Higher plant cell respiration / edited by R. Douce and D.A. Day ; contributors, T. ap Rees ... [et al.] |
Pubbl/distr/stampa | Berlin : Springer, c1985 |
Descrizione fisica | xvi, 522 p. : ill. ; 25 cm |
Disciplina | 580 |
Altri autori (Persone) |
Day, David A.
Douce, Roland |
Collana | Encyclopedia of plant physiology ; 18 |
Soggetto topico |
Cell respiration
Plant mitochondria Plants - Respiration |
ISBN | 3540139354 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNISALENTO-991003490599707536 |
Berlin : Springer, c1985 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. del Salento | ||
|
Plant mitochondria [[electronic resource] /] / edited by David C. Logan |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Oxford ; ; Ames, Iowa, : Blackwell Pub., 2007 |
Descrizione fisica | 1 online resource (370 p.) |
Disciplina |
571.6/572
571.6572 580.5 |
Altri autori (Persone) | LoganDavid C |
Collana | Annual plant reviews |
Soggetto topico | Plant mitochondria |
Soggetto genere / forma | Electronic books. |
ISBN |
1-281-10027-7
9786611100278 0-470-98659-X 0-470-98658-1 |
Classificazione | 42.42 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Contents; Contributors; Preface; 1 Mitochondrial dynamics: the control of mitochondrial shape, size, number, motility, and cellular inheritance; 1.1 Introduction; 1.2 Endosymbiosis and mitochondrial evolution; 1.2.1 Mitochondria and prokaryotic cell division; 1.2.2 Plastids, the contractile ring, actomyosin and the loss of mitochondrial FtsZ; 1.3 Chondriome structure and organisation - the discontinuous whole; 1.4 Control of mitochondrial number, size, and gross morphology; 1.4.1 Mitochondrial division; 1.4.2 Mitochondrial fusion; 1.5 Mitochondrial movement and cellular inheritance
1.5.1 Mitochondrial movement and the cytoskeleton1.5.2 Chondriome structure and the cell cycle; 1.5.3 Mitochondrial inheritance in yeast; 1.5.4 Arabidopsis friendly mitochondria mutant and the cellular distribution of mitochondria; 1.6 Other plant mitochondrial dynamics mutants; 1.7 Metabolic control of mitochondrial morphology and motility; 1.8 Concluding remarks; Acknowledgements; References; 2 The unique biology of mitochondrial genome instability in plants; 2.1 Introduction; 2.2 Unusual and dynamic nature of the plant mitochondrial genome 2.3 Mitochondrial DNA recombination is controlled by the nucleus2.4 Recombination versus replication in plant mitochondrial genome dynamics; 2.5 Nuclear regulation of mitochondrial DNA maintenance; 2.6 Cellular and developmental responses to mitochondrial genome rearrangement in plants; 2.7 Plant mitochondrial genome and its adaptations; Acknowledgements; References; 3 Expression of the plant mitochondrial genome; 3.1 Introduction; 3.2 Identification of the pentatricopeptide repeats protein family: a key discovery toward the understanding of plant mitochondrial gene expression 3.2.1 Structure of PPR proteins3.2.2 Functions of PPR proteins; 3.3 Transcription in higher plant mitochondria; 3.3.1 Conserved and variable transcription units in plant mitochondria; 3.3.2 How many different conserved and nonconserved promoter structures are there in plant mitochondria?; 3.3.3 What proteins are necessary for transcription of mitochondrial DNA?; 3.3.4 Is gene expression in plant mitochondria regulated at the transcriptional level?; 3.4 Splicing; 3.4.1 Intron types; 3.4.2 Cis- and trans-splicing; 3.4.3 Splicing mechanism; 3.4.4 Splicing machinery 3.5 Exchange of nucleotide identity by RNA editing3.5.1 Distribution of RNA editing in the plant kingdom; 3.5.2 Function and consequences of RNA editing; 3.5.3 Mechanism and biochemistry of the RNA-editing process in higher plant mitochondria; 3.5.4 Upstream cis elements specify editing sites; 3.6 5' and 3' processing of plant mitochondrial transcripts; 3.6.1 5' and 3' processing machinery; 3.6.2 tRNA processing; 3.6.3 rRNA processing; 3.6.4 mRNA processing; 3.6.4.1 Processing of 5' extremities; 3.6.4.2 Processing of 3' extremities; 3.7 Stabilization and degradation of RNA 3.7.1 Cis and trans elements stabilizing mRNA |
Record Nr. | UNINA-9910145748003321 |
Oxford ; ; Ames, Iowa, : Blackwell Pub., 2007 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Plant mitochondria [[electronic resource] /] / edited by David C. Logan |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Oxford ; ; Ames, Iowa, : Blackwell Pub., 2007 |
Descrizione fisica | 1 online resource (370 p.) |
Disciplina |
571.6/572
571.6572 580.5 |
Altri autori (Persone) | LoganDavid C |
Collana | Annual plant reviews |
Soggetto topico | Plant mitochondria |
ISBN |
1-281-10027-7
9786611100278 0-470-98659-X 0-470-98658-1 |
Classificazione | 42.42 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Contents; Contributors; Preface; 1 Mitochondrial dynamics: the control of mitochondrial shape, size, number, motility, and cellular inheritance; 1.1 Introduction; 1.2 Endosymbiosis and mitochondrial evolution; 1.2.1 Mitochondria and prokaryotic cell division; 1.2.2 Plastids, the contractile ring, actomyosin and the loss of mitochondrial FtsZ; 1.3 Chondriome structure and organisation - the discontinuous whole; 1.4 Control of mitochondrial number, size, and gross morphology; 1.4.1 Mitochondrial division; 1.4.2 Mitochondrial fusion; 1.5 Mitochondrial movement and cellular inheritance
1.5.1 Mitochondrial movement and the cytoskeleton1.5.2 Chondriome structure and the cell cycle; 1.5.3 Mitochondrial inheritance in yeast; 1.5.4 Arabidopsis friendly mitochondria mutant and the cellular distribution of mitochondria; 1.6 Other plant mitochondrial dynamics mutants; 1.7 Metabolic control of mitochondrial morphology and motility; 1.8 Concluding remarks; Acknowledgements; References; 2 The unique biology of mitochondrial genome instability in plants; 2.1 Introduction; 2.2 Unusual and dynamic nature of the plant mitochondrial genome 2.3 Mitochondrial DNA recombination is controlled by the nucleus2.4 Recombination versus replication in plant mitochondrial genome dynamics; 2.5 Nuclear regulation of mitochondrial DNA maintenance; 2.6 Cellular and developmental responses to mitochondrial genome rearrangement in plants; 2.7 Plant mitochondrial genome and its adaptations; Acknowledgements; References; 3 Expression of the plant mitochondrial genome; 3.1 Introduction; 3.2 Identification of the pentatricopeptide repeats protein family: a key discovery toward the understanding of plant mitochondrial gene expression 3.2.1 Structure of PPR proteins3.2.2 Functions of PPR proteins; 3.3 Transcription in higher plant mitochondria; 3.3.1 Conserved and variable transcription units in plant mitochondria; 3.3.2 How many different conserved and nonconserved promoter structures are there in plant mitochondria?; 3.3.3 What proteins are necessary for transcription of mitochondrial DNA?; 3.3.4 Is gene expression in plant mitochondria regulated at the transcriptional level?; 3.4 Splicing; 3.4.1 Intron types; 3.4.2 Cis- and trans-splicing; 3.4.3 Splicing mechanism; 3.4.4 Splicing machinery 3.5 Exchange of nucleotide identity by RNA editing3.5.1 Distribution of RNA editing in the plant kingdom; 3.5.2 Function and consequences of RNA editing; 3.5.3 Mechanism and biochemistry of the RNA-editing process in higher plant mitochondria; 3.5.4 Upstream cis elements specify editing sites; 3.6 5' and 3' processing of plant mitochondrial transcripts; 3.6.1 5' and 3' processing machinery; 3.6.2 tRNA processing; 3.6.3 rRNA processing; 3.6.4 mRNA processing; 3.6.4.1 Processing of 5' extremities; 3.6.4.2 Processing of 3' extremities; 3.7 Stabilization and degradation of RNA 3.7.1 Cis and trans elements stabilizing mRNA |
Record Nr. | UNISA-996202116603316 |
Oxford ; ; Ames, Iowa, : Blackwell Pub., 2007 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. di Salerno | ||
|
Plant mitochondria [[electronic resource] /] / edited by David C. Logan |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Oxford ; ; Ames, Iowa, : Blackwell Pub., 2007 |
Descrizione fisica | 1 online resource (370 p.) |
Disciplina |
571.6/572
571.6572 580.5 |
Altri autori (Persone) | LoganDavid C |
Collana | Annual plant reviews |
Soggetto topico | Plant mitochondria |
ISBN |
1-281-10027-7
9786611100278 0-470-98659-X 0-470-98658-1 |
Classificazione | 42.42 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Contents; Contributors; Preface; 1 Mitochondrial dynamics: the control of mitochondrial shape, size, number, motility, and cellular inheritance; 1.1 Introduction; 1.2 Endosymbiosis and mitochondrial evolution; 1.2.1 Mitochondria and prokaryotic cell division; 1.2.2 Plastids, the contractile ring, actomyosin and the loss of mitochondrial FtsZ; 1.3 Chondriome structure and organisation - the discontinuous whole; 1.4 Control of mitochondrial number, size, and gross morphology; 1.4.1 Mitochondrial division; 1.4.2 Mitochondrial fusion; 1.5 Mitochondrial movement and cellular inheritance
1.5.1 Mitochondrial movement and the cytoskeleton1.5.2 Chondriome structure and the cell cycle; 1.5.3 Mitochondrial inheritance in yeast; 1.5.4 Arabidopsis friendly mitochondria mutant and the cellular distribution of mitochondria; 1.6 Other plant mitochondrial dynamics mutants; 1.7 Metabolic control of mitochondrial morphology and motility; 1.8 Concluding remarks; Acknowledgements; References; 2 The unique biology of mitochondrial genome instability in plants; 2.1 Introduction; 2.2 Unusual and dynamic nature of the plant mitochondrial genome 2.3 Mitochondrial DNA recombination is controlled by the nucleus2.4 Recombination versus replication in plant mitochondrial genome dynamics; 2.5 Nuclear regulation of mitochondrial DNA maintenance; 2.6 Cellular and developmental responses to mitochondrial genome rearrangement in plants; 2.7 Plant mitochondrial genome and its adaptations; Acknowledgements; References; 3 Expression of the plant mitochondrial genome; 3.1 Introduction; 3.2 Identification of the pentatricopeptide repeats protein family: a key discovery toward the understanding of plant mitochondrial gene expression 3.2.1 Structure of PPR proteins3.2.2 Functions of PPR proteins; 3.3 Transcription in higher plant mitochondria; 3.3.1 Conserved and variable transcription units in plant mitochondria; 3.3.2 How many different conserved and nonconserved promoter structures are there in plant mitochondria?; 3.3.3 What proteins are necessary for transcription of mitochondrial DNA?; 3.3.4 Is gene expression in plant mitochondria regulated at the transcriptional level?; 3.4 Splicing; 3.4.1 Intron types; 3.4.2 Cis- and trans-splicing; 3.4.3 Splicing mechanism; 3.4.4 Splicing machinery 3.5 Exchange of nucleotide identity by RNA editing3.5.1 Distribution of RNA editing in the plant kingdom; 3.5.2 Function and consequences of RNA editing; 3.5.3 Mechanism and biochemistry of the RNA-editing process in higher plant mitochondria; 3.5.4 Upstream cis elements specify editing sites; 3.6 5' and 3' processing of plant mitochondrial transcripts; 3.6.1 5' and 3' processing machinery; 3.6.2 tRNA processing; 3.6.3 rRNA processing; 3.6.4 mRNA processing; 3.6.4.1 Processing of 5' extremities; 3.6.4.2 Processing of 3' extremities; 3.7 Stabilization and degradation of RNA 3.7.1 Cis and trans elements stabilizing mRNA |
Record Nr. | UNINA-9910830147903321 |
Oxford ; ; Ames, Iowa, : Blackwell Pub., 2007 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Plant mitochondria [[electronic resource] /] / edited by David C. Logan |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Oxford ; ; Ames, Iowa, : Blackwell Pub., 2007 |
Descrizione fisica | 1 online resource (370 p.) |
Disciplina |
571.6/572
571.6572 580.5 |
Altri autori (Persone) | LoganDavid C |
Collana | Annual plant reviews |
Soggetto topico | Plant mitochondria |
ISBN |
1-281-10027-7
9786611100278 0-470-98659-X 0-470-98658-1 |
Classificazione | 42.42 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Contents; Contributors; Preface; 1 Mitochondrial dynamics: the control of mitochondrial shape, size, number, motility, and cellular inheritance; 1.1 Introduction; 1.2 Endosymbiosis and mitochondrial evolution; 1.2.1 Mitochondria and prokaryotic cell division; 1.2.2 Plastids, the contractile ring, actomyosin and the loss of mitochondrial FtsZ; 1.3 Chondriome structure and organisation - the discontinuous whole; 1.4 Control of mitochondrial number, size, and gross morphology; 1.4.1 Mitochondrial division; 1.4.2 Mitochondrial fusion; 1.5 Mitochondrial movement and cellular inheritance
1.5.1 Mitochondrial movement and the cytoskeleton1.5.2 Chondriome structure and the cell cycle; 1.5.3 Mitochondrial inheritance in yeast; 1.5.4 Arabidopsis friendly mitochondria mutant and the cellular distribution of mitochondria; 1.6 Other plant mitochondrial dynamics mutants; 1.7 Metabolic control of mitochondrial morphology and motility; 1.8 Concluding remarks; Acknowledgements; References; 2 The unique biology of mitochondrial genome instability in plants; 2.1 Introduction; 2.2 Unusual and dynamic nature of the plant mitochondrial genome 2.3 Mitochondrial DNA recombination is controlled by the nucleus2.4 Recombination versus replication in plant mitochondrial genome dynamics; 2.5 Nuclear regulation of mitochondrial DNA maintenance; 2.6 Cellular and developmental responses to mitochondrial genome rearrangement in plants; 2.7 Plant mitochondrial genome and its adaptations; Acknowledgements; References; 3 Expression of the plant mitochondrial genome; 3.1 Introduction; 3.2 Identification of the pentatricopeptide repeats protein family: a key discovery toward the understanding of plant mitochondrial gene expression 3.2.1 Structure of PPR proteins3.2.2 Functions of PPR proteins; 3.3 Transcription in higher plant mitochondria; 3.3.1 Conserved and variable transcription units in plant mitochondria; 3.3.2 How many different conserved and nonconserved promoter structures are there in plant mitochondria?; 3.3.3 What proteins are necessary for transcription of mitochondrial DNA?; 3.3.4 Is gene expression in plant mitochondria regulated at the transcriptional level?; 3.4 Splicing; 3.4.1 Intron types; 3.4.2 Cis- and trans-splicing; 3.4.3 Splicing mechanism; 3.4.4 Splicing machinery 3.5 Exchange of nucleotide identity by RNA editing3.5.1 Distribution of RNA editing in the plant kingdom; 3.5.2 Function and consequences of RNA editing; 3.5.3 Mechanism and biochemistry of the RNA-editing process in higher plant mitochondria; 3.5.4 Upstream cis elements specify editing sites; 3.6 5' and 3' processing of plant mitochondrial transcripts; 3.6.1 5' and 3' processing machinery; 3.6.2 tRNA processing; 3.6.3 rRNA processing; 3.6.4 mRNA processing; 3.6.4.1 Processing of 5' extremities; 3.6.4.2 Processing of 3' extremities; 3.7 Stabilization and degradation of RNA 3.7.1 Cis and trans elements stabilizing mRNA |
Record Nr. | UNINA-9910876703203321 |
Oxford ; ; Ames, Iowa, : Blackwell Pub., 2007 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Plant mitochondria : with emphasis on RNA editing and cytoplasmic male sterility / edited by A. Brennicke and U. Kück |
Pubbl/distr/stampa | Weinheim ; New York : VCH, c1993 |
Descrizione fisica | 434 p. : ill. ; 25 cm |
Disciplina | 581.83 |
Altri autori (Persone) |
Brennicke, A.
Kück, H. U. |
Soggetto topico |
Cytoplasmic male sterility
Plant mitochondria RNA editing |
ISBN | 3527300333 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNISALENTO-991003542299707536 |
Weinheim ; New York : VCH, c1993 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. del Salento | ||
|