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Kapitel 34

Pflanzenstruktur, Wachstum und Ernährung

Einführung in die Pflanzenvielfalt
Einführung in die Pflanzenvielfalt
From Water to Land Kingdom Plantae first appeared about 410 million years ago as green algae transitioned from water to land. This land was a relatively ...
Gefäßlose und samenlose Pflanzen
Gefäßlose und samenlose Pflanzen
The diverse plant life on Earth—consisting of nearly 400,000 species—can be divided into three broad categories based on biological ...
Samenlose Gefäßpflanzen
Samenlose Gefäßpflanzen
Seedless Vascular Plants Were the First Tall Plants on Earth Today, seedless vascular plants are represented by monilophytes and lycophytes. ...
Einführung der Samenpflanzen
Einführung der Samenpflanzen
Most plants are seed plants—characterized by seeds, pollen, and reduced gametophytes. Seed plants include gymnosperms and angiosperms. ...
Grundlegende Pflanzenanatomie: Wurzeln, Sprossachse und Blätter
Grundlegende Pflanzenanatomie: Wurzeln, Sprossachse und Blätter
The primary organs of vascular plants are roots, stems, and leaves, but these structures can be highly variable, adapted for the specific needs and ...
Pflanzenzellen und Gewebe
Pflanzenzellen und Gewebe
Plant tissues are collections of similar cells performing related functions. Different plant tissues will have their own specialized roles and can be ...
Meristeme und Pflanzenwachstum
Meristeme und Pflanzenwachstum
Plants grow throughout their lives; this is called indeterminate growth, and it distinguishes plants from most animals. Although certain parts of plants ...
Primäres und sekundäres Wachstum der Wurzeln und Triebe
Primäres und sekundäres Wachstum der Wurzeln und Triebe
Vascular plants, which account for over 90% of the Earth’s vegetation, all undergo primary growth—which lengthens roots and shoots. Many land ...
Morphogenese
Morphogenese
Plant morphogenesis—the development of a plant’s form and structure—involves several overlapping developmental processes, including ...
Lichtaufnahme
Lichtaufnahme
In order to produce glucose, plants need to capture sufficient light energy. Many modern plants have evolved leaves specialized for light acquisition. ...
Wasser- und Mineralgewinnung
Wasser- und Mineralgewinnung
Specialized tissues in plant roots have evolved to capture water, minerals, and some ions from the soil. Roots exhibit a variety of branching patterns ...
Kurzstreckentransport von Ressourcen
Kurzstreckentransport von Ressourcen
Short-distance transport refers to transport that occurs over a distance of just 2-3 cells, crossing the plasma membrane in the process. Small uncharged ...
Der durch Xylem und Transpiration betriebene Transport von Ressourcen
Der durch Xylem und Transpiration betriebene Transport von Ressourcen
The xylem of vascular plants distributes water and dissolved minerals that are taken up by the roots to the rest of the plant. The cells that transport ...
Regulation der Transpiration durch die Stomata
Regulation der Transpiration durch die Stomata
During photosynthesis, plants acquire the necessary carbon dioxide and release the produced oxygen back into the atmosphere. Openings in the epidermis of ...
Adaptionen, die den Wasserverlust reduzieren
Adaptionen, die den Wasserverlust reduzieren
Though evaporation from plant leaves drives transpiration, it also results in loss of water. Because water is critical for photosynthetic reactions and ...
Phloem- und Zuckertransport
Phloem- und Zuckertransport
Like many living organisms, plants have tissues that specialize in specific plant functions. For example, shoots are well adapted to rapid growth, while ...
Bodenökosystem
Bodenökosystem
Plants obtain inorganic minerals and water from the soil, which acts as a natural medium for land plants. The composition and quality of soil depend not ...
Schlüsselelemente der Pflanzenernährung
Schlüsselelemente der Pflanzenernährung
Like all living organisms, plants require organic and inorganic nutrients to survive, reproduce, grow and maintain homeostasis. To identify nutrients that ...
Die Rolle der Bakterien und Pilzen in der Pflanzenernährung
Die Rolle der Bakterien und Pilzen in der Pflanzenernährung
Plants have the impressive ability to create their own food through photosynthesis. However, plants often require assistance from organisms in the soil to ...
Epiphyten, Parasiten und Fleischfresser
Epiphyten, Parasiten und Fleischfresser
Plants often form mutualistic relationships with soil-dwelling fungi or bacteria to enhance their roots’ nutrient uptake ability. Root-colonizing ...
Der Apoplast und der Symplast
Der Apoplast und der Symplast
Plant growth depends on its ability to take up water and dissolved minerals from the soil. The root system of every plant is equipped with the necessary ...
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