A Whole Plant Herbaceous Angiosperm from the Middle Jurassic of China
Authors:
Han et al
Abstract:
In contrast to woody habit with secondary growth, truthful herbaceous habit lacking secondary growth is restricted to angiosperms among seed plants. Although angiosperms might have occurred as early as in the Triassic and herbaceous habit theoretically may have been well adopted by pioneer angiosperms, pre-Cretaceous herbs are missing hitherto, leaving the origin of herbs and evolution of herbaceous angiosperms mysterious. Here we report Juraherba bodae gen. et sp. nov, a whole plant herbaceous angiosperm, from the Middle Jurassic (greater than 164 Ma) at Daohugou Village, Inner Mongolia, China, a fossil Lagerst?tten that is worldwide famous for various fossil finds. The angiospermous affinity of Juraherba is ensured by its enclosed ovules/seeds. The plant is small but complete, with physically connected hairy root, stem, leaves, and fructifications. The Middle Jurassic age recommends Juraherba as the earliest record of herbaceous seed plants, demanding a refresh look at the evolutionary history of angiosperms.
Showing posts with label flowering plants. Show all posts
Showing posts with label flowering plants. Show all posts
Friday, February 12, 2016
Better Retcon Your Angiosperm (Flowering Plant) Origin Story! Herbaceous Angiosperm Found From Callovian Jurassic China
Labels:
angiosperms,
Callovian,
china,
flowering plants,
fossils,
Jurassic,
mesozoic,
paleobotany,
plants
Friday, October 16, 2015
Neandertals Liked to Collect Flowers in Iraq
Marta Fiacconi and Chris Hunt have undertaken an analysis of pollen samples from the surface of the sediments of Shanidar Cave, Iraq.
Shanidar is one of the most important Neandertal sites known in West Asia, with the partial skeletons of nine Mousterian individuals. The excavator, Ralph Solecki, and Arlette Leroi-Gourhan claimed that flowers may have been deposited deliberately with one of the Neandertal bodies, Shanidar IV. The evidence was unusual concentrations of pollen within the sediment surrounding the skeleton.a
link.
Labels:
culture,
flowering plants,
hominins,
homo neanderthalensis,
neandertals,
paleoanthropology,
pollen
Thursday, October 01, 2015
Diverse Flowering Plant Pollen Found in Albian Cretaceous China
Palynology of the Early Cretaceous Hanxia Section in the Jiuquan Basin, Northwest China: The discovery of diverse early angiosperm pollen and paleoclimatic significance
Authors:
Zhang et al
Abstract:
The Lower Cretaceous deposits of the Jiuquan Basin (Northwestern China) located in central Asia are famous for the abundant and diverse fossil products with distinct characteristics of Jehol Biota. However, few early angiosperm remains have been published in their entirety. This study presents a palynomorph record from the recently reported fossil-bearing Zhonggou Formation of the Hanxia Section in the Jiuquan Basin. Here, we first discovered abundant and diverse angiosperm pollen with 16 taxa, which can be classified into four morphological types: tricolpate, polyaperturate, monosulcate and etrachotomocolpate apertures. The palynomorph assemblages contain a large number of biostratigraphically significant palynomorphs, such as numerically abundant tricolpate and rare polyaperturate angiosperm pollen grains, which indicate an Early Albian age for the Zhonggou Formation of the Hanxia Section. The overall palynomorph assemblage is dominated by the Perinopollenites, followed by the Classopollis; bisaccate pollen indicate Taxodiaceae-dominant vegetation types. As such, a relatively temperate and humid climatic condition is suggested for this area. Furthermore, two palynomorph assemblages can be distinguished in a stratigraphically upward order with an obviously increasing Classopollis content, indicating a gradual aridification trend during the Early Albian. This climatic change may affect the diversification of early angiosperms based on the correlation with the stratigraphic distribution of discovered angiosperm pollen.
Labels:
albian,
angiosperms,
cretaceous,
flowering plants,
mesozoic,
paleobotany,
paleoecology,
pollen
Monday, August 17, 2015
Montsechia vidalii: Earliest Known Flowering Planet Discovered in Hautervian Cretaceous Spain
Indiana University paleobotanist David Dilcher and colleagues in Europe have identified a 125 million- to 130 million-year-old freshwater plant as one of earliest flowering plants on Earth.
The finding, reported Aug. 17 in the Proceedings of the National Academy of Sciences, represents a major change in the presumed form of one of the planet's earliest flowers, known as angiosperms.
"This discovery raises significant questions about the early evolutionary history of flowering plants, as well as the role of these plants in the evolution of other plant and animal life," said Dilcher, an emeritus professor in the IU Bloomington College of Arts and Sciences' Department of Geological Sciences.
The aquatic plant, Montsechia vidalii, once grew abundantly in freshwater lakes in what are now mountainous regions in Spain. Fossils of the plant were first discovered more than 100 years ago in the limestone deposits of the Iberian Range in central Spain and in the Montsec Range of the Pyrenees, near the country's border with France.
Also previously proposed as one of the earliest flowers is Archaefructus sinensis, an aquatic plant found in China.
Labels:
angiosperms,
cretaceous,
Europe,
flowering plants,
fossils,
Hauterivian,
mesozoic,
paleobotany,
spain
Tuesday, March 17, 2015
Euanthus paniigen: a Perfect Jurassic Flower Proving Angoisperms Much Older Than Thought
A perfect flower from the Jurassic of China
Authors:
Liu et al
Abstract:
Flower, enclosed ovule and tetrasporangiate anther are three major characters distinguishing angiosperms from other seed plants. Morphologically, typical flowers are characterised by an organisation with gynoecium and androecium surrounded by corolla and calyx. Theoretically, flowers are derived from their counterparts in ancient ancestral gymnosperms. However, as for when, how and from which groups, there is no consensus among botanists yet. Although angiosperm-like pollen and angiosperms have been claimed in the Triassic and Jurassic, typical flowers with the aforesaid three key characters are still missing in the pre-Cretaceous age, making many interpretations of flower evolution tentative. Thus searching for flower in the pre-Cretaceous has been a tantalising task for palaeobotanists for a long time. Here, we report a typical flower, Euanthus paniigen. et sp. nov., from the Middle–Late Jurassic of Liaoning, China. Euanthus has sepals, petals, androecium with tetrasporangiate dithecate anthers and gynoecium with enclosed ovules, organised just like in perfect flowers of extant angiosperms. The discovery of Euanthus implies that typical angiosperm flowers have already been in place in the Jurassic, and provides a new insight unavailable otherwise for the evolution of flowers.
Labels:
angiosperms,
china,
flowering plants,
Jurassic,
mesozoic,
paleobotany
Sunday, June 08, 2014
Evidence of a Flower-Pollinating, Nector-Eating Bird From Eocene Paleogene Germany
Eocene fossil is earliest evidence of flower-visiting by birds
Authors:
Mayr et al
Abstract:
Birds are important pollinators, but the evolutionary history of ornithophily (bird pollination) is poorly known. Here, we report a skeleton of the avian taxon Pumiliornis from the middle Eocene of Messel in Germany with preserved stomach contents containing numerous pollen grains of an eudicotyledonous angiosperm. The skeletal morphology of Pumiliornis is in agreement with this bird having been a, presumably nectarivorous, flower-visitor. It represents the earliest and first direct fossil evidence of flower-visiting by birds and indicates a minimum age of 47 million years for the origin of bird–flower interactions. As Pumiliornis does not belong to any of the modern groups of flower-visiting birds, the origin of ornithophily in some angiosperm lineages may have predated that of their extant avian pollinators.
Labels:
birds,
eocene,
flowering plants,
fossils,
germany,
nectarivory,
paleobiology,
paleogene,
paleontology
Sunday, December 29, 2013
Mapping the Plant Adaptations to Cold
A team of researchers studying plants has assembled the largest dated evolutionary tree, using it to show the order in which flowering plants evolved specific strategies, such as the seasonal shedding of leaves, to move into areas with cold winters. The researchers, including University of Minnesota professor Peter Reich, will publish their findings Sunday, Dec. 22 in the journal Nature.
Early flowering plants are thought to have been woody— maintaining a prominent stem above ground across years and changing weather conditions, such as maple trees—and restricted to warm, wet tropical environments. But they have since put down roots in chillier climates, dominating large swaths of the globe where freezing occurs. How they managed this expansion has long vexed researchers searching for plants' equivalent to the winter parka.
"Freezing is a challenge for plants. Their living tissues can be damaged. It's like a plant's equivalent to frostbite. Their water-conducting pipes can also be blocked by air bubbles as water freezes and thaws," said Amy Zanne, the study's lead author and an assistant professor of biology in the George Washington University's Columbian College of Arts and Sciences.
More than 25 scientists with a wide variety of expertise worked together on this study.
"We wanted to understand more about how plants came to have evolved the traits that allow them to withstand cold," Reich said.
link.
Labels:
botany,
evolution,
flowering plants,
paleobotany,
phylogenetics,
plants
Friday, December 20, 2013
The Platypus of Flowering Plants, Amborella, has its Genome Sequenced, Hints at Flowering Plant Genomic Event at Triassic-Jurassic Extinction
The newly sequenced genome of the Amborella plant addresses Darwin's "abominable mystery" -- the question of why flowers suddenly proliferated on Earth millions of years ago. The genome sequence sheds new light on a major event in the history of life on Earth: the origin of flowering plants, including all major food crop species. On 20 December 2013, a paper by the Amborella Genome Sequencing Project that includes a full description of the analyses performed by the project, as well as implications for flowering plant research, will be published in the journal Science. The paper is among three on different research areas related to the Amborella genome that will be published in the same issue of the journal.
Amborella (Amborella trichopoda) is unique as the sole survivor of an ancient evolutionary lineage that traces back to the last common ancestor of all flowering plants. The plant is a small understory tree found only on the main island of New Caledonia in the South Pacific. An effort to decipher the Amborella genome -- led by scientists at Penn State University, the University at Buffalo, the University of Florida, the University of Georgia, and the University of California-Riverside -- is uncovering evidence for the evolutionary processes that paved the way for the amazing diversity of the more than 300,000 flowering plant species we enjoy today.
This unique heritage gives Amborella a special role in the study of flowering plants. "In the same way that the genome sequence of the platypus -- a survivor of an ancient lineage -- can help us study the evolution of all mammals, the genome sequence of Amborella can help us learn about the evolution of all flowers," said Victor Albert of the University at Buffalo.
Scientists who sequenced the Amborella genome say that it provides conclusive evidence that the ancestor of all flowering plants, including Amborella, evolved following a "genome doubling event" that occurred about 200 million years ago. Some duplicated genes were lost over time but others took on new functions, including contributions to the development of floral organs.
link.
Labels:
botany,
flowering plants,
genetics,
genome,
genome sequencing,
paleobotany,
paleogenetics
Monday, December 02, 2013
Aptian Cretaceous North American Flowering Plant Found in Smithsonian Collection
A fossil in the collection of the Smithsonian Institution could represent the oldest flowering plant ever found in North America, researchers say.
University of Maryland doctoral student Nathan Jud said was looking at a batch of ancient plant fossils in the Smithsonian Natural History Museum's collections when a particular fossil caught his eye, Smithsonian.com reported Friday.
"It looked sort of like a little piece of fern, so I tried to remove a bit of the rock that was covering it to get a sense of what type of fern it was," he said. "But the more of the rock I would lift off the surface, the more fossil I found buried. What I thought had been one little piece of a leaf actually turned out to be two, connected to each other."
"Eventually, I realized this wasn't a fern at all, but some kind of early flowering plant," he said.
Reporting his work in the American Journal of Botany, Jud said the fossil, at somewhere between 125 and 115 million years old, is among the oldest flowering plants ever found in North America.
link.
Labels:
aptian,
cretaceous,
flowering plants,
fossils,
mesozoic,
North america,
paleobotany,
smithsonian
Wednesday, October 02, 2013
Angiosperm-like Pollen From Anisian Triassic Switzerland
Angiosperm-like pollen and Afropollis from the Middle Triassic (Anisian) of the Germanic Basin (Northern Switzerland)
Authors:
Peter A. Hochuli and Susanne Feist-Burkhardt
Abstract:
Here we report on angiosperm-like pollen and Afropollis from the Anisian (Middle Triassic, 247.2–242.0 Ma) of a mid-latitudinal site in Northern Switzerland. Small monosulcate pollen grains with typical reticulate (semitectate) sculpture, columellate structure of the sexine and thin nexine show close similarities to early angiosperm pollen known from the Early Cretaceous. However, they differ in their extremely thin inner layer (nexine). Six different pollen types (I–VI) are differentiated based on size, reticulation pattern, and exine structure. The described pollen grains show all the essential features of angiosperm pollen. However, considering the lack of a continuous record throughout the lower part of the Mesozoic and the comparison with the oldest Cretaceous finds we suggest an affinity to an angiosperm stem group. Together with the previously published records from the Middle Triassic of the Barents Sea area the angiosperm-like pollen grains reflect a considerable diversity of the parent plants during the Middle Triassic. Sedimentological evidence and associated palynofloras also suggest a remarkable ecological range for these plants. Associated with these grains we found pollen comparable to the genus Afropollis. Representatives of this genus are commonly recorded in Lower Cretaceous sediments of low latitudes, but until now had no record from the lower part of the Mesozoic.
Labels:
angiosperms,
anisian,
flowering plants,
mesozoic,
paleobotany,
Triassic
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