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Titlebook: Gender and Sexual Dimorphism in Flowering Plants; Monica A. Geber,Todd E. Dawson,Lynda F. Delph Textbook 1999 Springer-Verlag Berlin Heide

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书目名称Gender and Sexual Dimorphism in Flowering Plants
编辑Monica A. Geber,Todd E. Dawson,Lynda F. Delph
视频video
概述The first comprehensive review of research on the evolution of gender dimorphism and dimorphism in secondary sex characters in plants.Covers both recent advances and historical findings in theoretical
图书封面Titlebook: Gender and Sexual Dimorphism in Flowering Plants;  Monica A. Geber,Todd E. Dawson,Lynda F. Delph Textbook 1999 Springer-Verlag Berlin Heide
描述While the majority of flowering plant species are hermaphroditic, gender di­ morphism, or the occurrence of two sexual morphs, has, nevertheless, evolved on repeated occasions. Gender dimorphism is found in nearly half of all angio­ sperm families and in approximately 10% of flowering plant species. Where plants are dimorphic in gender, they can also be dimorphic in secondary sex characters. We refer to dimorphism of the latter kind as sexual dimorphism, in keeping with the term‘s usage by most zoologists. This book is about the evolution of both forms of dimorphism -hence the book‘s lengthy title. Gender dimorphism in plants has been an active topic of research from theoretical and empirical perspectives, and has been the focus of several re­ cent reviews and book chapters. By contrast, sexual dimorphism in plants is of the much less widely appreciated. Indeed, the last comprehensive review subject dates back to Lloyd and Webb‘s 1977 paper on "Secondary Sex Char­ we first spoke of editing a book on sexual acters in Plants. " In addition, when dimorphism in plants, some people doubted that there was enough material to justify the effort. We hope that this book not only provides an
出版日期Textbook 1999
关键词Evolution; Gender; Geschlechtsdimorphismus; Geschlechtsmerkmale; Pflanzen; Pflanzenevolution; Plant evolut
版次1
doihttps://doi.org/10.1007/978-3-662-03908-3
isbn_softcover978-3-642-08424-9
isbn_ebook978-3-662-03908-3
copyrightSpringer-Verlag Berlin Heidelberg 1999
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Maung Maung B. A., B. L., LL. D.nd Bossert 1970). Trivers (1972) and Bell (1980) extended this to comparisons between the sexes of animals, rather than between species, and noted that sex-specific differences in the cost of reproduction would lead to sexual dimorphism in timing of death and age at first reproduction, respectively.
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Burn Reconstruction Techniques,n vegetative phenology, rate of growth, morphology, and chemical composition (Lloyd and Webb 1977; Chaps. 6 and 7), which are characters that are likely to affect competitive ability and interactions with herbivores and parasites (e.g., Crawley 1983; Keddy 1989; Marquis 1992; Dix and Webster 1995).
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Sexual Dimorphism in Flowers and Inflorescences,cent refinements (see reviews in Andersson 1994; M∅ller 1994; Andersson and Iwasa 1996) were inspired by obvious patterns. For example, it is easy to distinguish female and male peafowl by sight at a great distance, and the males’ exaggerated tails clearly appear to hinder locomotion and camouflage.
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Sexual Dimorphism and Biotic Interactions,n vegetative phenology, rate of growth, morphology, and chemical composition (Lloyd and Webb 1977; Chaps. 6 and 7), which are characters that are likely to affect competitive ability and interactions with herbivores and parasites (e.g., Crawley 1983; Keddy 1989; Marquis 1992; Dix and Webster 1995).
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https://doi.org/10.1007/978-1-349-00312-9tempt to rule out one or the other type of factor, but should instead try to get empirical evidence that will help us to assess their relative importance. At the end of the chapter, I will briefly review some of this evidence.
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https://doi.org/10.1007/978-94-011-8890-6Shine 1989). Even for dioecious taxa, however, the functional significance of dimorphic traits may be difficult to interpret without a comprehensive understanding of gender differences in life history and reproductive biology (Shine 1989).
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