A genetic approach to plant biochemistry:
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Wien ; New York
Springer
1986
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Schriftenreihe: | Plant gene research
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XI, 291 S. Ill., graph. Darst. |
ISBN: | 3211819126 0387819126 |
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Datensatz im Suchindex
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adam_text | CONTENTS
CHAPTER 1 GIBBERELLIN MUTANTS
J. B. REID, HOBART, AUSTRALIA
I. INTRODUCTION 1
II. SELECTION AND IDENTIFICATION OF MUTANTS 2
III. GA SYNTHESIS 8
IV. INTERNODE LENGTH 8
A. SYNTHESIS MUTANTS 8
B. INSENSITIVE MUTANTS 14
V. SEED DORMANCY 17
VI. FLOWERING AND SENESCENCE 18
VII. SITE OF ACTION OF GA MUTANTS 22
VIII. CONCLUSIONS 25
IX. REFERENCES 26
CHAPTER 2 GENETIC ASPECTS OF ABSCISIC ACID
M. KOORNNEEF, WAGENINGEN, THE NETHERLANDS
I. INTRODUCTION 35
A. ABSCISIC ACID AS A PLANT HORMONE 35
B. BIOSYNTHESIS AND METABOLISM OF ABA 36
C. GENETIC ASPECTS OF ABA 36
II. ABA-DEFICIENT MUTANTS 38
A. ISOLATION, GENETIC AND GENERAL PHENOTYPIC CHARACTERISTICS 38
B. PLEIOTROPIC EFFECTS OF ABA-DEFICIENT MUTANTS 41
C. BIOCHEMISTRY OF ABA-DEFICIENT MUTANTS 41
D. THE USE OF ABA MUTANTS IN WATER RELATIONS RESEARCH 44
E. THE USE OF ABA MUTANTS IN SEED PHYSIOLOGY 44
F. ABA DEFICIENCY IN RELATION TO OTHER PHYSIOLOGICAL EFFECTS 46
III. MUTANTS AFFECTING ABA SENSITIVITY 46
IV. GENETIC DIFFERENCES IN ABA ACCUMULATION 48
V. CONCLUSIONS 50
VI. REFERENCES 50
HTTP://D-NB.INFO/860978478
VIII CONTENTS
CHAPTER 3 MUTANTS AS TOOLS FOR THE ELUCIDATION OF PHOTOSYNTHETIC
PROCESSES
C. CRITCHLEY AND W. BOTTOMLEY, CANBERRA, AUSTRALIA
I. INTRODUCTION 55
II. TWO GENOMES CODE FOR THE STRUCTURAL AND REGULATORY ELEMENTS OF
THE PHOTOSYNTHETIC APPARATUS 59
III. IDENTIFICATION OF THYLAKOID MEMBRANE PROTEINS AND THEIR
FUNCTIONS 61
IV. FROM PHENOTYPE TO GENE STRUCTURE 62
A. HERBICIDE RESISTANCE 62
B. BARLEY 63
C. CHLAMYDOMONAS 64
D. ARABIDOPSIS 65
E. OENOTHERA 65
F. SUMMARY 66
V. CONCLUSIONS 68
VI. REFERENCES 69
CHAPTER 4 MAIZE ALCOHOL DEHYDROGENASE: A MOLECULAR PERSPECTIVE
W. L. GERLACH, M. M. SACHS, D. LLEWELLYN, E. J. FINNEGAN
AND E. S. DENNIS, CANBERRA, AUSTRALIA AND ST. LOUIS, MO.,
U. S. A.
I. INTRODUCTION 74
II. GENETICS AND EXPRESSION OF ADH ENZYMES IN MAIZE 74
A. TWO GENES ENCODE ADH IN MAIZE 74
B. ORGAN SPECIFICITIES OF ADH1 AND ADH2 ACTIVITIES 75
C. MUTATIONS OF ADH GENES OF MAIZE 75
D. THE MAIZE ANAEROBIC RESPONSE 76
III. ISOLATION OF ADH GENES 78
A. CDNAS FROM ANAEROBICALLY INDUCED MAIZE GENES 78
B. ISOLATION AND IDENTIFICATION OF ADHL CDNA CLONES 79
C. ISOLATION AND IDENTIFICATION OF ADH2 CDNA CLONES 81
D. ISOLATION OF ADH GENES FROM OTHER PLANT SPECIES 81
IV. STRUCTURE OF PLANT ADH GENES 82
V. THREE-DIMENSIONAL STRUCTURE OF ADH ENZYMES 84
VI. GENETIC CHANGE AROUND AND WITHIN ADH GENES OF MAIZE 86
A. ALLELIC VARIATION 86
B. SOMACLONAL VARIATION 87
C. GENE DUPLICATION 87
D. DS ELEMENT MUTATIONS IN ADHL 88
E. ROBERTSON S MUTATOR 88
VII. APPROACHES TO THE MECHANISM OF ADH GENE REGULATION 89
A. DNA SEQUENCE COMPARISONS 89
B. MUTATIONS IN ADH WHICH AFFECT EXPRESSION 92
VIII. IN VIVO EXPRESSION OF ADH 93
CONTENTS IX
A. ATTEMPTS AT EXPRESSION IN CEREAL TISSUE CULTURE CELLS 94
B. TESTING MAIZE ADH GENE ACTIVITY IN DICOTYLEDONOUS PLANT
CELLS 95
C. EXPRESSION OF MAIZE ADH IN ANIMAL CELLS 95
IX. CONCLUSIONS 96
X. REFERENCES 96
CHAPTER 5 THE MOLECULAR GENETICS OF HIGHER PLANT NITRATE ASSIMILATION
J. L. WRAY, ST. ANDREWS, SCOTLAND
I. INTRODUCTION 101
II. THE NITRATE ASSIMILATION PATHWAY 102
A. NITRATE UPTAKE 102
B. NITRATE REDUCTASE 103
C. NITRITE REDUCTASE 108
III. GENETICS OF NITRATE ASSIMILATION 108
A. INTRODUCTION 108
B. NITRATE UPTAKE MUTATIONS 110
C. NITRATE REDUCTASE MUTATIONS 111
D. NITRITE REDUCTASE MUTATIONS 130
E. REGULATORY ALTERATIONS IN NITRATE ASSIMILATION 131
F. CONCLUSIONS 133
IV. APPLIED ASPECTS 134
A. SOMATIC HYBRIDISATION 134
B. CLONING NITRATE ASSIMILATION GENES 135
C. PLANT GENE TRANSFER SYSTEMS 140
D. WHOLE PLANT STUDIES 141
V. REFERENCES 143
CHAPTER 6 PLANT GENETIC APPROACHES TO SYMBIOTIC NODULATION AND
NITROGEN FIXATION IN LEGUMES
P. M. GRESSHOFF AND A. C. DELVES, CANBERRA, AUSTRALIA
I. INTRODUCTION 158
II. A GENERAL DESCRIPTION OF LEGUME NODULE ONTOGENY 161
III. THE PARASPONIA-BRADYRHIZOBIUM SYMBIOSIS 168
IV. BIOCHEMICAL AND MOLECULAR ANALYSIS OF PLANT FUNCTIONS 170
V. GENE-FOR-GENE ASPECTS OF NODULATION 171
VI. EXISTING PLANT VARIATION IN SYMBIOTIC NITROGEN FIXATION 174
VII. EXISTING SINGLE LOCUS VARIATION FOR NODULATION-NITROGEN
FIXATION 177
VIII. INDUCED MUTATION IN SYMBIOTIC CHARACTERS 178
A. PEA AND CHICKPEA MUTANTS 179
B. SOYBEAN NODULATION MUTANTS 181
X
CONTENTS
IX. CONCLUSIONS 194
X. REFERENCES 195
CHAPTER 7 ENDOSPERM PROTEINS
P. I. PAYNE, CAMBRIDGE, U. K.
I. INTRODUCTION 207
II. ORIGIN AND DEVELOPMENT OF THE ENDOSPERM 208
III. CLASSIFICATION OF THE MAJOR ENDOSPERM PROTEINS 209
IV. BIOCHEMICAL COMPLEXITY AND GENETIC VARIATION OF ENDOSPERM
PROTEINS 211
V. GENE MUTATIONS 214
A. ROLE IN PLANT BREEDING 215
B. ROLE IN GENETICS 217
C. ROLE IN BIOCHEMISTRY AND MOLECULAR BIOLOGY 218
D. ROLE IN THE FOOD INDUSTRY 222
VI. CHROMOSOME MUTATIONS 223
VII. CONCLUSIONS 226
VIII. REFERENCES 227
CHAPTER 8 MOLECULAR APPROACHES TO PLANT AND PATHOGEN GENES
R. I. S. BRETTELL AND A. J. PRYOR, CANBERRA, AUSTRALIA
I. INTRODUCTION 233
II. A MOLECULAR APPROACH TO GENE-FOR-GENE RESISTANCE 235
A. THE SHOTGUN METHOD 236
B. TRANSPOSON MUTAGENESIS OR GENE TAGGING 238
III. THE ROLE OF TOXINS IN PLANT DISEASE 239
IV. CONCLUSIONS 242
V. REFERENCES 243
CHAPTER 9 GAMETOPHYTIC GENE EXPRESSION
D. L. MULCAHY, AMHERST, MASS., U. S. A.
I. INTRODUCTION 247
II. OVERLAP BETWEEN SPOROPHYTIC AND GAMETOPHYTIC GENOTYPES 249
III. GAMETOPHYTIC GENE EXPRESSION AND THE ANGIOSPERMS 251
IV. THE INFLUENCE OF HAPLOID GENOTYPE ON POLLEN SIZE 252
V. TIME OF GENE EXPRESSION IN POLLEN 252
VI. METHODS OF HAPLOID SELECTION 252
VII. GAMETOPHYTIC GENE EXPRESSION AND THE STYLE 254
VIII. GENE EXPRESSION IN THE MEGAGAMETOPHYTE 255
CONTENTS
XI
IX. CONCLUSIONS 255
X. REFERENCES 256
CHAPTER 10 AUXOTROPH ISOLATION IN VITRO
A. D. BLONSTEIN, BASEL, SWITZERLAND
I. INTRODUCTION 259
A. SOME PRELIMINARY COMMENTS 259
B. WHY AUXOTROPHS? 260
C. THE CHARACTERISTICS, ADVANTAGES AND DISADVANTAGES OF
IN VITRO
SYSTEMS FOR MUTANT ISOLATION 261
D. SPECIES SUITABLE FOR AUXOTROPH ISOLATION 262
II. MUTAGENESIS 263
III. METHODS OF SELECTION 264
A. CONDITIONS AND MEDIA 264
B. POSITIVE SELECTION 265
C. NEGATIVE SELECTION 266
IV. PHENOTYPES 270
A. AMINO-ACID, VITAMIN AND PURINE AUXOTROPHS 270
B. NITRATE REDUCTASE MUTANTS 271
C. TEMPERATURE-SENSITIVE MUTATIONS 271
V. FUSION AND TRANSFORMATION 272
VI. CONCLUSIONS AND FUTURE PROSPECTS 273
VII. REFERENCES 274
SUBJECT INDEX 281
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spelling | A genetic approach to plant biochemistry ed. by A. D. Blonstein and P. J. King Wien ; New York Springer 1986 XI, 291 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Plant gene research Literaturangaben Genetik (DE-588)4071711-2 gnd rswk-swf Phytochemie (DE-588)4174632-6 gnd rswk-swf Molekulargenetik (DE-588)4039987-4 gnd rswk-swf Biochemie (DE-588)4006777-4 gnd rswk-swf Pflanzen (DE-588)4045539-7 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Phytochemie (DE-588)4174632-6 s Genetik (DE-588)4071711-2 s DE-604 Molekulargenetik (DE-588)4039987-4 s Pflanzen (DE-588)4045539-7 s Biochemie (DE-588)4006777-4 s Blonstein, Anne D. edt DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=019120848&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | A genetic approach to plant biochemistry Genetik (DE-588)4071711-2 gnd Phytochemie (DE-588)4174632-6 gnd Molekulargenetik (DE-588)4039987-4 gnd Biochemie (DE-588)4006777-4 gnd Pflanzen (DE-588)4045539-7 gnd |
subject_GND | (DE-588)4071711-2 (DE-588)4174632-6 (DE-588)4039987-4 (DE-588)4006777-4 (DE-588)4045539-7 (DE-588)4143413-4 |
title | A genetic approach to plant biochemistry |
title_auth | A genetic approach to plant biochemistry |
title_exact_search | A genetic approach to plant biochemistry |
title_full | A genetic approach to plant biochemistry ed. by A. D. Blonstein and P. J. King |
title_fullStr | A genetic approach to plant biochemistry ed. by A. D. Blonstein and P. J. King |
title_full_unstemmed | A genetic approach to plant biochemistry ed. by A. D. Blonstein and P. J. King |
title_short | A genetic approach to plant biochemistry |
title_sort | a genetic approach to plant biochemistry |
topic | Genetik (DE-588)4071711-2 gnd Phytochemie (DE-588)4174632-6 gnd Molekulargenetik (DE-588)4039987-4 gnd Biochemie (DE-588)4006777-4 gnd Pflanzen (DE-588)4045539-7 gnd |
topic_facet | Genetik Phytochemie Molekulargenetik Biochemie Pflanzen Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=019120848&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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