; David Öhman; Magdalena Krzesłowska; Sunita Kushwah; Maria Barciszewska-Pacak; Leszek A Kleczkowski; Björn Sundberg; Thomas Moritz; Ewa J Mellerowicz
Journal:  Plant Physiol       Date:  2016-12-06       Impact factor: 8.340

3.  Complete proteomic-based enzyme reaction and inhibition kinetics reveal how monolignol biosynthetic enzyme families affect metabolic flux and lignin in Populus trichocarpa.

Authors:  Jack P Wang; Punith P Naik; Hsi-Chuan Chen; Rui Shi; Chien-Yuan Lin; Jie Liu; Christopher M Shuford; Quanzi Li; Ying-Hsuan Sun; Sermsawat Tunlaya-Anukit; Cranos M Williams; David C Muddiman; Joel J Ducoste; Ronald R Sederoff; Vincent L Chiang
Journal:  Plant Cell       Date:  2014-03-11       Impact factor: 11.277

4.  Down-regulation of Leucaena leucocephala cinnamoyl CoA reductase (LlCCR) gene induces significant changes in phenotype, soluble phenolic pools and lignin in transgenic tobacco.

Authors:  S Prashant; M Srilakshmi Sunita; S Pramod; Ranadheer K Gupta; S Anil Kumar; S Rao Karumanchi; S K Rawal; P B Kavi Kishor
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5.  Functional trade-offs in volume allocation to xylem cell types in 75 species from the Brazilian savanna Cerrado.

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6.  The MicroRNA397b -LACCASE2 Module Regulates Root Lignification under Water and Phosphate Deficiency.

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7.  Improved saccharification and ethanol yield from field-grown transgenic poplar deficient in cinnamoyl-CoA reductase.

Authors:  Rebecca Van Acker; Jean-Charles Leplé; Dirk Aerts; Véronique Storme; Geert Goeminne; Bart Ivens; Frédéric Légée; Catherine Lapierre; Kathleen Piens; Marc C E Van Montagu; Nicholas Santoro; Clifton E Foster; John Ralph; Wim Soetaert; Gilles Pilate; Wout Boerjan
Journal:  Proc Natl Acad Sci U S A       Date:  2013-12-30       Impact factor: 11.205

8.  Engineering secondary cell wall deposition in plants.

Authors:  Fan Yang; Prajakta Mitra; Ling Zhang; Lina Prak; Yves Verhertbruggen; Jin-Sun Kim; Lan Sun; Kejian Zheng; Kexuan Tang; Manfred Auer; Henrik V Scheller; Dominique Loqué
Journal:  Plant Biotechnol J       Date:  2012-11-12       Impact factor: 9.803

9.  Histological analysis and 3D reconstruction of winter cereal crowns recovering from freezing: a unique response in oat (Avena sativa L.).

Authors:  David P Livingston; Cynthia A Henson; Tan D Tuong; Mitchell L Wise; Shyamalrau P Tallury; Stanley H Duke
Journal:  PLoS One       Date:  2013-01-14       Impact factor: 3.240

10.  Maintenance of xylem Network Transport Capacity: A Review of Embolism Repair in Vascular Plants.

Authors:  Craig R Brodersen; Andrew J McElrone
Journal:  Front Plant Sci       Date:  2013-04-24       Impact factor: 5.753

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