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Curvature induced by amyloplast magnetophoresis in protonemata of the moss Ceratodon purpureusAfter gravistimulation of Ceratodon purpureus (Hedw.) Brid. protonemata in the dark, amyloplast sedimentation was followed by upward curvature in the wild-type (WT) and downward curvature in the wwr mutant (wrong way response). We used ponderomotive forces induced by high-gradient magnetic fields (HGMF) to simulate the effect of gravity and displace the presumptive statoliths. The field was applied by placing protonemata either between two permanent magnets at the edge of the gap, close to the edge of a magnetized ferromagnetic wedge, or close to a small (<1 mm) permanent magnet. Continuous application of an HGMF in all three configurations resulted in plastid displacement and induced curvature in tip cells of WT and wwr protonemata. WT cells curved toward the HGMF, and wwr cells curved away from the HGMF, comparable to gravitropism. Plastids isolated from protonemal cultures had densities ranging from 1.24 to 1.38 g cm-3. Plastid density was similar for both genotypes, but the mutant contained larger plastids than the WT. The size difference might explain the stronger response of the wwr protonemata to the HGMF. Our data support the plastid-based theory of gravitropic sensing and suggest that HGMF-induced ponderomotive forces can substitute for gravity.
Document ID
20040142085
Acquisition Source
Kennedy Space Center
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Kuznetsov, O. A.
(University of Southwestern Louisiana Lafayette 70504-2451, United States)
Schwuchow, J.
Sack, F. D.
Hasenstein, K. H.
Date Acquired
August 22, 2013
Publication Date
February 1, 1999
Publication Information
Publication: Plant physiology
Volume: 119
Issue: 2
ISSN: 0032-0889
Subject Category
Life Sciences (General)
Funding Number(s)
CONTRACT_GRANT: NAG10-0179
CONTRACT_GRANT: NAG10-0190
Distribution Limits
Public
Copyright
Other
Keywords
Non-NASA Center
NASA Discipline Plant Biology

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