Does the taxonomy of animals and plants have organisms that fall somewhere between animals and plant

Updated on science 2024-03-17
11 answers
  1. Anonymous users2024-02-06

    I think there is somewhere in between, because the classification method of organisms in between, there is no rule.

  2. Anonymous users2024-02-05

    Yes, the difference between animals and plants is mitochondria and chloroplasts. Not only are parameciums locomobile, but they also have chloroplasts in their bodies. So this bug is a creature between animals and plants.

  3. Anonymous users2024-02-04

    Although the classification of animals and plants is defined, there are still many organisms in between, such as the green nudibranch, euglena, and flytrap. Scientists believe that sea anemones also have dual genes for animals and plants.

  4. Anonymous users2024-02-03

    Animals are divided into vertebrates and invertebrates according to their invertebrates. Vertebrates are divided into fish, amphibians, reptiles, birds, and mammals from low to high. Invertebrates are divided into coelenterates, molluscs, arthropods, annelids.

    Plants are divided into seeded plants and seedless plants according to the presence or absence of seeds. Seedless plants are classified into algae, mosses, and ferns according to the order from low to high. Seeded plants are divided into gymnosperms and angiosperms according to whether the fruit has a seed coat or not.

    Angiosperms are divided into monocotyledon and dicots according to the number of cotyledons.

  5. Anonymous users2024-02-02

    Summary. The classification of animals and plants is based on the fact that plant cells have both a cell membrane and a cell wall, while animal cells only have a cell membrane.

    From the perspective of ecosystem components, plants are producers and animals are consumers; From the perspective of the basic structure of cells, plant cells have a cell wall, while animal cells do not; From the point of view of nutritional mode and metabolism, plants are autotrophs and are able to turn inorganic matter into organic matter, while animals are heterotrophs and can only use organic matter now.

    What is the basis for the classification of animals and plants.

    The classification of animals and plants is based on the fact that plant cells have both a cell membrane and a cell wall, while animal cells only have a cell membrane. From the perspective of ecosystem components, plants are producers and animals are consumers; From the perspective of the basic structure of cells, plant cells have a cell wall, while animal cells do not; From the point of view of nutritional mode and metabolism, plants are autotrophs and are able to turn inorganic matter into organic matter, while animals are heterotrophs and can only use organic matter now.

    Hope mine is helpful to you.

  6. Anonymous users2024-02-01

    Nutritional modality. Plants are autotrophic and produce their own organic matter through photosynthesis, etc. Animals are anomalous and do not make organic matter by themselves, but use organic matter made by other organisms. Microorganisms are saprophytic.

  7. Anonymous users2024-01-31

    Plants and animals are classified on the basis that plants are autotrophs that can survive without relying on other organisms and by being self-sufficient only through photosynthesis; Animals are heterotrophs, that is, they must rely on other organisms (possibly animals or plants) as the basis for life activities, the energy of the struggle for survival (that is, animals must feed on living things and cannot survive on their own).

  8. Anonymous users2024-01-30

    In the ancient naturalist classification, animals were creatures that could move or move on their own; Plants are organisms that grow rooted in soil or water.

  9. Anonymous users2024-01-29

    Plant cells generally have cell walls and vacuoles, while animal cells generally do not.

  10. Anonymous users2024-01-28

    Cordyceps and grass change are there, and it is a fungus that parasitizes on insects, but this fungus is obviously still a fungus, an animal or an animal. It's like if you have ringworm, you're still a human being.

    Cyanobacteria belong neither to animals nor to plants, but rather to a prokaryotic organism that is not somewhere between animals and plants. Also, cyanobacteria do not possess any of the characteristics of animal cells.

    "Tai Sui" is a colloquial name and is also a fungus. It's just that it looks like meat and a plant.

    Sea anemones belong to the phylum Coelenterates. Answer: A vegetative person is.

    Answer: slime mold (slime mold) is correct. The life of slime molds is divided into two periods, in one period like amoebae, there is no cell wall sock rolling, can move; In another period, it was like a fungus.

    In addition to slime molds, there are also euglena, which have eyespots, can sense light, flagella, can move, but also have chloroplasts in the body.

  11. Anonymous users2024-01-27

    The division of living things into two categories, animals and plants, was Carl von Linnaeus. Carl von Linnaeus was the founder of the binomial nomenclature of plants and animals. Linnaeus was a Swedish zoologist, botanist, adventurer, and biologist who first conceived the principles that define genera and species of organisms and created a unified system of biological nomenclature.

    Linnaeus solved two key problems for taxonomy: the first was the establishment of a binomial system, in which each species was given a scientific name, consisting of two Latin pseudonouns, the first representing the genus name and the second representing the species trembling name. The second is the establishment of the order system, Linnaeus divided the natural world into three worlds: plants, animals and minerals, and under the animal and plant kingdoms, there are four levels: class, order, genus, and Li Qingsong species, thus establishing the order system of classification.

    Each species belongs to a certain taxonomic system and occupies a certain taxonomic position, which can be checked and retrieved according to the order. Linnaeus first applied the order system to plants and animals in his Flora Ethnicity, published in 1753 and in the 10th edition of Natural Systems in 1758. These two classics marked the birth of modern taxonomy.

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