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Titlebook: Arthropod Biology and Evolution; Molecules, Developme Alessandro Minelli,Geoffrey Boxshall,Giuseppe Fusc Book 2013 Springer-Verlag Berlin H

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發(fā)表于 2025-3-21 19:59:14 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Arthropod Biology and Evolution
期刊簡稱Molecules, Developme
影響因子2023Alessandro Minelli,Geoffrey Boxshall,Giuseppe Fusc
視頻videohttp://file.papertrans.cn/162/161930/161930.mp4
發(fā)行地址First book to cover arthropod structure and evolution of all relevant major lineages within the Arthropoda.Written by renowned experts in the field.Richly illustrated.Includes supplementary material:
圖書封面Titlebook: Arthropod Biology and Evolution; Molecules, Developme Alessandro Minelli,Geoffrey Boxshall,Giuseppe Fusc Book 2013 Springer-Verlag Berlin H
影響因子More than two thirds of all living organisms described to date belong to the phylum Arthropoda. But their diversity, as measured in terms of species number, is also accompanied by an amazing disparity in terms of body form, developmental processes, and adaptations to every inhabitable place on Earth, from the deepest marine abysses to the earth surface and the air. The Arthropoda also include one of the most fashionable and extensively studied of all model organisms, the fruit-fly, whose name is not only linked forever to Mendelian and population genetics, but has more recently come back to centre stage as one of the most important and more extensively investigated models in developmental genetics. This approach has completely changed our appreciation of some of the most characteristic traits of arthropods as are the origin and evolution of segments, their regional and individual specialization, and the origin and evolution of the appendages. At approximately the same time as developmental genetics was eventually turning into the major agent in the birth of evolutionary developmental biology (evo-devo), molecular phylogenetics was challenging the traditional views on arthropod phyl
Pindex Book 2013
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Arthropod Embryology: Cleavage and Germ Band Development,ctories. These ontogenetic differences concern all embryonic stages, steps, and levels from gene expression, cleavage and gastrulation, germ band formation and growth, to segmentation and morphogenesis (Weygoldt 1960a, 1963; Anderson 1973; Scholtz 1997; Akam 2000; Hughes and Kaufman 2002a). Likewise
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Arthropod Developmental Endocrinology,n. By contrast, postembryonic growth and differentiation are controlled almost entirely by circulating hormones and secreted growth factors. Also, in contrast to the dozens and perhaps hundreds of genes that control early stages of embryonic specification and differentiation, only a very small handf
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The Arthropod Cuticle,e but what does it look like inside? In the past two centuries, starting with the discovery of chitin as a major component of the arthropod cuticle by Odier (1823), a vast number of publications contributed to the understanding of cuticle architecture and composition (reviewed in Locke 2001; Moussia
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Arthropod Segmentation and Tagmosis,als, Aristotle’s . [., internally (sub)divided] and Linnaeus’ Latin equivalent ., now restricted to one of the major arthropod subgroups, already referred to the modular organization of the body. In the idealistic perspective of the past, this trait, more than the presence of articulated appendages
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The Arthropod Head,xes. Prominent examples are the cerebralization of the central nervous system, the integration of anterior appendages to encompass sensory function and food uptake, the integration of anterior segments covered by a continuous dorsal shield, and a condensation of the endoskeleton which has resulted i
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