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Titlebook: Ontogeny, Cell Differentiation, and Structure of Vascular Plants; Roger Buvat Book 1989 Springer-Verlag Berlin Heidelberg 1989 Embryo.anim

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书目名称Ontogeny, Cell Differentiation, and Structure of Vascular Plants
编辑Roger Buvat
视频video
图书封面Titlebook: Ontogeny, Cell Differentiation, and Structure of Vascular Plants;  Roger Buvat Book 1989 Springer-Verlag Berlin Heidelberg 1989 Embryo.anim
描述With improved microscope and preparation techniques, studies of histo­ logical structures of plant organisms experienced a revival of interest at the end of the 19th century. From that time, histological data have sub­ stantially studies of the pioneers in botanical science. From the beginning of the 20th century, the microscope allowed research in cell structure, the general functional unit of living beings. Advances in cytology gradually influenced histology, at first, however, rather timidly. Only the new and spectacular progress in ultrastructural cytology and cytochemistry led to a great increase in modern work on the structures of vascular plants and the related ontogenical and physiological data, thanks to the use of the electron microscope and the contribution of molecular biology. Not only did new techniques lead to new approaches, but achieve­ ments in general biology shifted the orientation of research, linking in­ vestigation to the physiological aspects of cell and tissue differentiation. Among these, the demonstration of the general principles of develop­ ment, and the characterization of molecules common to plants and animals, which control and govern the main basic
出版日期Book 1989
关键词Embryo; animals; biology; cell; cell differentiation; cytology; growth; histology; influence; plant; plants; ti
版次1
doihttps://doi.org/10.1007/978-3-642-73635-3
isbn_softcover978-3-642-73637-7
isbn_ebook978-3-642-73635-3
copyrightSpringer-Verlag Berlin Heidelberg 1989
The information of publication is updating

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Growth and TissuesThe development and the shape and size of plant organisms do not appear as a “finite” phenomenon as they do for animals. In animals, growth ceases long before death and as soon as an organism presents a more or less completed morphology.
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Succinct Classification of Vascular PlantsWe only intend to give the main lines of this classification, details will be given when necessary.
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Protective TissuesIn some cases, one can consider that all the tissues described in the following sections correspond to differentiations necessary to the functioning of parenchyma. Conducting tissues supply the parenchyma with the substances they need, protective tissues spare them the casual troubles of the medium.
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Supporting TissuesCollenchyma is a living tissue of the aerical organs of vascular plants, mainly characterized by thick, ., typically non-lignified. Collenchyma characteristically occurs in a peripheral position in stems and leaves, particularly in petioles.
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Dedifferentiation: Common Process of Vascular Plant OntogenyThe development of plants contrasts with that of animals because, generally, in contrast to animals, plants can continuously generate, through dedifferentiation, meristematic cells capable of giving rise to new organs: leafy stems, roots or reproductive organs.
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