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Changes in nuclear macromolecules and nucleolar volume associated with selective ribosomal cistron activation by
P K Bhattacharya1, C S Karagiannis, A J Pappelis
1Department of Biology, Indiana University Northwest, Gary 46408.
Abstract:
Pieces of leaf base tissue from the equatorial region of the third turgid onion (Allium cepa L.; yellow, sweet Spanish, quiescent tissue) leaf base with two visible major nucleoli (volume = 0.51 microns3) and two inactive minor nucleolar organizer regions (NORs) in the outer epidermal cells were placed in shallow water (time = T0 control). After 3 h (T3 control), the two visible nucleoli enlarged (178% of T0) and changed shape (from 88% round and 12% oval at T0 to 5% round, 68% oval, 20% elongated-oval, and 7% dumbbell). The minor NORs remained inactive. Nuclear RNA and non-histone protein (nHP) increased (RNA = 128% and nHP = 134%, compared with T0 data, set at 100%). The content of DNA and histone protein (H) in nuclei remained unchanged. Major nucleoli in pieces of onion placed in 10(-5) M ethylene enlarged and minor nucleoli became visible in 33% of the nuclei; i.e., ethylene acted as a selective ribosomal cistron regulator. The nucleolar volume (212% of T0) was statistically greater than those for T0 and T3. DNA and H remained unchanged (not statistically different) but RNA (159% of T0) and nHP (169% of T0) were greater (statistically significant) than those for T0 and T3 controls. Cobalt chloride (10(-5) M Co) alone or in 10(-5) M ethylene (Co + E) inhibited the enlargement of some of the major nucleoli and completely inhibited the appearance of minor nucleoli. The nucleolar volumes for the cobalt and for cobalt-ethylene treatments were significantly less than those for T3 controls and ethylene treatment at T3. DNA and histone did not change.(ABSTRACT TRUNCATED AT 250 WORDS)