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<td style="padding:10px;width:600px;font-family:Georgia;text-align:center;"><a href="http://gomedkit.digital/s5PeUvajUn6ruSm1DMoUUJidAYnfeDIHomjJSd5Ej2PfUzb1LQ" style="font-size:27px;font-weight:bold;padding:8px;line-height:40px;color:#005984;back
ground-color:#FFFF84;" target="_blank"><b>Don't let auto repair costs get you down - Endurance Auto Warranty is here to help</b></a><br />
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<span style="color:#FFFFFF; font-size:10px;">uit results from the fertilizing and maturing of one or more flowers. The gynoecium, which contains the stigma-style-ovary system, is centered in the flower-head, and it forms all or part of the fruit.
Inside the ovary(ies) are one or more ovules. Here begins a complex sequence called double fertilization: a female gametophyte produces an egg cell for the purpose of fertilization. (A female gametophyte is called a megagametophyte, and also called t
he embryo sac.) After double fertilization, the ovules will become seeds.</span> <span style="color:#FFFFFF; font-size:10px;"> Ovules are fertilized in a process that starts with pollination, which is the movement of pollen from the stamens to the st
igma-style-ovary system within the flower-head. After pollination, a pollen tube grows from the (deposited) pollen through the stigma down the style into the ovary to the ovule. Two sperm are transferred from the pollen to a megagametophyte. Within t
he megagametophyte, one sperm unites with the egg, forming a zygote, while the second sperm enters the central cell forming the endosperm mother cell, which completes the double fertilization process. Later, the zygote will give rise to the embryo of
the seed, and the endosperm mother cell will give rise to endosperm, a nutritive tissue used by the embryo. Fruit formation is associated with meiosis, a central aspect of sexual reproduction in flowering plants. During meiosis homologous chromosome
s replicate, recombine and randomly segregate, and then undergo segregation of sister chromatids to produce haploid cells. Union of haploid nuclei from pollen and ovule (fertilisation), occurring either by self- or cross-pollination, leads to the for
mation of a diploid zygote that can then develop into an embryo within the emerging seed. Repeated fertilisations within the ovary are accompanied by maturation of the ovary to form the fru </span><br />
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Plain Text
Don't let auto repair costs get you down - Endurance Auto Warranty is here to help
http://gomedkit.digital/s5PeUvajUn6ruSm1DMoUUJidAYnfeDIHomjJSd5Ej2PfUzb1LQ
http://gomedkit.digital/N3jCskfUIM_1XGBGUqn43AHut9VShDdvsJ96g15F0D82CYIb4w
uit results from the fertilizing and maturing of one or more flowers. The gynoecium, which contains the stigma-style-ovary system, is centered in the flower-head, and it forms all or part of the fruit. Inside the ovary(ies) are one or more ovules. He
re begins a complex sequence called double fertilization: a female gametophyte produces an egg cell for the purpose of fertilization. (A female gametophyte is called a megagametophyte, and also called the embryo sac.) After double fertilization, the
ovules will become seeds.
Ovules are fertilized in a process that starts with pollination, which is the movement of pollen from the stamens to the stigma-style-ovary system within the flower-head. After pollination, a pollen tube grows from the (deposited) pollen through the
stigma down the style into the ovary to the ovule. Two sperm are transferred from the pollen to a megagametophyte. Within the megagametophyte, one sperm unites with the egg, forming a zygote, while the second sperm enters the central cell forming the
endosperm mother cell, which completes the double fertilization process. Later, the zygote will give rise to the embryo of the seed, and the endosperm mother cell will give rise to endosperm, a nutritive tissue used by the embryo.
Fruit formation is associated with meiosis, a central aspect of sexual reproduction in flowering plants. During meiosis homologous chromosomes replicate, recombine and randomly segregate, and then undergo segregation of sister chromatids to produce h
aploid cells. Union of haploid nuclei from pollen and ovule (fertilisation), occurring either by self- or cross-pollination, leads to the formation of a diploid zygote that can then develop into an embryo within the emerging seed. Repeated fertilisat
ions within the ovary are accompanied by maturation of the ovary to form the fru