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By investigating a simple question, a philosopher of science and a molecular biologist offer an accessible understanding of microbial communities and a motivating theory for future research in community ecology. Microorganisms, such as bacteria, are important determinants of health at the individual, ecosystem, and global levels. And yet many aspects of modern life, from the overuse of antibiotics to chemical spills and climate change, can have devastating, lasting impacts on the communities formed by microorganisms. Drawing on the latest scientific research and real-life examples such as attempts to reengineer these communities through microbial transplantation, the construction of syntheti...
A tiny organism called pollen pulls off one of nature’s key tasks: plant reproduction. Pollination involves a complex network of different species interacting with one another and mutually adapting to their ecosystems, which are constantly changing. Some pollen grains require just a puff of wind to set them in motion, but most plants depend on creatures gifted with mobility. These might be birds, bats, reptiles, or insects including butterflies, beetles, flies, wasps, and over twenty thousand species of bee. In Paths of Pollen Stephen Humphrey asks readers to imagine a tipping point where plants and pollinators can no longer adapt to stressors such as urbanization, modern agriculture, and ...
The most up-to-date and authoritative resource on the biology and evolution of solitary bees While social bees such as honey bees and bumble bees are familiar to most people, they comprise less than 10 percent of all bee species in the world. The vast majority of bees lead solitary lives, surviving without the help of a hive and using their own resources to fend off danger and protect their offspring. This book draws on new research to provide a comprehensive and authoritative overview of solitary bee biology, offering an unparalleled look at these remarkable insects. The Solitary Bees uses a modern phylogenetic framework to shed new light on the life histories and evolution of solitary bees...
For many of us, the buzzing of a bee elicits panic. But the next time you hear that low droning sound, look closer: the bee has navigated to this particular spot for a reason using a fascinating set of tools. She may be using her sensitive olfactory organs, which provide a 3D scent map of her surroundings. She may be following visual landmarks or instructions relayed by a hive-mate. She may even be tracking electrostatic traces left on flowers by other bees. What a Bee Knows: Exploring the Thoughts, Memories, and Personalities of Bees invites us to follow bees’ mysterious paths and experience their alien world. Although their brains are incredibly small—just one million neurons compared ...
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"An arresting vision of this relentless natural world"—New York Times Book Review A leading ecologist argues that if humankind is to survive on a fragile planet, we must understand and obey its iron laws Our species has amassed unprecedented knowledge of nature, which we have tried to use to seize control of life and bend the planet to our will. In A Natural History of the Future, biologist Rob Dunn argues that such efforts are futile. We may see ourselves as life’s overlords, but we are instead at its mercy. In the evolution of antibiotic resistance, the power of natural selection to create biodiversity, and even the surprising life of the London Underground, Dunn finds laws of life that no human activity can annul. When we create artificial islands of crops, dump toxic waste, or build communities, we provide new materials for old laws to shape. Life’s future flourishing is not in question. Ours is. As ambitious as Edward Wilson’s Sociobiology and as timely as Elizabeth Kolbert’s The Sixth Extinction, A Natural History of the Future sets a new standard for understanding the diversity and destiny of life itself.