Файл: Розанова Е.П. Микрофлора нефтяных месторождений.pdf

ВУЗ: Не указан

Категория: Не указан

Дисциплина: Не указана

Добавлен: 27.06.2024

Просмотров: 125

Скачиваний: 0

ВНИМАНИЕ! Если данный файл нарушает Ваши авторские права, то обязательно сообщите нам.

тяных

месторождений

Второго

Баку.— Труды

Ие-та нефти АН

СССР,

т. III,

97.

 

 

 

 

 

 

 

 

 

 

 

 

Ш т у р м

Л .

Д .

1951. Роль сульфатвосстанавливающих бактерий в жизни и ис­

тории нефтяных месторождений. В сб. «Памяти акад. М. И. Губкина».

М., Изд-во АН СССР.

 

 

 

 

 

 

 

 

 

Ш т у р м

Л .

Д . 1952. Морфологические особенности сульфатвосстанавлппаю-

щих бактерий, встречающихся

в

нефтяных месторождениях.— Труды

Ии-та микробиол. АН СССР, вып. 2, 3.

 

 

 

 

 

 

Ш т у р м Л .

Д .

1957. Об использовании молекулярного водорода сульфатвосста-

навливающимп

бактериями нефтяных месторождений.— Микробиоло­

гия, 26, 710.

 

 

 

 

 

 

 

 

 

 

 

 

Ш т у р м

Л .

Д . 1961. Роль микроорганизмов в образовании озокерптоподобпых

битумов. — Изв. АН СССР, серия биол., № 2, 278.

 

 

 

 

 

Ш т у р м

Л .

Д . , Р о з а н о в а

Е . П . 1961. Изучение микроорганизмов Минусинской

котловины в связи с генезисом озокерптоподобных битумов.— Микробио­

логия,

30, 122.

 

 

Е . П . 1963. Изучение дрожжей из рода Candida, раз­

Ш т у р м

Л .

Д . , Р о з а н о в а

вивающихся на углеводородах, выделенных из озокеритового месторож­

дении.— Микробиология, 32, 1013.

 

 

 

 

 

 

 

Э к з е р ц е в В .

А . 1958. Изучение процесса разрушения нефти микроорганизма­

ми в анаэробных условиях,— Микробиология, 27, 626.

 

 

 

 

Э к з е р ц е в

В . А . 1960. Образование метана микроорганизмами в нефтяных

месторождениях.— Геохимия, № 4, 363.

 

 

 

 

 

 

Э к з е р ц е в В .

А . , К у з н е ц о в С.

И . 1954. Исследования микрофлоры нефтеносных

месторождений Второго Баку.— Микробиология, 23, 3.

 

 

 

 

A b b o t В.

Casicla

L.

Е.

1968. Oxidation of alkanes to internal monoalkenes

by

a Nocardia.— J. Bacteriol., 96, 925.

 

Purification and

proper­

A d a c h i

K . ,

I w a y a m a Y.,

Т а п і о к а H. ,

T a k e â a Y. 1966.

ties of

homogentisate oxygenase from Pseudomonas fluorescens.— Biochim.

et biophys. acta, 118, 88.

reaction of Clostridium nigrificans.— J

A k a g i

J.

M .

1964.

Phosphoroclastic

Bacteriol., 88, 813.

G. 1967. Degradation of glucose by proliferating cells of

A k a g i

I. M. ,

J a c k s o n

Desulfotomaculum nigrificans.— Appl. Microbiol.,

15, 1427.

 

 

 

 

A l e e r n

M .

T.

H . 1969.

Generation of

reducing power

in

chemosynthesis. VI.

Energy-linked reactions in the

chemoautotropii

Thiobacillus

neapolita-

nus.— Antonie

van

Leeuwenhoek. J. Microbiol,

and

Serol.,

35,

379.

 

A l i K h a n

M .

J., H a l l

A .

N.,

R o b i n s o n D .

S . 1964. Products of the oxidation of

selected

alkanes

by

a

gram-negative bacterium.— Antonie

van

Leeuwen­

hoek J. Microbiol, anl Serol., 30, 417.

 

 

 

 

 

 

 

A l l e n J. E. , M a r k o v e t z

A . T. 1970. Oxidation of n-letradecane and 1-tetradecene

by Fungi.— J. Bacteriol., 103, 426.

utilization of hydrocarbons by micro­

A r a i Y . , Y a m a d a K . 1969. Studies on the

organisms. Part XII. Screening of alicyclic hydrocarbon-assimilating mic­

roorganisms and lrans-4-ethylcyclohexanol formation from ethylcyclohexa-

ne.— Agric. and Biol. Chem., 33, 63.

 

 

 

 

 

 

 

A z o u l a y E. ,

C h o u t e a u

T., D a v i d o v i c s

G. 1963. Isolement et caractérisation des

enzymes responsables de l’oxydation

des hydrocarbures.— Biochim. et bio­

phys. acta., 77, 554.

 

 

 

V. 1972. The

microbial degradation of

B a g g i G.,

C a t e l a n i

D . ,

G a l l i

E. , T r e c c a n i

phenylalkanes,

2-phenylbutane,

3-phenylplentane, 3-phenyldodecane

and

4-phenylheptane.— Biochem. J., 126, 1091.

 

 

and

Engng.

B a r k e r

H .

A . 1956. Biological formation

of methane.— Industr.

Chem., 48, 11, 1443.

1971. Phosphorylation coupled to

electron transfer bet­

B a r t o n

L . L . ,

P e c k

H .

D .

ween lactate and fumarale in cell-free extracts of the sulfatreducing anae­

robe Desulfovibrio gigas.— Bacteriol. Proc., p. 149.

in oil

field

waters.—

B a s t i n

E .

1926. The presence of sulfate-reducing bacteria

Science, 63, 21.

187


B a y h j R . , D a g l e y S.,

G i b s o n

D. T. 1966. The metabolism of

cresols

by

 

species

of Pseudomonas.— Biochcm. J., 101, 293.

 

as a factor in

microbial degrada­

B e a m H. W . ,

P e r r y J. 1. 1973.

Co-metabolism

tion of cycloparaffinic hydrocarbons.— Arch. Mikrobiol., 91, 87.

 

 

Mur­

Borgey’s Manual of

Determinative

Bacteriology.

1957 Breed R. S.,

ray E. G. D., Smith N. R (Eds). 7 Ed. Baltimore, Williams,

Wilkins

Co.

B l a k l e y

E. R.

 

1967. The metabolism of aromatic compounds with different side

chains by a Pseudomonas.— Canad. J. Microbiol., 13, 761.

 

 

 

 

 

B l a y l o c k B . A . , S t a d t m a n T.

C. 1966. Methane biosynlhesis by Melhanosarcina

barkerii. Properties of the soluble enzyme

system.— Arch.

Biochem. and

Biophys.,

 

116, 138.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

B l e v i n s

W . T.,

P e r r y

J. 1. 1972. Metabolism of propane, n-propylamine and pro­

pionate by hydrocarbon-utilizing bacteria.— J. Bacteriol.,

112, 513.

 

 

B o g a n

R . H.,

 

S a w y e r

C. N .

1955. Biochemical degradation of synthetic deter­

gents. II. Studies on the relation between chemical structure and bioche­

mical oxidation.— Sewage and Insudtr. Wastes, 27, 917.

 

assimilation in

B o s P. ,

B r u y n

d e J.

C. 1973. The significance

of

hydrocarbon

yeast identification.— Antonie van Leeuwenhoek. J. Microbiol, and

Serol.,

39,

99.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

1964. Identification

B r a n d e n b u r g

C. F., L a t h a m D . R . , C o o k G.

L.,

H a i n e s

W .

E .

of cycloalkyl ketone in Wilmington petroleum through use of chromato­

graphy and spectroscopy.— J. Chem. Engn. Data, 9, 463.

 

Methanobacillus

B r y a n t

M . P ;

W o l i n

E. A . ,

W o l i n

M . T.,

 

W o l l e

R .

S.

1967.

omelianskii — a

symbiotic

association

 

of

two species of

bacteria.— Arch.

Mikrobiol., 59, 20.

 

 

 

 

 

 

 

1966.

Desulfovibrio

africanus

C a m p b e l l L. ,

 

K a s p n y c k i M .

A . , P o s t g a t e

J.

R .

sp. n.— a

new dissimilatory

sulfate-reducing

bacterium.— J. Bacteriol., 92,

1122.

P o s t g a t e J. R . 1965.

Classification

of

the spore-forming sulfate-re­

C a m p b e l l L. ,

ducing bacteria.— Bacteriol. Revs, 29, 359.

 

 

 

 

 

 

 

 

 

 

C a r d i n i

G., J u r t s h u k

P. 1968.

Cytochrome

 

P-450 involvement in the oxidation

of n-octane by

cell-free

extracts of

Coryncbacterium

sp. strain

ZEPC.—

J. Biol. Chem., 243, 6070.

 

 

 

 

 

 

 

 

 

 

 

of

n-octane

by Co-

C a r d i n i

G., J u r t s h u k

P . 1970. The enzymatic hydroxylation

rynebacterium sp. st. 7EIC.— J. Biol. Chem., 245, 2789.

 

 

 

 

 

C a t t e r a l F. A . ,

W i l l i a m s P. A .

1971. Some properties of the naphtalene-oxygenase

from Pseudomonas sp. NCIB 9816.— J. Gen. Microbiol., 67, 117.

 

cell-free

C h a p m a n R .

 

J., D a g l e y S . 1962.

Oxdiation

of

homogentisic

acid by

extracts of a vibrio.— J. Gen. Microbiol., 28, 251.

 

 

 

 

 

S . 1972.

C h a r k a v a r t y

M . , A m i n P. M . ,

S i n g h

H . D . ,

B a r u a c h

J.

N., I j e n g a r

M .

A kinetic model for microbial growth on

solid hydrocarbons.— Biotechnol.

and bioengng, 14, 61.

 

 

 

 

 

1971. Some observation on growth

C h o s r o v i B. ,

M a c p h e r s o n R. ,

M i l l e r

I. D . A .

and hydrogen uptake by Desulfovibrio

 

vulgaris.— Arch. Mikrobiol., 80, 324.

C o r r i c k

J. D . ,

 

R o s e M . J., S u t t o n J. A . , C a r o s e l l a

J.

M .

1970. Microbial conversion

of hydrous calcium sulfate to hydrogen sulfide.— Bureau Mines Rept In­

vestigations US Dept Interior, № 7355, 622. 06175.

 

microorganisms.— Adv.

D a g l e y

S . 1971. Catabolism

of

aromatic compounds by

Microbial Physiol., 6, 1.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

D a v i e s

T. R .

1973. Isolation of bacteria capable of utilizing methane as a hyd­

rogen-donor in the process of denitrification.— Water Res., 7, 575.

 

 

D a v i s J. B . 1952. Studies of soil

samples from paraffine

dirt bed.— Bull. Anier.

Assoc. Petrol. Geologists, 36, 2186.

 

 

 

 

 

 

 

 

 

 

Elsevier

D a v i s J. B. 1967. Petroleum

microbiology. Amsterdam, London, N. Y.,

Publ. Co.

 

 

1961. Oxidation of alkyl-substituted cyclic hydro­

D a v i s J. B. ,

R a y m o n d R. L.

carbons

by a Nocardia

during

growth

on

n-alkanes.— Appl. Microbiol., 9.

383.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

D a v i s J. B . , R o d n e y M . S . 1954. Detection of microbially produced gaseous hyd­ rocarbons other tham methane.— Science, 119, 381.

188


D a v i s

J. В. ,

U p d e g r a f f

D . 1954. Microbiology in

the petroleum

industry.— Bac-

teriol. Revs, 18, 215.

 

 

 

1966.

Anaerobic

oxidation of hydrocarbons

by

D a v i s

J. B. ,

Y a r b r o u g h H .

F.

Desulfovibrio desulfuricans.— Chem. Geol., 2, 137.

 

 

D o u r o s

T.

D., F r a n k e n f e l d

J.

W .

1968.

Oxidation of alkylbenzenes by a strain

of

Micrococcus

cerificans

growing

on

n-paraffins.— Appl.

Microbiol.,

16,

532.

 

 

 

 

 

 

 

1969. The metabolism of aromatic compounds

by

D u t t o n

P.

L., E v a n s

W .

C.

 

Rbodopseudomonas palustris. A new reductive method of aromatic ring

metabolism.— Biochem. J., 113, 525.

 

 

 

of Candida

tro­

E i n s e l e

A . , F i e c h t e r

A . , K n ö p f e i H . P . 1972. Respiratory activity

picalis

during growth

on

hexadecane

and

on glucose.— Arch. Mi'krobiol.,

82,

247.

 

 

T. J. 1968. Paraffin oxidation in Pseudomonas aeruginosa.

E y k

v a n

J.,

B a r t e l s

I. Induction of paraffin oxidation.— J. Bacteriol., 96, 706.

 

 

E y k J.

v a n . ,

B a r t e l s

T. J. 1970. Paraffin oxidation in Ps. aeruginosa. II. Gross

fractionation of the enzyme system into soluble and particulate compo­

nents.— J. Bacteriol.,

104, 1065.

 

 

 

 

 

 

F i n d l e y

J.

E., A k a g i

J. M . 1970. Role of thiosulfate in bisulfite reduction as ca­

talyzed by Desulfovibrio vulgaris.— J. Bacteriol., 103, 741.

aliphatic hydro­

F o r n e y

F.

W . , M a r k o v e t z A .

J. 1970. Subterminal oxidation of

carbons.— J. Bacteriol.,

 

102, 281.

 

 

 

 

 

 

F o r r o

J. R .

1966. Microbial

 

oxidation of toluene.— Dissert, abstracts, 26, 6305.

F o s t e r

J.

W .

1962.

Hydrocarbons

as substrates

for microorganisms.— Antonie

an Leeuwenhoek. J. Microbiol, and Serol., 28, 241.

 

 

F o s t e r

J.

W . ,

D a v i s

R . H . 1966. A methane-dependent Coccus with notes on

classification and

nomenclature of

obligate, methane-utilizing bacteria.—

J. Bacteriol., 91, 1924.

 

 

 

 

the oxidation of n-decane by Pseudomonas

F r e d e r i c k s R .

M . 1967. Products of

aeruginosa and

Mycobacterium

rodochrous.— Antonie van Leeuwenhoek. J.

Microbiol, and Serol., 33, 41.

 

 

 

Kohlenwasserstoffen.— Arch. Мікго-

F u h s

C. W .

 

1961. Der

mikrobielle Abbau

biol.,

39,

374.

 

 

. 1968. Protocalechuale — 3,4-dioxygenase. I. Crystalliza­

F u j i s a w a

H. ,

H a y a i s h i

0

tion and charakterization.— J. Biol. Chem., 243, 2673.

 

 

F u s a o T.,

T a k e o S.

1972. Extracellular accumulaticfti of DNA by hydrocarbon-

utilizing bacteria.— Agric. and Biol. Chem., 36, 133.

 

 

G a l l o

M. ,

B e r t r a n d J. C.,

A z o u l a y

S.

1971. Participation du cytochrome P450 dans

l’oxydation des

alcanes

chez

Candida

tropicalis — FEBS Letters, 19, 45.

G i b s o n

D .

T C a r d i n i

G.

E.,

M a s e l e s

F.

C.,

K a l l i o К . E . 1970a.

Incorporation of

oxygen-18 into benzene by Ps. putida.— Biochemistry, 9, 1631.

( + )

G i b s o n

D .

T., H e n s l e y

M . ,

Y o s h i o k a

H. , M a b r y

T. J. 1970b. Formation of

cis-2,3-dihydroxy-l-methylcyclohoxa-4,6-diene from toluene by Pseudomo­

nas putida.— Biochemistry, 9, 1626.

 

 

 

 

 

G i b s o n

D.

T.,

W o o d

I.

M. , C h a p m a n

P . J., D a g l e y S . 1967. Bacterial degradation

of aromatic compounds.— Biotechnol. and Bioengng, 9, 33.

 

 

G o m a G.,

P a r e i l l e u x

A . ,

D u r a n d G.

1972. Fermentation sur n-alcanes: variation

de la solubilité des hydrocarbures au cours de la croissance de Candida

lipolytica.— C. r. Acad, sei., 7, 873.

 

 

 

 

 

G r i f f i n

M . , T r u d g i l l

P .

W .

1972. The metabolism of cyclopentaflol by Pseudo­

monas NCIB 9872.— Biochem. J., 129, 595.

 

 

 

G r i f f i t s

E. , E v a n s

W . C. 1965. A ceel-free perhydroxylase system from soil

pseudomonads,

with

activity

on aromatic hydrocarbons.— Biochem. J., 95,

51.

 

 

 

 

 

 

 

 

C. 1963. Microbial oxidation of sulfonated alkylben­

f f a d d l e s t o n

R . L., A l l r e d

R .

 

zenes.— Developm. Induslr. Microbiol., 4, 24.

 

 

H a n s e n

T.

A . , v a n

G e m e r d e n

H .

1972.

Sulfide

utilization by purple nonsulfur

bacteria.— Arch. Mikrobiol., 86, 49.

 

 

 

 

vul­

H a s c h k e К .

H . , C a m p b e l l

L .

 

L.

1971. Thiosulfate-reductase of Desulfovibrio

garis— J. Bacteriol.,

106, 603.

 

 

 

 

 

 

 

1S9


H a s h w a

F., P f e n n i g N.

1972. The reductive enzymatic cleavage of thiosulfate

methods and applications.— Arch. Mikrobiol., 81, 36.

 

 

 

 

I l e y d e m a n

M .

T., A z o u l a y E .

1963. Extraction and properties of aldehydedehyd-

rogenase

from Pseudomonas

aeruginosa.— Biochim. et

biophys.

acta, 77,

545.

1966.

Beobachtungen über das

Wachstum von

Bakterien

in nicht-

H e y e r

J.

wässrigen

Medien.— Vorträge

der

Internat. Sympos. «Erdölmikrobiologie»,

Brno CSSR, 1964. Berlin, Academie-Verlag.

 

 

 

 

 

 

H e y e r

/., S c h w a r t z W .

1970.

Untersuchungen zur Erdölmikrobiologie. V. Leben

in

nicht

wässrigen

Medien. 1 — Verhallen

von Mikroorganismen

im Kon­

takt mit Mineralöl. Z. allgem. Mikrobiol., 10, 545.

 

 

 

 

H i g g i n s

S.

}.,

M a n d e l s t a m J.

1972. Regulation of pathways degrading aromatic

substrates in Pseudomonas putida. Enzymic response to

binary

mixtures

of substrates.— Biochem. J., 126, 901.

 

 

 

 

methane — grown

H i g g i n s

I.

I., Q n a y l e

I.

R .

1970. Oxydation of methane by

Ps. methanica and

Methanomonas

melhanica — Biochem. J., 118, 201.

H o r v a t h R . S.

1972.

Microbial co-metabolism and the degradation of organic

compounds in nature.— Bacteriol. Revs, 36, 146.

 

 

 

of p-hyd-

H o w e l l

 

L.

G., S p e c t o r

T.,

M o s s e y

V. 1972. Purification and properties

roxybenzoate hydroxylase from Pseudomonas

fluorescens.— J. Biol. Chem.,

247, 4340.

 

 

 

 

 

 

D . 1965. The taxonomy of certain thio-

H u t c h i n s o n M . , J o h n s t o n

K .

J., W h i t e

bacilli.— J. Gen. Microbiol., 41, 357.

1966.

Taxonomy

of

acidophilic Ihio-

H u t c h i n s o n M . , J o h n s t o n

K .

J., W h i t e

D .

bacilli.— J. Gen. Microbiol., 44, 373.

 

1967.

Taxonomy

of anaerobic thioba-

H u t c h i n s o n M. , J o h n s t o n

K .

J., W h i t e

D .

cilli.— J. Gen. Microbiol., 47, 17.

1964. The

oxidation

of

a-olefins by а

H u y b r e g s t e R . ,

V a n

d e r

L i n d e n

A . C.

Pseudomonas.— Antonie

van

Leeuwenhoek.

J. Microbiol,

and

Serol., 30,

185.

 

 

 

 

 

 

 

 

 

1972. A new enzyme species of p-hyd-

H y g a s h i N . , S h o u n H.,

Y a n o

J., A r i m a K .

roxybenzoate hydroxylase during oxygenating process observed by the

stopped-flow method.— Agric. and Biol. Chem., 36, 1081.

 

 

 

J i d a M . , I i z u k a

H . 1971.

Enzymatic conversion of 1-decene to decyl alcohol by

Candida rugosa JF 101,— Z. allgem. Mikrobiol., 11, 301.

 

from n-decane by

I i z u k a

 

H . ,

l i d a

M . , F u j u t a S. 1969. Formation of

n-decene-l

resting cells of Candida rugosa.— Z. allgem. Mikrobiol., 9, 223.

 

I i z u k a

 

H. ,

l i d a M . , U n a m i

Y. , H o s h i o

Y. 1968. n-Decan dehydrogenation by a

cell-free

extract

of

Candida

rugosa.— Z. allgem. Mikrobiol., 8,

145.

I i z u k a

 

H. , K o m a g a t a

K .

1964a. Microbiological studies on petroleum and natu­

ral

gas. I. Determination of

hydrocarbon-utilizing bacteria.— J. Gen. and

Appl. Microbiol.,

10, 207.

 

 

 

 

 

 

 

 

 

I i z u k a

 

H. , K o m a g a t a

K . 1964b. Microbiological studies on petroleum and natural

gas. II. Determination of Pseudomonas isolated from oil-brines and rela­

ted materials.— J. Gen. and Appl. Microbiol., 10, 223.

 

 

 

 

J i z u k a

 

H. , K o m a g a t a

K . 1965a. Microbiological studies on petroleum and natural

gas. III. Determination of Brevibacterium, Arthrobacter, Micrococcus, Sar-

cina,

Alcaligenes

and Achromobacter, isolated from oil-brines in Japan.—

J. Gen. and Appl. Microbiol., 10, 207.

 

 

 

 

 

 

 

I i z u k a

 

H., K o m a g a t a

K .

1965b. Microbiological studies on petroleum and natu­

ral gas. IV. Microflora of Higashiyama oil mining field.— J. Gen. and Appl.

Microbiol.,

11, 15.

 

1965c. Microbiological studies on petroleum and natu­

J i z u k a

 

H. , K o m a g a t a

K .

ral gas. V. Microflora of Yabase and Nishiyama oil field in Japan.— J. Gen.

and Appl. Microbiol., 11, 91.

 

 

 

 

 

 

 

 

 

I i z u k a

 

H. , K o m a g a t a

K .

1965d. Microbiological studies on petroleum and natu­

ral

gas. VI. Microflora of Nigata

and Mobara gas-field

in

Japan.— J. Gen.

and Appl. Microbiol., 11, 103.

 

 

 

 

 

 

bacterium isolated

I i z u k a

 

H. ,

O k a z a k i H. ,

S e t o

N . 1969. A new sulfate-reducing

from Antarctica.— J. Gen. and Appl. Microbiol., 15, 11.

 

 

 

 

190


I r i e К.-,

K o b a y a s h i

К . , K o b a y a s h i

M . , I s h i m o t o M .

1973. Biochemical

studies

on sulfate-reducing bacteria. XII. Some properties of flavodoxin from De-

sulfovibrio vulgaris.— J. Biochem., 73, 353.

 

 

 

 

 

h o c h M . ,

D o i

S. 1969. Taxonomic studies on the aromatic hydrocarbon-utilizing

yeasts.— J. Ferment. Technol., 47, 161.

O. 1969.

Microbial hydrocarbon

co­

J a m i s o n

V.

W . ,

R a y m o n d R .

L. , H u d s o n

J.

oxidation.

III.

Isolation

and

characterization of an ,a, a'-dimetyl-cis,

 

cis-

muconic acid-producing strain

of Nocardia corallina.— Appl. Microbiol.,

17,

853.

 

 

 

 

 

 

 

1970.

Growth inhibition in Thiobacillus neapolita-

J o h n s o n

C.

L. ,

V i s h n i a k W .

nus

by

histidine, methionine,

phenylalanine and threonine.— J. Bacteriol.,

104,

1145.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

J o n e s H .

E. 1971a. Sulfate-reducing bacterium with unusual morphology and

pigment content.— J. Bacteriol.,

106, 339.

 

 

 

 

 

J o n e s H .

E .

1971b. A re-examination

of Desulfovibrio africanus.— Arch. Mikro­

biol., 80, 78.

 

 

 

 

 

 

 

 

 

 

 

 

J o n e s H.

E.

1972. Cytochromes and other pigments of dissimilatory sulphate-

reducing bacteria.— Arch. Mikrobiol., 84, 207.

 

 

 

 

 

J o n e s J.

G.

W i l l i a m s

A . 1968. Hydrocarbon

biogenesis. Microbiology.— Procee­

dings of a conference held in

London,

1967. Hepple

P. (Ed.) London,

Inst.

Petrol.

 

 

 

 

J. R . 1967. Microbial growth on Cr compounds. Uptake of

K e m p M.

B. ,

Q u a y l e

(14C) formaldehyde and (l4C) formate by methane grown Pseudomonas

methanica and determination of the hexose labelling pattern after brief

incubation with

 

(14C) methanol.— Biochem. J., 102, 94.

des

pol­

K e s t n e r

D . ,

M o o s J.,

S c h n i t z e G. R .

1959. Uber die

Zusammensetzung

nischen rohen Ozokerits.— Erdöl und Kohle, 12, 77.

 

 

 

 

K l e i n D . A . ,

D a v i s J. B. , C a s i d a L . E.

1968. Formation of ketones from long-chain

alkanes by a soil Arthrobacter sp.— Bacteriol. Proc., p. 52.

 

 

 

K l u g M .

J.,

M a r k o v e t z A . J.

1967. Degradation of hydrocarbons by member of

the genus Candida. II. Oxidation of n-alkanes and 1-alkenes by Candida

lipolytica.— J. Bacteriol., 93, 1847.

 

 

 

 

by

mic­

K l u g M .

J.,

M a r k o v e t z A . J.

1971. Utilization of aliphatic hydrocarbons

roorganisms.— Adv. Microbial. Physiol. 5, 1.

 

 

 

 

 

K n o b l o c h

K .

1972. Der respiratorische Elektrontransport in Chromatophor-freien

Enzymsystem aus Rhodopseudomonas

palustfls.— Hoppe-Seyler’s

Z. phy­

siol. Chem., 353, 1538.

 

 

 

1972. Biochemical studies on

sulfate-

K o b a y a s h i

K . ,

T a k a h a s h i E.,

I s h i m o t o M .

reducing bacteria. XI. Purification and properties of sulfite-reductase, de-

sulfoviridin.— J. Biochem., 72, 879.

 

 

 

 

 

 

 

K o l t h o f j

I.

1922. Über die aggressive Kohlensäure und die Wasserstoffion-Kon-

zentration bei der Wasseruntersuchungen.— Z. Untersuch. Nährund

 

Ge­

nussmitt., N 43.

 

 

 

 

 

 

 

 

 

 

 

 

K u e n e n J. G.,

V e l d k a m p II. 1972. Thiomicrospira pelophila gen. n., sp. n., a new

obligately

chemolitothrophic

colourless

sulfur

bacterium.— Antonie

van

Leeuwenhoek. J. Mikrobiol. and Serol., 38, 241.

S . , R a o N. A . 1972.

Mecha­

K u m a r R .

P . ,

R a v i n d r a n a t h

S. D . ,

V a i d y a n a t h a n C.

nism of hydroxylation of aromatic compounds. II. Evidence for the involve­

ment of superoxide anions in

enzymatic hydroxylations.— Biochem.

and

Biophys. Res. Communs, 49, 1422.

 

 

 

1971. Decomposition

of

K u r u t a S.,

E n d o T.,

N a k a m u r a K . ,

Y a g i

T.,

T a m i y a

N .

some

organic

sulfur compounds in

petroleum

by

anaerobic bacteria.—

J. Gen. and Appl. Microbiol., 17, 185.

 

 

 

 

 

 

 

K u s n n o s e

K . ,

I c h i h a r a S., K u s u n o s e

I., N o z a k a J., M a t s u m o t o K . 1967. The pos­

sible

role of flavin in the hydroxylation of hydrocarbon by bacterial

 

en ­

zyme system.— Agric. and Biol. Chem., 31, 990.

 

 

 

 

 

L a r s e n II.

1962.

Halophilism. In «The Bacteria». Gunsalus I. C., Stanier R. Y.

(Eds)

N. Y., London, Acad. Press.

1970. Synthesis of cell constituents by

L a w r e n c e

A .

J.,

K e m p

M . B. ,

Q u a y l e T. R.

191