Plants of thallophyta are :-a)Haploid and gametophyteb)Haploid and spo...
Kingdom Plantae includes green, brown and red algae, liverworts, mosses, ferns and seed plants with or without flowers. ... Algae lack embryo stage. Life cycle consists of alternating haploid gametophyte and diploid sporophyte generation. This phenomenon is called alternation of generation.
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Plants of thallophyta are :-a)Haploid and gametophyteb)Haploid and spo...
Thallophyta: Haploid and Gametophyte
Thallophyta is a division of the plant kingdom that includes organisms such as algae and fungi. These organisms have a simple body structure and lack true roots, stems, and leaves. Thallophyta is characterized by their mode of reproduction, which involves the alternation of generations between a haploid gametophyte and a diploid sporophyte. However, the plants of thallophyta are primarily haploid and gametophyte.
Explanation:
Thallophyta includes various groups of plants, including algae and fungi. These organisms have a thallus body, which is a simple, undifferentiated structure that lacks specialized organs. The thallus of algae can range from single-celled to multicellular, while the thallus of fungi is multicellular and filamentous.
In the life cycle of plants, there is an alternation of generations between a haploid gametophyte and a diploid sporophyte. The gametophyte produces gametes (reproductive cells), which fuse during fertilization to form a diploid zygote. The zygote then develops into a diploid sporophyte, which produces spores through meiosis. These spores are haploid and develop into gametophytes, thus completing the cycle.
In thallophyta, the dominant and most prominent stage of the life cycle is the haploid gametophyte. The gametophyte produces gametes through mitosis, which can fuse to form a zygote. The zygote then develops into a diploid sporophyte, which is a relatively short-lived stage in thallophyta. The sporophyte produces spores through meiosis, which develop into new haploid gametophytes, continuing the life cycle.
Therefore, the plants of thallophyta are primarily haploid and gametophyte. The haploid gametophyte is the dominant stage, while the diploid sporophyte is a relatively short-lived stage in their life cycle.
In conclusion, thallophyta plants display an alternation of generations between a haploid gametophyte and a diploid sporophyte. However, the plants of thallophyta are primarily haploid and gametophyte. The haploid gametophyte is the dominant stage, while the diploid sporophyte is a relatively short-lived stage in their life cycle.
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