TY - JOUR
T1 - Anatomical and Immunocoverage Observations on SuSy, C4H, and Pectate Lyase Family Protein Down-regulated Aspens Genotypes
AU - Sandquist, David
AU - Norell, Lennart
AU - Takabe, Keiji
AU - Yoshinaga, Arata
AU - Daniel, Geoffrey
PY - 2015
Y1 - 2015
N2 - This study aims to complement previous studies on down-regulation of sucrose synthase and cinnamate 4-hydroxylase in hybrid aspen (Bjurhager et al. 2010; Gerber et al. 2014) with a quantitative anatomical comparison (Sandquist et al. 2015). The main focus was placed on evaluating quantitative modifications to fiber morphology and lignin composition. This was achieved by combining results from light-, electron-, and UV-microscopy together with histochemical staining. Overall there was good agreement between the morphological results in this study compared to the previously published chemical and physical reports, particularly on cinnamate 4-hydroxylase down-regulated aspen. The previously reported statistical correlations between fiber lumen area and plant diameter, and fiber length and tree height (Sandquist et al. 2015) have been further refined. Knock-down of genes coding for biologically important proteins such as sucrose synthase and cinnamate 4-hydroxylase had broad spanning morphological impacts. Down-regulated sucrose synthase genotype showed significantly reduced fiber development, possibly with altered S/G ratio. Down-regulated cinnamate 4-hydroxylase genotype showed an overall reduction of lignin in fibers as indicated from both chemical staining and UV-microscopy measurements. Down-regulated pectate lyase genotype showed no overall significant effects on fiber morphology, ultrastructural, nor lignin staining.
AB - This study aims to complement previous studies on down-regulation of sucrose synthase and cinnamate 4-hydroxylase in hybrid aspen (Bjurhager et al. 2010; Gerber et al. 2014) with a quantitative anatomical comparison (Sandquist et al. 2015). The main focus was placed on evaluating quantitative modifications to fiber morphology and lignin composition. This was achieved by combining results from light-, electron-, and UV-microscopy together with histochemical staining. Overall there was good agreement between the morphological results in this study compared to the previously published chemical and physical reports, particularly on cinnamate 4-hydroxylase down-regulated aspen. The previously reported statistical correlations between fiber lumen area and plant diameter, and fiber length and tree height (Sandquist et al. 2015) have been further refined. Knock-down of genes coding for biologically important proteins such as sucrose synthase and cinnamate 4-hydroxylase had broad spanning morphological impacts. Down-regulated sucrose synthase genotype showed significantly reduced fiber development, possibly with altered S/G ratio. Down-regulated cinnamate 4-hydroxylase genotype showed an overall reduction of lignin in fibers as indicated from both chemical staining and UV-microscopy measurements. Down-regulated pectate lyase genotype showed no overall significant effects on fiber morphology, ultrastructural, nor lignin staining.
KW - Transgenic poplar
KW - wood ultrastructure
KW - cinnamate 4-hydroxylase (KR139)
KW - sucrose synthase (KR112)
KW - pectate lyase family protein (KR213)
KW - UV-microscopy
KW - lignin staining
KW - quantitative wood anatomy
KW - Transgenic poplar
KW - wood ultrastructure
KW - cinnamate 4-hydroxylase (KR139)
KW - sucrose synthase (KR112)
KW - pectate lyase family protein (KR213)
KW - UV-microscopy
KW - lignin staining
KW - quantitative wood anatomy
UR - https://res.slu.se/id/publ/75570
UR - http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_10_3_5016_Sandquist_Immunocoverage_Observations_Aspen_Genotypes
U2 - 10.15376/biores.10.3.5016-5029
DO - 10.15376/biores.10.3.5016-5029
M3 - Journal article
SN - 1930-2126
VL - 10
SP - 5016
EP - 5029
JO - BioResources
JF - BioResources
IS - 3
ER -