
Можно с интернета!!!! Чем отличается хламидомонада от эвглены зелёной. и их сходства?


Ответы на вопрос

Хламидомонада - одноклеточная зелёная водоросль, имеет процесс фотосинтеза, следовательно, является автотрофом. Все растения - автотрофы.
Эвглена зелёная тоже водоросль, однако питается она и автотрофно ( на свету) и гетеротрофно (при отсутствии освещения). Её нельзя назвать полностью растением или животным, однако она имеет признаки животного.



Difference Between Chlamydomonas and Euglena
Chlamydomonas and Euglena are both types of single-celled organisms, but they have distinct characteristics that set them apart.
Chlamydomonas: - Structure: Chlamydomonas is a green alga that possesses two flagella, a stigma (eyespot), and a cup-shaped chloroplast. - Reproduction: It reproduces asexually through cell division and sexually through the fusion of gametes. - Habitat: Chlamydomonas is commonly found in freshwater environments such as ponds and ditches. - Nutrition: It is photosynthetic and can also absorb nutrients from its environment.
Euglena: - Structure: Euglena is a single-celled organism that has a long, whip-like flagellum, a red eyespot, and a pellicle for support and protection. - Reproduction: It reproduces asexually through binary fission. - Habitat: Euglena is found in freshwater environments and is capable of surviving in both aerobic and anaerobic conditions. - Nutrition: It is both photosynthetic and heterotrophic, meaning it can produce its own food through photosynthesis and also absorb nutrients from its environment.
Similarities Between Chlamydomonas and Euglena
Despite their differences, Chlamydomonas and Euglena also share some similarities: - Both are single-celled organisms belonging to the kingdom Protista. - They are both photosynthetic, utilizing chlorophyll for the process of photosynthesis. - Both organisms have flagella, which aid in their movement through their aquatic habitats. - They are both capable of adapting to a wide range of environmental conditions, allowing them to thrive in various freshwater ecosystems.
These similarities and differences contribute to the unique characteristics and ecological roles of Chlamydomonas and Euglena in their respective environments.


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