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<h3>What causes cell division?</h3>
The two distinct ways that cells divide are called mitosis and meiosis. Typically, mitosis—the process of creating new body cells—is what is meant when the word "cell division" is used. The process of cell division that yields sperm and egg cells is known as meiosis.
<h3>What is the proper order for the processes in cell division?</h3>
There are six stages in this cycle: prophase, prometaphase, metaphase, anaphase, and telophase . Because cytokinesis is the final physical cell division after telophase, it is also referred to as the sixth stage of mitosis.
<h3>
What mechanism divides cells?</h3>
Cells divide in two different ways, mitosis and meiosis. The procedure of mitosis, which produces new body cells, is often when "cell division" is referred to. Meiosis is the name for the cell-division procedure that results in sperm and egg cells
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<span>Each of the protein chains are conjugated to a nonprotein heme group.Hemoglobin is
the protein that's made of the four polypeptide chains. Each of these chains contains a heme group. Red blood cells are primary players in the oxygen hauling, and they wouldn't be able to do their job if it the weren't for a special molecule called the heme.</span>
Answer:
"Genetically modified" is a technology used to insert genes into plants.
Explanation:
GM is a skill that includes implanting DNA into the genome of an organism. To produce a GM plant, new DNA is transported into plant cells. Generally, the cells are then grown in tissue culture where they grow into plants. Central to the pathogenesis of A. tumefaciens is the Ti (tumor inducing) plasmid and the allocation of a DNA section (T-DNA) from the plasmid to the cytoplasm of the plant cell, where it is introduced into the nucleus and combined into the plant genome. In plant genetic engineering, the Ti plasmid can be used to transmit foreign genes into plant cells. The Ti plasmid is the disease-causing agent of the soil-borne bacteria Agrobacterium tumefaciens. The Ti plasmid comprising the changed T DNA region can then be used to supplement the anticipated genes into plant chromosomes.
False, it happens through the light independent reaction.