Allegheny City, known today as Pittsburgh's North Side, was the third-largest city in Pennsylvania when it was controversially annexed by the City of Pittsburgh in 1907. Founded in 1787 as a reserve land tract for Revolutionary War veterans in compensation for their service, it quickly evolved into a thriving urban center with its own character, industry, and accomplished residents. Among those to inhabit the area, which came to be known affectionately as "The Ward," were Andrew Carnegie, Mary Cassatt, Gertrude Stein, Stephen Foster, and Martha Graham. Once a station along the underground railroad, home to the first wire suspension bridge, and host to the first World Series, the North Side is now the site of Heinz Field, PNC Park, the Andy Warhol Museum, the National Aviary, and world headquarters for corporations such as Alcoa and the H. J. Heinz Company. Dan Rooney, longtime North Side resident, joins local historian Carol Peterson in creating this highly engaging history of the cultural, industrial, and architectural achievements of Allegheny City from its humble beginnings until the present day. The authors cover the history of the city from its origins as a simple colonial outpost and agricultural center to its rapid emergence alongside Pittsburgh as one of the most important industrial cities in the world and an engine of the American economy. They explore the life of its people in this journey as they experienced war and peace, economic boom and bust, great poverty and wealth—the challenges and opportunities that fused them into a strong and durable community, ready for whatever the future holds. Supplemented by historic and contemporary photos, the authors take the reader on a fascinating and often surprising street-level tour of this colorful, vibrant, and proud place.
The new edition of Seeds contains new information on many topics discussed in the first edition, such as fruit/seed heteromorphism, breaking of physical dormancy and effects of inbreeding depression on germination. New topics have been added to each chapter, including dichotomous keys to types of seeds and kinds of dormancy; a hierarchical dormancy classification system; role of seed banks in restoration of plant communities; and seed germination in relation to parental effects, pollen competition, local adaption, climate change and karrikinolide in smoke from burning plants. The database for the world biogeography of seed dormancy has been expanded from 3,580 to about 13,600 species. New insights are presented on seed dormancy and germination ecology of species with specialized life cycles or habitat requirements such as orchids, parasitic, aquatics and halophytes. Information from various fields of science has been combined with seed dormancy data to increase our understanding of the evolutionary/phylogenetic origins and relationships of the various kinds of seed dormancy (and nondormancy) and the conditions under which each may have evolved. This comprehensive synthesis of information on the ecology, biogeography and evolution of seeds provides a thorough overview of whole-seed biology that will facilitate and help focus research efforts. Most wide-ranging and thorough account of whole-seed dormancy available Contains information on dormancy and germination of more than 14,000 species from all the continents – even the two angiosperm species native to the Antarctica continent Includes a taxonomic index so researchers can quickly find information on their study organism(s) and Provides a dichotomous key for the kinds of seed dormancy Topics range from fossil evidence of seed dormancy to molecular biology of seed dormancy Much attention is given to the evolution of kinds of seed dormancy Includes chapters on the basics of how to do seed dormancy studies; on special groups of plants, for example orchids, parasites, aquatics, halophytes; and one chapter devoted to soil seed banks Contains a revised, up-dated classification scheme of seed dormancy, including a formula for each kind of dormancy Detailed attention is given to physiological dormancy, the most common kind of dormancy on earth
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