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Control of sporophyte secondary cell wall development in Marchantia by a Class II KNOX gene

Dierschke, Tom; Levins, Jonathan; Lampugnani, Edwin R; Ebert, Berit; Zachgo, Sabine; Bowman, John L (2024). Control of sporophyte secondary cell wall development in Marchantia by a Class II KNOX gene. Current Biology, 34(22):5213-5222.e5.

Abstract

Land plants evolved from an ancestral alga around 470 mya, evolving complex multicellularity in both haploid gametophyte and diploid sporophyte generations. The evolution of water-conducting tissues in the sporophyte generation was crucial for the success of land plants, paving the way for the colonization of a variety of terrestrial habitats. Class II KNOX (KNOX2) genes are major regulators of secondary cell wall formation and seed mucilage (pectin) deposition in flowering plants. Here, we show that, in the liverwort Marchantia polymorpha, loss-of-function alleles of the KNOX2 ortholog, MpKNOX2, or its dimerization partner, MpBELL1, have defects in capsule wall secondary cell wall and spore pectin biosynthesis. Both genes are expressed in the gametophytic calyptra surrounding the sporophyte and exert maternal effects, suggesting intergenerational regulation from the maternal gametophyte to the sporophytic embryo. These findings also suggest the presence of a secondary wall genetic program in the non-vascular liverwort capsule wall, with attributes of secondary walls in vascular tissues.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:07 Faculty of Science > Department of Plant and Microbial Biology
Dewey Decimal Classification:580 Plants (Botany)
Scopus Subject Areas:Life Sciences > General Biochemistry, Genetics and Molecular Biology
Life Sciences > General Agricultural and Biological Sciences
Language:English
Date:1 November 2024
Deposited On:07 Jan 2025 10:03
Last Modified:28 Feb 2025 02:40
Publisher:Cell Press (Elsevier)
ISSN:0960-9822
OA Status:Closed
Free access at:Publisher DOI. An embargo period may apply.
Publisher DOI:https://doi.org/10.1016/j.cub.2024.09.061
PubMed ID:39447574
Project Information:
  • Funder: The University of Melbourne Botany Foundation
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  • Funder: Australia and Pacific Science Foundation
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  • Funder: Australian Academy of Science
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  • Funder: Gebauer Foundation
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  • Funder: University of Zurich Foundation
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