
Rapid Destruction of the PFR Form of Phytochrome by a Substance
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People also ask
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What is the PR form of phytochrome?
The Pr form absorbs light between 660 and 680 nm and absorbs at a peak of 666 nm. The Pr form is the inactive form of phytochrome. When Pr absorbs red light, it is activated and converted into the Pfr form.
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What do PR and PFR stand for?
Phytochromes are red-light photoreceptors that undergo reversible photoconversion between a red-light-absorbing state (Pr) and a far-red-light-absorbing state (Pfr), and thereby they regulate a wide range of physiological responses in plants, fungi, and photosynthetic bacteria (1–5).
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What is PFR vs PR phytochrome?
Pr absorbs red light (~667 nm) and is immediately converted to Pfr. Pfr absorbs far-red light (~730 nm) and is quickly converted back to Pr. Absorption of red or far-red light causes a massive change to the shape of the chromophore, altering the conformation and activity of the phytochrome protein to which it is bound.
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What is the PFR form of phytochrome?
Pfr is the physiologically-active form of the protein; exposure to red light yields physiological activity in the plant. Exposure to far-red light converts the Pfr to the inactive Pr form, inhibiting phytochrome activity. Together, the two forms represent the phytochrome system.
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Is PR or PFR the active form?
Two Reversible Forms of Phytochromes On exposure to red light, the Pr form converts to the far-red light absorption form (Pfr) which is olive-green in color and absorbs maximally at 730 nm (Quail, 1997, Figure 2). The Pfr form is considered as the biologically active form.
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What color of light will inactivate phytochrome once in its active PFR form?
1: Phytochrome system: The biologically-inactive form of phytochrome (Pr) is converted to the biologically-active form Pfr under illumination with red light. Far-red light and darkness convert the molecule back to the inactive form. The phytochrome system acts as a biological light switch.
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