SUBJECT INDEX
283
Insects, nuclear transplantation, 5-7
to free cytoplasm, 27-28
polyploidy, 33
lodoacetic acid, effect on regeneration in
Nais paraguayensis, 174
Irradiation, ultraviolet, effect on Acetabularia, 55-56, 72
on Micrasterias, 68-73
on M. thomasiana, 56
K
Kinetin, effect on apical dominance in
Splachnum ampullaceum, 115-116
on lateral bud reactivation, 142-143
L
Limnodrilus, regeneration, 161, 162
Lipases, activity in yolk during incubation,
262
Lipids, in hen's egg yolk, 224
Lipovitellin, 223
in amphibian yolk, 225
in hen's egg yolk, 224
in Rana pipiens yolk, 225
in Salmo irridaeus yolk, 225
in Scylliorhinus stellenius yolk, 225
Lithium chloride, as inhibitor of regeneration in oligochaetes, 173
Livetin, in hen's egg yolk, 223-224
Lumbricidae, cephalic region, 192
inductive power of nervous system, 186
Lumbricillus lineatus, caudal regeneration,
power of, 188,189
Lumbriculus, effect of X-rays on neoblasts,
163
regeneration, 161-162
variegatus, cephalic regeneration, morphallaxis, 194
effect of X-rays on caudal regeneration, 164r-166
neoblasts, 156-157
regeneration, 163
Lumbricus, arginase content, 173
cephalic regeneration, 175-177
granule synthesis, 204
Lycastris, cephalic regeneration, endocrine
role of nervous system, 197
M
Magalia perarmata, caudal regeneration,
morphogenesis, 187
power of, 189
cephalic regeneration, gradient, 183
power of, 192
Maize, stable gene change, 35-36
Mammals, corneal induction, 84
morphogenesis, postepithelial layer,
88
stroma, fibre matrix, 95
Man, corneal curvature, 103
Marchantia, regeneration, location, 133
Mareilia, apical dominance, 114
auxin in, 116
Mercaptoethanol, effect on differentiation
in Micrasterias, 74
effect on regeneration in planarians, 174
Mesothelium of Descemet, see Posterior
epithelium
Metachromasia, in corneal stroma, 92-93
Micrasterias t cell division, 48
cell wall, 50
chromosome complement, changes in,
65-68
aneuploidy, 68
polyploidy, 65-68
complex cells, 56-65
culture, 50-51
cytoplasmic framework, theory of, 74-76
defective forms, 51-55
aradiate cells, 53, 54r-55
uniradiate cells, 52-54
effect of chemical compounds, 73-74
high glucose concentrations, 73-74
mercaptoethanol on differentiation, 74
sodium 2, 4-dinitrophenol on differentiation, 74
ultraviolet irradiation on, 68-73
weak acids on nucleoli, 73
enucleate cells, 53, 55-56
morphogenesis, 45-80
normal features, 49-50
polyploidy, 65-68
production of binucleate cells, 58
tetraploidy, 67-68
triploidy, 68
americana t aradiate cells, 54-55, 75
uniradiate cells, 54, 75
angulosa, chromosome number, 45
nucleolus, 47
fimbriata, uniradiate cells, 54, 75
incredibilis, 46
radiata, nucleous, 47
rotata, chromosome number, 46
differentiation, 77-78
effect of high glucose concentrations,
73-74
of lowered turgor pressure, 50
Golgi bodies, 49
nucleolus, 47
var. evoluta, aneuploidy, 68
effect of continuous illumination,
58-60
283
Insects, nuclear transplantation, 5-7
to free cytoplasm, 27-28
polyploidy, 33
lodoacetic acid, effect on regeneration in
Nais paraguayensis, 174
Irradiation, ultraviolet, effect on Acetabularia, 55-56, 72
on Micrasterias, 68-73
on M. thomasiana, 56
K
Kinetin, effect on apical dominance in
Splachnum ampullaceum, 115-116
on lateral bud reactivation, 142-143
L
Limnodrilus, regeneration, 161, 162
Lipases, activity in yolk during incubation,
262
Lipids, in hen's egg yolk, 224
Lipovitellin, 223
in amphibian yolk, 225
in hen's egg yolk, 224
in Rana pipiens yolk, 225
in Salmo irridaeus yolk, 225
in Scylliorhinus stellenius yolk, 225
Lithium chloride, as inhibitor of regeneration in oligochaetes, 173
Livetin, in hen's egg yolk, 223-224
Lumbricidae, cephalic region, 192
inductive power of nervous system, 186
Lumbricillus lineatus, caudal regeneration,
power of, 188,189
Lumbriculus, effect of X-rays on neoblasts,
163
regeneration, 161-162
variegatus, cephalic regeneration, morphallaxis, 194
effect of X-rays on caudal regeneration, 164r-166
neoblasts, 156-157
regeneration, 163
Lumbricus, arginase content, 173
cephalic regeneration, 175-177
granule synthesis, 204
Lycastris, cephalic regeneration, endocrine
role of nervous system, 197
M
Magalia perarmata, caudal regeneration,
morphogenesis, 187
power of, 189
cephalic regeneration, gradient, 183
power of, 192
Maize, stable gene change, 35-36
Mammals, corneal induction, 84
morphogenesis, postepithelial layer,
88
stroma, fibre matrix, 95
Man, corneal curvature, 103
Marchantia, regeneration, location, 133
Mareilia, apical dominance, 114
auxin in, 116
Mercaptoethanol, effect on differentiation
in Micrasterias, 74
effect on regeneration in planarians, 174
Mesothelium of Descemet, see Posterior
epithelium
Metachromasia, in corneal stroma, 92-93
Micrasterias t cell division, 48
cell wall, 50
chromosome complement, changes in,
65-68
aneuploidy, 68
polyploidy, 65-68
complex cells, 56-65
culture, 50-51
cytoplasmic framework, theory of, 74-76
defective forms, 51-55
aradiate cells, 53, 54r-55
uniradiate cells, 52-54
effect of chemical compounds, 73-74
high glucose concentrations, 73-74
mercaptoethanol on differentiation, 74
sodium 2, 4-dinitrophenol on differentiation, 74
ultraviolet irradiation on, 68-73
weak acids on nucleoli, 73
enucleate cells, 53, 55-56
morphogenesis, 45-80
normal features, 49-50
polyploidy, 65-68
production of binucleate cells, 58
tetraploidy, 67-68
triploidy, 68
americana t aradiate cells, 54-55, 75
uniradiate cells, 54, 75
angulosa, chromosome number, 45
nucleolus, 47
fimbriata, uniradiate cells, 54, 75
incredibilis, 46
radiata, nucleous, 47
rotata, chromosome number, 46
differentiation, 77-78
effect of high glucose concentrations,
73-74
of lowered turgor pressure, 50
Golgi bodies, 49
nucleolus, 47
var. evoluta, aneuploidy, 68
effect of continuous illumination,
58-60
