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Temperature-Sensitive Plant Cells with Shunted Indole-3-Acetic Acid Conjugation

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Abstract Cells of henbane (Hyoscyamus muticus L.) grow indefinitely in culture without exogenous auxin. Cells of its temperature-sensitive variant XIIB2 grow like the wild type at 26[deg]C but die rapidly at 33[deg]C unless auxin is added to the medium. Despite this temperature-sensitive auxin auxotrophy, XIIB2 produces wild-type amounts of indole-3-acetic acid (IAA). IAA is the predominant auxin and is important for plant growth and development. Since the IAA production of the variant is functional, we investigated whether the synthesis or degradation of IAA metabolites, possibly active auxins themselves, is altered. The IAA metabolites were IAA-aspartate (IAAsp) and IAA-glucose. The wild type converted IAA mainly to IAAsp, whereas the variant produced mainly IAA-glucose. Exogenous auxin corrected the shunted IAA metabolism of the variant. The half-life of labeled IAAsp in the variant was reduced 21-fold, but in the presence of exogenous auxin it was not different from the wild type. The temperature sensitivity of XIIB2 was also corrected by supplying IAAsp. Pulse-chase experiments revealed that henbane rapidly metabolizes IAAsp to compounds not identical to IAA. The data show that the variant XIIB2 is a useful tool to study the function of IAA conjugates to challenge the popular hypothesis that IAA conjugates are merely slow-release storage forms of IAA.
Title: Temperature-Sensitive Plant Cells with Shunted Indole-3-Acetic Acid Conjugation
Description:
Abstract Cells of henbane (Hyoscyamus muticus L.
) grow indefinitely in culture without exogenous auxin.
Cells of its temperature-sensitive variant XIIB2 grow like the wild type at 26[deg]C but die rapidly at 33[deg]C unless auxin is added to the medium.
Despite this temperature-sensitive auxin auxotrophy, XIIB2 produces wild-type amounts of indole-3-acetic acid (IAA).
IAA is the predominant auxin and is important for plant growth and development.
Since the IAA production of the variant is functional, we investigated whether the synthesis or degradation of IAA metabolites, possibly active auxins themselves, is altered.
The IAA metabolites were IAA-aspartate (IAAsp) and IAA-glucose.
The wild type converted IAA mainly to IAAsp, whereas the variant produced mainly IAA-glucose.
Exogenous auxin corrected the shunted IAA metabolism of the variant.
The half-life of labeled IAAsp in the variant was reduced 21-fold, but in the presence of exogenous auxin it was not different from the wild type.
The temperature sensitivity of XIIB2 was also corrected by supplying IAAsp.
Pulse-chase experiments revealed that henbane rapidly metabolizes IAAsp to compounds not identical to IAA.
The data show that the variant XIIB2 is a useful tool to study the function of IAA conjugates to challenge the popular hypothesis that IAA conjugates are merely slow-release storage forms of IAA.

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