Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Early Permian fossil fruit reshapes angiosperm history

View through CrossRef
Abstract Angiosperms are the most important plant group for humans in the current earth ecosystem1. However, the origin and early history of angiosperms remain elusive and controversial 2–9. According to the over60-year-old stereotype in botany, angiosperms cannot be older than the Cretaceous10,11. However, this thinking is now facing increasing challenges in terms of fossil evidence6,12–17 and molecular estimates7–9. Apparently, serious and independent studies on new early fossil angiosperms are urgently needed to resolve this academic confrontation. In recent years, a renewed wave of interest in Permian fossil plants in Henan’s Cathaysian flora has been rekindled by the latest palaeobotanical progress15,16. During a recent field excursion in May 2025, we collected a new fossil organ from the Lower Shihezi (formerly Shihhotse)Formation (Lower Permian) of Dengfeng, Henan, China. This new fossil organ is interpreted as a large fruit and named Dengfengfructus maxima gen. et sp. nov. The seed enclosed in the fruit has a peripheral three-layered seed coat, which distinguishes the seed itself from an otherwise possible nucellus in a seed. The good preservation allows the cellular details in the seed coat and seed content to be revealed. Unlike contemporary Taiyuanostachya16 and Yuzhoua15, Dengfengfructus has a large size and a thick pericarp. This new fossil organ apparently updates and enhances the current understanding of angiosperms and their diversity in the Permian. The history of angiosperms can be dated back to the Early Permian (Palaeozoic). The former stereotype that angiosperms are restricted to the Cretaceous and later ages falls apart in front of the currently available palaeobotanical progress and molecular estimates. Obviously, we are facing a wave of botanical theories in the near future.
Springer Science and Business Media LLC
Title: Early Permian fossil fruit reshapes angiosperm history
Description:
Abstract Angiosperms are the most important plant group for humans in the current earth ecosystem1.
However, the origin and early history of angiosperms remain elusive and controversial 2–9.
According to the over60-year-old stereotype in botany, angiosperms cannot be older than the Cretaceous10,11.
However, this thinking is now facing increasing challenges in terms of fossil evidence6,12–17 and molecular estimates7–9.
Apparently, serious and independent studies on new early fossil angiosperms are urgently needed to resolve this academic confrontation.
In recent years, a renewed wave of interest in Permian fossil plants in Henan’s Cathaysian flora has been rekindled by the latest palaeobotanical progress15,16.
During a recent field excursion in May 2025, we collected a new fossil organ from the Lower Shihezi (formerly Shihhotse)Formation (Lower Permian) of Dengfeng, Henan, China.
This new fossil organ is interpreted as a large fruit and named Dengfengfructus maxima gen.
et sp.
nov.
The seed enclosed in the fruit has a peripheral three-layered seed coat, which distinguishes the seed itself from an otherwise possible nucellus in a seed.
The good preservation allows the cellular details in the seed coat and seed content to be revealed.
Unlike contemporary Taiyuanostachya16 and Yuzhoua15, Dengfengfructus has a large size and a thick pericarp.
This new fossil organ apparently updates and enhances the current understanding of angiosperms and their diversity in the Permian.
The history of angiosperms can be dated back to the Early Permian (Palaeozoic).
The former stereotype that angiosperms are restricted to the Cretaceous and later ages falls apart in front of the currently available palaeobotanical progress and molecular estimates.
Obviously, we are facing a wave of botanical theories in the near future.

Related Results

British Food Journal Volume 35 Issue 5 1933
British Food Journal Volume 35 Issue 5 1933
The Fruit Control Act, 1924, is an important one as it provides for the establishment of a Fruit Control Board, and is described as an “Act to make Provision for Control of the Fru...
Perfect Permian Fruits
Perfect Permian Fruits
Abstract Although an increasing number of angiosperms are found in the Permian, they remain sparse among the flourishing Permian fossil flora. Apparently, the earli...
Mercury (Hg) anomalies and carbon isotope excursions as a stratigraphic marker for the Permian – Triassic mass extinction
Mercury (Hg) anomalies and carbon isotope excursions as a stratigraphic marker for the Permian – Triassic mass extinction
Mercury concentration anomalies in sedimentary successions are widely considered as proxies for volcanism and together with negative carbon isotope (δ13C) excursions, are ...
Advances in Flowering Plant Evolution
Advances in Flowering Plant Evolution
AbstractFlowering plants are the most important plants in the terrestrial ecosystem at most latitudes and altitudes and they are of direct and critical economic importance to our s...
Callistophytalean pteridosperms from Permian aged floras of China
Callistophytalean pteridosperms from Permian aged floras of China
Abstract: Recent investigations into Permian aged floras from China have highlighted the widespread occurrence of callistophytalean pteridosperms that challenge previous understand...
Identification of Morphological Characteristics of Sidimpuan Snake Fruit (Salacca sumatrana Becc.)
Identification of Morphological Characteristics of Sidimpuan Snake Fruit (Salacca sumatrana Becc.)
Sidimpuan snake fruit (Salacca sumatrana Becc.) plants have several varieties, one of which has a distinctive feature in the taste and colour of the fruit flesh. The results of the...
Ripening Physiology and Storability of Saskatoon Fruit
Ripening Physiology and Storability of Saskatoon Fruit
Saskatoon (Amleanchier alnifolia Nutt.) fruit were stored into nine maturity stages based on color and size. Fruit color ranged from green (stages 1–4) to pink (5 and 6) to red (7 ...

Back to Top