Mitochondria and anaerobic energy metabolism in eukaryotes: biochemistry and evolution
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Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin
De Gruyter
[2021]
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Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVII, 251 Seiten Illustrationen |
ISBN: | 9783110666779 |
Internformat
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100 | 1 | |a Martin, William F. |d 1957- |e Verfasser |0 (DE-588)1122308256 |4 aut | |
245 | 1 | 0 | |a Mitochondria and anaerobic energy metabolism in eukaryotes |b biochemistry and evolution |c William F. Martin, Aloysius G. M. Tielens, Marek Mentel |
264 | 1 | |a Berlin |b De Gruyter |c [2021] | |
300 | |a XVII, 251 Seiten |b Illustrationen | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
653 | |a Metabolism | ||
653 | |a Eukaryotes | ||
653 | |a Mitochondria | ||
653 | |a Evolution | ||
700 | 1 | |a Tielens, Aloysius G. M. |e Verfasser |4 aut | |
700 | 1 | |a Mentel, Marek |e Verfasser |4 aut | |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe |z 9783110612721 |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe |z 9783110612417 |
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999 | |a oai:aleph.bib-bvb.de:BVB01-032506520 |
Datensatz im Suchindex
_version_ | 1804182125760479232 |
---|---|
adam_text | CONTENTS
PREFACE
-
VII
LIST
OF
FIGURES
----
XIII
LIST
OF
ABBREVIATIONS
-
XV
PART
I:
BASICS
1
ANAEROBES
AND
EUKARYOTE
ORIGIN
-
7
2
EUKARYOTES
IN
LOW
OXYGEN
ENVIRONMENTS
-
13
3
A
MODERN
CONTEXT
OF
ATMOSPHERIC
EVOLUTION
-
18
4
ENERGY
METABOLISM
AND
REDOX
BALANCE
-
23
5
FERMENTATION,
GLYCOLYSIS,
AND
COMPARTMENTATION
-
26
6
RESPIRATION
IS
NOT
ALWAYS
AEROBIC
-
36
7
USING
OXYGEN
CAN
BE
OPTIONAL
-
42
7.1
AN
ELECTRON-TRANSPORT
CHAIN
WITH
BIOSYNTHETIC
FUNCTION
-
42
7.2
THE
CRABTREE
EFFECT:
FERMENTATION
IN
THE
PRESENCE
OF
02
-
43
7.3
THE
WARBURG
EFFECT:
AEROBIC
GLYCOLYSIS
IN
CANCER
CELLS
-
46
8
THE
HYPOXIA-INDUCIBLE
FACTOR
(HIF)
-
48
9
02
DEPENDENT
FERMENTATIONS
IN
TRYPANOSOMES
-
52
10
ANAEROBIC
MITOCHONDRIA
-
58
11
MITOCHONDRIA
WITH
AND
WITHOUT
OXYGEN
-
61
12
HYDROGENOSOMES
AND
H
2
*PRODUCING
MITOCHONDRIA
-
64
13
MITOSOMES
AND
MICROAEROPHILIA
-
68
X
-
CONTENTS
14
OTHER
ORGANELLES
OF
MITOCHONDRIAL
ORIGIN
-
73
15
GENOMES
ARE
NOT
ALIVE
-
78
PART
II:
WELL-STUDIED
EXAMPLES
16
ANAEROBIC
USE
OF
THE
MITOCHONDRIAL
ELECTRON-TRANSPORT
CHAIN
-
85
17
NAEGLERIA
GRUBERI,
A
STRICT
AEROBE
WITH
AN
ANAEROBIC
GENOME
-
89
18
MALATE
DISMUTATION
IN
THE
LIVER
FLUKE
FASCIOLA
HEPATICA
-
92
19
THE
ROUNDWORMS
ASCARIS
SUUM
AND
ASCARIS
LUMBRICOIDES
-
97
20
ANIMALS
IN
TIDAL
ZONES,
ANAEROBIC
SEDIMENTS
AND
SULFIDE
-
101
20.1
THE
MOLLUSC
MYTILUS
EDULIS
-
103
20.2
THE
POLYCHAETE
ANNELID
ARENICOLA
MARINA
-
105
20.3
THE
PEANUT
WORM
SIPUNCULUS
NUDUS
-
110
20.4
DIVERSE
PHYSIOLOGICAL
FUNCTIONS
OF
H2S
IN
ANIMALS
-
112
21
ANAEROBIC
RESPIRATION
IN
EUKARYOTES,
RARE
BUT
THERE
-
115
21.1
NITRATE
RESPIRATION
IN
FUSARIUM
AND
CYLINDROCARPON
-
119
22
ENZYMES
OF
ANAEROBIC
ENERGY
METABOLISM
IN
ALGAE
-
124
23
WAX
ESTER
FERMENTATION
IN
EUGLENA
GRACILIS
-
127
24
CHLAMYDOMONAS
REINHARDTII,
A
JACK
OF
ALL
TRADES
-
131
25
ORGANISMS
WITH
HYDROGENOSOMES
-
136
25.1
DISCOVERY
-----
136
25.2
TRICHOMONADS
-
139
25.3
CHYTRIDS
----
145
25.4
CILIATES
----
150
26
NYCTOTHERUS
OVALIS
AND
H
2
-PRODUCING
MITOCHONDRIA
-
151
26.1
BLASTOCYSTIS
HOMINIS
----
155
CONTENTS
-
XI
27
ENERGY
METABOLISM
IN
ORGANISMS
WITH
MITOSOMES
-
160
27.1
ENTAMOEBA
HISTOLYTICA
-
160
27.2
GIARDIA
INTESTINALIS
-
164
28
ENERGY
PARASITES
-
168
PART
III:
EVOLUTION
29
WHY
DID
MITOCHONDRIA
BECOME
SYNONYMOUS
WITH
02?
-
176
30
UBIQUITOUS
MITOCHONDRIA
AMONG
ANAEROBES
-
180
31
DIFFERENTIAL
LOSS
FROM
A
FACULTATIVE
ANAEROBIC
ANCESTRAL
STATE
-
186
32
OXYGEN
AVAILABILITY
IN
EARLY
EUKARYOTE
EVOLUTION:
THE
PASTEURIAN
-
190
33
EVOLUTION
WITH
MITOCHONDRIAL
ENERGY
METABOLISM
-
201
34
ENVOI
----
208
BIBLIOGRAPHY
-
211
INDEX
----
249
|
adam_txt |
CONTENTS
PREFACE
-
VII
LIST
OF
FIGURES
----
XIII
LIST
OF
ABBREVIATIONS
-
XV
PART
I:
BASICS
1
ANAEROBES
AND
EUKARYOTE
ORIGIN
-
7
2
EUKARYOTES
IN
LOW
OXYGEN
ENVIRONMENTS
-
13
3
A
MODERN
CONTEXT
OF
ATMOSPHERIC
EVOLUTION
-
18
4
ENERGY
METABOLISM
AND
REDOX
BALANCE
-
23
5
FERMENTATION,
GLYCOLYSIS,
AND
COMPARTMENTATION
-
26
6
RESPIRATION
IS
NOT
ALWAYS
AEROBIC
-
36
7
USING
OXYGEN
CAN
BE
OPTIONAL
-
42
7.1
AN
ELECTRON-TRANSPORT
CHAIN
WITH
BIOSYNTHETIC
FUNCTION
-
42
7.2
THE
CRABTREE
EFFECT:
FERMENTATION
IN
THE
PRESENCE
OF
02
-
43
7.3
THE
WARBURG
EFFECT:
AEROBIC
GLYCOLYSIS
IN
CANCER
CELLS
-
46
8
THE
HYPOXIA-INDUCIBLE
FACTOR
(HIF)
-
48
9
02
DEPENDENT
FERMENTATIONS
IN
TRYPANOSOMES
-
52
10
ANAEROBIC
MITOCHONDRIA
-
58
11
MITOCHONDRIA
WITH
AND
WITHOUT
OXYGEN
-
61
12
HYDROGENOSOMES
AND
H
2
*PRODUCING
MITOCHONDRIA
-
64
13
MITOSOMES
AND
MICROAEROPHILIA
-
68
X
-
CONTENTS
14
OTHER
ORGANELLES
OF
MITOCHONDRIAL
ORIGIN
-
73
15
GENOMES
ARE
NOT
ALIVE
-
78
PART
II:
WELL-STUDIED
EXAMPLES
16
ANAEROBIC
USE
OF
THE
MITOCHONDRIAL
ELECTRON-TRANSPORT
CHAIN
-
85
17
NAEGLERIA
GRUBERI,
A
STRICT
AEROBE
WITH
AN
"
ANAEROBIC
GENOME
"
-
89
18
MALATE
DISMUTATION
IN
THE
LIVER
FLUKE
FASCIOLA
HEPATICA
-
92
19
THE
ROUNDWORMS
ASCARIS
SUUM
AND
ASCARIS
LUMBRICOIDES
-
97
20
ANIMALS
IN
TIDAL
ZONES,
ANAEROBIC
SEDIMENTS
AND
SULFIDE
-
101
20.1
THE
MOLLUSC
MYTILUS
EDULIS
-
103
20.2
THE
POLYCHAETE
ANNELID
ARENICOLA
MARINA
-
105
20.3
THE
PEANUT
WORM
SIPUNCULUS
NUDUS
-
110
20.4
DIVERSE
PHYSIOLOGICAL
FUNCTIONS
OF
H2S
IN
ANIMALS
-
112
21
ANAEROBIC
RESPIRATION
IN
EUKARYOTES,
RARE
BUT
THERE
-
115
21.1
NITRATE
RESPIRATION
IN
FUSARIUM
AND
CYLINDROCARPON
-
119
22
ENZYMES
OF
ANAEROBIC
ENERGY
METABOLISM
IN
ALGAE
-
124
23
WAX
ESTER
FERMENTATION
IN
EUGLENA
GRACILIS
-
127
24
CHLAMYDOMONAS
REINHARDTII,
A
JACK
OF
ALL
TRADES
-
131
25
ORGANISMS
WITH
HYDROGENOSOMES
-
136
25.1
DISCOVERY
-----
136
25.2
TRICHOMONADS
-
139
25.3
CHYTRIDS
----
145
25.4
CILIATES
----
150
26
NYCTOTHERUS
OVALIS
AND
H
2
-PRODUCING
MITOCHONDRIA
-
151
26.1
BLASTOCYSTIS
HOMINIS
----
155
CONTENTS
-
XI
27
ENERGY
METABOLISM
IN
ORGANISMS
WITH
MITOSOMES
-
160
27.1
ENTAMOEBA
HISTOLYTICA
-
160
27.2
GIARDIA
INTESTINALIS
-
164
28
ENERGY
PARASITES
-
168
PART
III:
EVOLUTION
29
WHY
DID
MITOCHONDRIA
BECOME
SYNONYMOUS
WITH
02?
-
176
30
UBIQUITOUS
MITOCHONDRIA
AMONG
ANAEROBES
-
180
31
DIFFERENTIAL
LOSS
FROM
A
FACULTATIVE
ANAEROBIC
ANCESTRAL
STATE
-
186
32
OXYGEN
AVAILABILITY
IN
EARLY
EUKARYOTE
EVOLUTION:
THE
PASTEURIAN
-
190
33
EVOLUTION
WITH
MITOCHONDRIAL
ENERGY
METABOLISM
-
201
34
ENVOI
----
208
BIBLIOGRAPHY
-
211
INDEX
----
249 |
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id | DE-604.BV047100107 |
illustrated | Illustrated |
index_date | 2024-07-03T16:22:35Z |
indexdate | 2024-07-10T09:02:35Z |
institution | BVB |
isbn | 9783110666779 |
language | English |
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oclc_num | 1227273816 |
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owner_facet | DE-11 |
physical | XVII, 251 Seiten Illustrationen |
publishDate | 2021 |
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spelling | Martin, William F. 1957- Verfasser (DE-588)1122308256 aut Mitochondria and anaerobic energy metabolism in eukaryotes biochemistry and evolution William F. Martin, Aloysius G. M. Tielens, Marek Mentel Berlin De Gruyter [2021] XVII, 251 Seiten Illustrationen txt rdacontent n rdamedia nc rdacarrier Metabolism Eukaryotes Mitochondria Evolution Tielens, Aloysius G. M. Verfasser aut Mentel, Marek Verfasser aut Erscheint auch als Online-Ausgabe 9783110612721 Erscheint auch als Online-Ausgabe 9783110612417 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032506520&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Martin, William F. 1957- Tielens, Aloysius G. M. Mentel, Marek Mitochondria and anaerobic energy metabolism in eukaryotes biochemistry and evolution |
title | Mitochondria and anaerobic energy metabolism in eukaryotes biochemistry and evolution |
title_auth | Mitochondria and anaerobic energy metabolism in eukaryotes biochemistry and evolution |
title_exact_search | Mitochondria and anaerobic energy metabolism in eukaryotes biochemistry and evolution |
title_exact_search_txtP | Mitochondria and anaerobic energy metabolism in eukaryotes biochemistry and evolution |
title_full | Mitochondria and anaerobic energy metabolism in eukaryotes biochemistry and evolution William F. Martin, Aloysius G. M. Tielens, Marek Mentel |
title_fullStr | Mitochondria and anaerobic energy metabolism in eukaryotes biochemistry and evolution William F. Martin, Aloysius G. M. Tielens, Marek Mentel |
title_full_unstemmed | Mitochondria and anaerobic energy metabolism in eukaryotes biochemistry and evolution William F. Martin, Aloysius G. M. Tielens, Marek Mentel |
title_short | Mitochondria and anaerobic energy metabolism in eukaryotes |
title_sort | mitochondria and anaerobic energy metabolism in eukaryotes biochemistry and evolution |
title_sub | biochemistry and evolution |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032506520&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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