TY - JOUR
T1 - Ectopic expression of pectate lyase PtxtPL1-27 in aspen affects leaf cuticle development
AU - Biswal, Ajaya K.
AU - Banasiak, Alicja
AU - Fernández-Moreno, Josefina-Patricia
AU - Mitra, Madhusree
AU - Harholt, Jesper
AU - Derba-Maceluch, Marta
AU - Majda, Mateusz
AU - Kushwah, Sunita
AU - Kumar, Vikash
AU - Abreu, Ilka
AU - Sivan, Pramod
AU - Pattathil, Sivakumar
AU - Immerzeel, Peter
AU - Gorzsás, András
AU - Moritz, Thomas
AU - Hahn, Michael G.
AU - Scheller, Henrik Vibe
AU - Aharoni, Asaph
AU - Mellerowicz, Ewa J.
N1 - Publisher Copyright:
© 2025 The Author(s)
PY - 2025
Y1 - 2025
N2 - Cuticle - a hydrophobic barrier of cutin and waxes covering the outer cell wall surface of plants - enables survival in terrestrial habitats. However, it is not understood how the hydrophobic cuticle precursors travel through the homogalacturonan-rich hydrophilic cell wall. To elucidate the role of homogalacturonan in cuticle development, we disrupted its integrity by overexpressing a pectate lyase, PtxtPL1-27, in aspen. PtxtPL1-27 had pleiotropic effects on shoot development, including the reduction of cuticle thickness and changes in cutin and wax composition, but the expression of cutin biosynthetic genes was little affected. Despite a reduction in homogalacturonan content in the leaves, labeling with the homogalacturonan-specific antibody JIM5 in the outer epidermal cell wall layer increased and displayed an altered pattern. Moreover, the ultrastructure of cell walls was changed concomitant with lipid accumulation. We propose that the disruption of homogalacturonan integrity affected the cutinsome-dependent transport and polymerization of cutin monomers in the cell wall.
AB - Cuticle - a hydrophobic barrier of cutin and waxes covering the outer cell wall surface of plants - enables survival in terrestrial habitats. However, it is not understood how the hydrophobic cuticle precursors travel through the homogalacturonan-rich hydrophilic cell wall. To elucidate the role of homogalacturonan in cuticle development, we disrupted its integrity by overexpressing a pectate lyase, PtxtPL1-27, in aspen. PtxtPL1-27 had pleiotropic effects on shoot development, including the reduction of cuticle thickness and changes in cutin and wax composition, but the expression of cutin biosynthetic genes was little affected. Despite a reduction in homogalacturonan content in the leaves, labeling with the homogalacturonan-specific antibody JIM5 in the outer epidermal cell wall layer increased and displayed an altered pattern. Moreover, the ultrastructure of cell walls was changed concomitant with lipid accumulation. We propose that the disruption of homogalacturonan integrity affected the cutinsome-dependent transport and polymerization of cutin monomers in the cell wall.
UR - https://res.slu.se/id/publ/144903
U2 - 10.1016/j.isci.2025.113963
DO - 10.1016/j.isci.2025.113963
M3 - Journal article
C2 - 41341838
SN - 2589-0042
VL - 28
JO - iScience
JF - iScience
IS - 12
M1 - 113963
ER -