Showing posts with label Glover. Show all posts
Showing posts with label Glover. Show all posts

Wednesday, January 9, 2013

Director news

An announcment from David Baulcombe:

I am pleased to announce that Beverley Glover will be the next Director of the Botanic Garden. She will take up her post in July 2013. This is excellent news for her, for the Garden and for Plant Sciences generally.
Beverley's current research.
Botanic Garden news announcment

Another happy development in the Botanic Garden is the news that Ottoline Leyser will be the next Director of the Sainsbury Laboratory. Best wishes to her also as she takes on this exciting challenge.
Ottoline's current research.

Friday, February 3, 2012

Three articles in Research Horizons magazine

Under the Microscope #5 – Daisy
In this video Dr Beverley Glover explains how a daisy is a collection of tiny flowers grouped together to make it look like a single big flower. Read more.

Flower power: how to get ahead in advertising
Some plants go to extraordinary lengths to attract pollinators. A unique collaboration between plant scientists and physicists is revealing the full extent of botanical advertising. Read more.

Canopy commerce: forest conservation and poverty alleviation
Innovative approaches for protecting the future of Sierra Leone's Gola Forest - globally important for its biodiversity and its carbon reserves - are being developed by a collaboration of conservation agencies and University of Cambridge researchers. Read more.

Wednesday, December 14, 2011

Scientists discover why buttercups reflect yellow on chins – and it doesn’t have anything to do with whether you like butter


New research sheds light on children's game and provides insight into pollination

Scientists have found that the distinctive glossiness of the buttercup flower (Ranunculus repens), which children like to shine under the chin to test whether their friends like butter, is related to its unique anatomical structure. Their findings were published today, 14 December, in the Royal Society journal Interface.

The researchers discovered that the buttercup petal's unique bright and glossy appearance is the result of the interplay between its different layers. In particular, the strong yellow reflection responsible for the chin illumination is mainly due to the epidermal layer of the petal that reflects yellow light with an intensity that is comparable to glass.

Scientists have been interested in how the buttercup flower works for over a century. They have previously shown that the reflected colour is yellow due to the absorption of the colours in the blue-green region of the spectrum by the carotenoid pigment in the petals. As the blue-green light is absorbed, the light in the other spectral regions (in this case, primarily yellow) is reflected. It has also been known for many years that the epidermal layer of the petals is composed of very flat cells, providing strong reflection.

This new study shows how the buttercup's exceptionally bright appearance is a result of a special feature of the petal structure. The epidermal layer of cells has not one but two extremely flat surfaces from which light is reflected. One is the top of the cells, the other exists because the epidermis is separated from the lower layers of the petal by an air gap. Reflection of light by the smooth surface of the cells and by the air layer effectively doubles the gloss of the petal, explaining why buttercups are so much better at reflecting light under your chin than any other flower.

The researchers also found that the buttercup reflects a significant amount of UV light. As many pollinators, including bees, have eyes sensitive in the UV region, this provides insight into how the buttercup uses its unique appearance to attract insects.

Dr Silvia Vignolini, from the University of Cambridge’s Department of Physics (Cavendish Laboratory), explained the importance of the buttercup’s unique appearance: "Although many different factors, such as scent and temperature, influence the relationships between pollinators and flowers, the visual appearance of flowers is one of the most important factors in this communication. Flowers develop brilliant colour, or additional cues, such as glossiness - in the case of the buttercup - that contribute to make the optical response of the flower unique. Moreover, the glossiness might also mimic the presence of nectar droplets on the petals, making them that much more attractive."

Dr Beverley Glover, Department of Plant Sciences, said: "This phenomenon has intrigued scientists and laymen alike for centuries. Our research provides exciting insight into not only a children’s game but also into the lengths to which flowers will go to attract pollinators."

Professor Ulli Steiner, from the Nanophotonics Centre at the Cavendish Laboratory, the University of Cambridge’s Department of Physics, said: "It is fun to revisit a problem that is more than one century old and, using modern methods, discover something new. The strong collaboration between Physics and the Plant Sciences has enabled this."


The paper ‘Directional scattering from the glossy flower of Ranunculus: how the buttercup lights up your chin’ will be published in the 14 December edition of the Royal Society journal Interface.

Monday, July 4, 2011

How flowers use a touch of bling to woo the bees


Beetles use it, birds use it. Plants use it too. Iridescence is the shimmery colour effect that makes things eye-catching. Tilt a CD in your hands and you will see it change through all the colours of the rainbow. CDs are clear plastic: they appear brightly coloured because the tiny data grooves on their surface reflect different wavelengths of light at different angles. This type of colour is called structural colour to distinguish it from pigment colour, colour created by chemicals that absorb light.

At Science Live, the Royal Society Summer Science Exhibition in London this week (5-10 July), a team of researchers from the University of Cambridge will present some of the latest research into structural colours in flowers. This phenomenon was only identified in 2009 when hibiscus flowers were shown to use the same trick as CDs. Plant scientists have collaborated with physicists to create a series of interactive displays. How nature dresses to impress explores the science of colour in plants, and shows in particular how some flowers use structural colour to give them the edge in attracting pollinators.


Plants use animals, such as bees, to carry pollen from one flower to another so that fertilisation can take place. To attract pollinators, flowers offer a reward such as sugary nectar. The bright colours of flowers act as adverts, making them visible against a green background. Structural colour can be very intense, and makes flowers even more vivid and irresistible to pollinators. Visitors to Science Live will be able to watch a colony of live bumble bees explore different objects, and observe how they select between varying colour effects.


It used to be thought that plants with structural colours were exotic rarities. But some of our best-known garden flowers, such as tulips, are now known to have them. They use nanostructures – surface grooves or layers of different materials - that cause interference and allow some colours of light to be reflected while others pass through the flower. Only some of the colours produced by these nanostructures are visible to the human eye, which explains why scientists have only just begun to investigate them: until quite recently they were simply not known to exist.

Presenting their research to the public in the highly interactive environment of Science Live will be plant scientists from the University of Cambridge led by Dr Beverley Glover, who heads the Evolution and Development lab in the Department of Plant Sciences. She and her team have worked with Professors Ulli Steiner and Jeremy Baumberg from the Nanophotonics Centre at the Cavendish Laboratory to illustrate the interaction between flower colours and the physics of light. "We're really keen to show the public, and school students in particular, how biology and physics interact and how exciting it is to explore the ways that plants and animals play tricks with the light." The exhibit also includes collaborative work from Professor Pete Vukusic from the University of Exeter and Dr Lucas Joppa from Microsoft Research Cambridge.

Visitors to Science Live will be able to test their skills in a specially-devised "Nanoblocks" game which will allow them to design their own nanostructure and see what colours it would produce to the human eye and to a bee’s eye. Every hour, one of the Cambridge University scientists taking part in the exhibition will perform an "interference dance" with bubbles – devised to show how interactions between different wavelengths of light can result in spectacular colours. Beverley says "We hope that people will find this a fun way of learning about the physics of colour - I certainly enjoy watching my physicist colleagues dancing!".

How nature dresses to impress is one of 22 displays at the Royal Society Summer Science Exhibition in London, open to the public 5-10 July, no charge. For full details go to http://royalsociety.org/summer-science/2011/

How nature dresses to impress has its own website at http://www.colours.phy.cam.ac.uk/

Wednesday, March 30, 2011

Beverley Glover awarded the William Bate Hardy Prize

The Council of the Cambridge Philosophical Society unanimously agreed with its nominating committee that Dr Beverley Glover, jointly with Dr Peter Forster, should be awarded the William Bate Hardy Prize for 2010.

The Prize is founded in memory of Sir William Bate Hardy (1864-1934) who was a Fellow of the Cambridge Philosophical Society. It is awarded once in three years “for the best original memoir, investigation or discovery by a member of the University of Cambridge in connection with Biological Science that may have been published during the three years immediately preceding”.

Since the awards began in 1965, five of the twenty-two previous prize winners have gone on to win Nobel Prizes in either chemistry or physiology and medicine.

Wednesday, May 26, 2010

Bicentenary Medal for plant scientist

Dr Beverley Glover has been awarded the Linnean Society Bicentenary Medal in recognition of the exceptional quality of her contributions to botany.

More information

In addition, from October 1st Dr Glover will be promoted to Reader.

Tuesday, September 15, 2009

Beverley Glover wins book award

The British Ecological Society in partnership with the Marsh Christian Trust announced yesterday that the 2009 Marsh Ecology Book of the Year award will be presented to Dr Beverley Glover of the University of Cambridge's Department of Plant Sciences.

This award - presented for the best written work on ecology - is for Dr Glover's book "Understanding Flowers and Flowering". Described by the judges as "ambitious and lucid", the book covers the subject from ecological and evolutionary perspectives, and in relation to recent molecular genetic work on floral initiation and development, and plant physiological processes.

Commenting on the award, Dr Glover said: "I am really delighted to receive the award. Flowers are such fascinating structures, and I hope that my book will encourage interest in the intricate ways that they work."

"I wanted the book to bring together different areas of plant biology so that students and researchers could see how flowers really work. It was a real challenge to pull such a lot of material together, and you're always aware that you're not going into as much detail in each area as the true specialists would like. So it's a great pleasure to receive an award like this, and to hear that people are finding the book a useful tool to help integrate the field."

Announcing the winner of this year's award, Professor Mike Begon, chair of the British Ecological Society grants committee, said: "This book is a very brave - and really the first - attempt to synthesise a huge area of research and present it in digestible form. 'Understanding Flowers and Flowering' Pollination biology, as with all scientific disciplines, is in danger of becoming overly fragmented, with students and researchers in different sub-disciplines unable to communicate effectively or even unaware of the work that is going on outside of their own domains. It is ambitious, lucid, well written books such as this which will hold disciplines together and help to encourage dialogue between disparate biological traditions."

The Marsh Ecology Book of the Year Award will be presented at the BES AGM on Wednesday 9 September 2009 at 17:00. The AGM is taking place at the University of Hertfordshire.


Understanding Flowers and Flowering by Beverley Glover is published by Oxford University Press, ISBN-10: 0198565968.

The Marsh Book of the Year Award

The British Ecological Society

Friday, May 15, 2009

Getting a grip: ‘Velcro’-like structure helps bees stick to flowers


A paper by Heather M. Whitney, Lars Chittka, Toby J.A. Bruce and Beverley J. Glover in Current Biology shows that bumblebees can recognise the texture of petal surfaces by touch alone. More importantly, they choose to land on petals with conical cells that make it easier to grip, rather than on flat, smooth surfaces.

Read the press release at University of Cambridge, or the article at Current Biology.

Monday, January 5, 2009

Floral Iridescence, Produced by Diffractive Optics, Acts As a Cue for Animal Pollinators

Heather Whitney and Beverley Glover have been published in Science: http://dx.doi.org/10.1126/science.1166256.

News report in The Daily Telegraph.

News report in The University of Cambridge.

Thursday, August 3, 2006

Some bumblebees like it hot

Some bumblebees like it hot
Bumblebees prefer warmer flowers and can learn to use colour to predict floral temperature before landing, a new study reports.