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  1. Jul 31, 2024 · We made some key new discoveries in this survey – an entirely novel form of wood ultrastructure never observed before and a family of gymnosperms with angiosperm-like hardwood instead of the typical gymnosperm softwood.

  2. Aug 1, 2024 · The survey by researchers at Jagiellonian University, Poland, and Cambridge University explored how wood ultrastructure evolved across softwoods (gymnosperms such as pines and conifers) and...

  3. Sep 11, 2024 · We made some key new discoveries in this survey – an entirely novel form of wood ultrastructure never observed before and a family of gymnosperms with angiosperm-like hardwood instead of the typical gymnosperm softwood.

  4. Jul 31, 2024 · We made some key new discoveries in this survey – an entirely novel form of wood ultrastructure never observed before and a family of gymnosperms with angiosperm-like hardwood instead of the typical gymnosperm softwood,” Łyczakowski said.

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  5. Aug 4, 2024 · “Despite its importance, we know little about how wood’s structure evolves and adapts to the external environment,” Dr Łyczakowski said: “We made some key new discoveries in this survey—an entirely novel form of wood ultrastructure never observed before and a family of gymnosperms with angiosperm-like hardwood instead of the typical ...

  6. Aug 1, 2024 · The discovery was part of a survey of 33 tree species from the Cambridge University Botanic Garden’s Living Collections exploring how wood ultrastructure evolved across softwoods (gymnosperms such as pines and conifers) and hardwoods (angiosperms including oak, ash, birch, and eucalypts).

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  8. Aug 1, 2024 · The survey aimed to explore how wood ultrastructure evolved in both gymnosperms (such as pines and conifers) and angiosperms (like oak, ash, birch, and eucalypts).

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