Molecular plant-microbe interactions: new bridges between past and future ; proceedings of the 11th International Congress on Molecular Plant-Microbe Interactions, St.-Petersburg, Russia, July 18 - 26, 2003
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Format: | Tagungsbericht Buch |
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Sprache: | English |
Veröffentlicht: |
St. Paul <Minn.>
Internat. Soc. for Molecular Plant-Microbe Interactions
2004
|
Schriftenreihe: | Biology of plant-microbe interactions
4 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | 632 S. Ill., graph. Darst. |
ISBN: | 0965462536 |
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245 | 1 | 0 | |a Molecular plant-microbe interactions |b new bridges between past and future ; proceedings of the 11th International Congress on Molecular Plant-Microbe Interactions, St.-Petersburg, Russia, July 18 - 26, 2003 |c ed. by Igor Tikhonovich ... |
264 | 1 | |a St. Paul <Minn.> |b Internat. Soc. for Molecular Plant-Microbe Interactions |c 2004 | |
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Datensatz im Suchindex
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adam_text | Table
of
Contents
Introductory papers Pages
1.
Molecular plant-microbe interactions: new bridges between past and
future (editorial remarks).
Tikhonovich
I.A.,
Lugtenberg B.J.J. and Provorov N.A.
17
2.
Plant-microbe interactions: fundamental and applied research in Russia
(Organizing Committee Chairman s presentation).
Romanenko G.A.
19
Signaling and recognition in plant-pathogen systems
3.
Molecular basis of bacterial innate immunity in Arabidopsis thaliana.
Staskawicz B.J., Axtell M., Chisholm S., Dalhbeck D., Day B. and Coppinger P.
24
4.
Pepper Bs3 and tomato Bs4
-
distinct molecular principles for perception
of highly related Xanthomonas AvrBs3 and AvrBs4 proteins.
Lahaye
T.,
Ballvora
Α.,
Gurlebeck D., Jordan
T.,
Meyer
Α.,
Peter K., Schornack S.
and
Bonas
U.
28
5.
Different signals induce pathogenic and saprophytic fungal spore
germination.
Sharon A. and Barhoom S.
31
6.
Genomic organization of resistance factors against scab
{Ventaria
inaequalis), powdery mildew {Podosphaera leucotricha) and fire blight
{Erwinia amylovora) in apple.
Calenge
F.,
Faure
Α.,
Drouet
D.,
Parisi L.,
Brísset M.-N., Paulin J.-R,
van der
Linden
CG., van de Weg W.E.,
Schouten
H.,
Lespinasse
Y.
and
Durei
C.-E.
35
7.
Herbivore-induced resistance: differential effectiveness against a set of
microbial pathogens in Arabidopsis thaliana.
De Vos M.,
Van
Oosten
V.R.,
Van Pelt J.A., Van Loon LC,
Dicke
M.
and Pieterse C.M.J.
40
Cellular mechanisms of plant-microbe interactions
8.
Beneficial symbionts: host control (symposium remarks).
Rolfe B.G. 44
9.
Proteome analysis of root responses to rhizobia signalling molecules.
Mathesius U., Mulders
S., de
Jong
F.,
Keijzers G., Bauer W.D. and
Rolfe B.G. 47
10.
Analysis of protein expression profiles in Sinorhizobium meliloti in
planta
and under nutritional stress using large-scale proteomics.
Djordjevic
Μ. Α.,
Weiller
G.F., Natera
S.,
Chen H.-C, Taylor S., Van
Noorden
G.,
Weinman
J.J.
and
Rolfe
B.G.
51
11.
Three strains of tobacco mosaic virus Kazakh isolate: correlation
between biological properties and coat protein structure.
Koshkina
Т.Е.,
Belenovich
E.V.,
Novikov V.K. and Zavriev S.K.
55
12.
Induction of apoptotic cell response in oats against various
Stressors.
Kusaka K.,
Tada
Y,
Yao
Ν.,
Sakamoto
M.,
Nakayashiki
H.,
Tosa Y,
Park P. and
May ama
S.
59
13.
Azorhizobial functions required for invasion during nodule initiation
on Sesbania
rostrata.
D Haeze W., Gluska J.,
De
Rycke R., Holsters M. and Carlson R.W.
62
14.
Involvement of apoptotic cell death in development of bacterial rot
disease caused by Pseudomonas cichorii.
Kiba
Α.,
Sangawa Y, Hojo H., Kyon-Ye Lee, Ohnishi K, and Hikichi
Y
67
Plant-virus interactions
15.
Viruses, microRNAs and development in plants.
Carrington J.C., Kasschau K.D., Zhixin Xie, Johansen L.K., Lellis
Α.,
Allen E.,
Chapman E., Montgomery T. and
Gustafson
A.
70
16.
Involvement of the nucleolus in umbravirus systemic infection.
Taliansky
M.,
Kim S.H., Ryabov
E.V.,
Robinson
DJ.
and Brown
J.W.
73
17.
Translational activation of potato virus X
RNA
by binding of movement
protein to one end of the virion.
Rodionova N., Karpova
0.,
Kozlovsky S., Zayakina O., Arkhipenko M.,
Kiselyova O., Yaminsky I. and Atabekov J.
77
18.
The key role of the eukaryotic initiation factor 4E (eIF4E) in plant-
potyvirus interactions.
Ruffel
S.,
Dussault M.H., Duprat
Α.,
Palloix
Α.,
Moury
В.,
Revers
F.,
Bendahmane
Α.,
Robaglia
С.
and Caranta
С.
81
19.
RNA
silencing suppressors encoded by hordeiviruses.
Yelina N.E., Savenkov E.I., Solovyev A.G., Schiemann J., Valkonen J.P. and
Morozov S.Yu.
84
20.
The cap-binding protein, eEF4E, controls susceptibility to Lettuce
mosaic potyvims in Arabidopsis thaliana and lettuce.
Nicaise V., German-Retana S., Sanjuan R.,
Revers
F.,
Guiraud
T., Peypelut M.,
Dubrana M.P., Mazier M., Maisonneuve
В.,
Candresse
T.,
Robaglia C, Caranta
С
and
Le
Gall O.
89
Bacterial virulence
21.
Bacterial virulence factors and pathogenesis.
Bender C.L.
94
22.
Mechanisms of bacterial virulence (symposium remarks).
Bender C.L.
100
23.
Molecular biology and control of exopolysaccharide synthesis
by Erwinia amylovora and related plant pathogens.
Geider K.,
Du
Z.,
Hildebrand
M.,
Jock
S.,
Kim W.-S. and
Schollmeyer
M.
101
24.
Pseudomonas syr ingae: functional genomics and plant pathogenicity.
Collmer
Α.,
Alŕano
J.R., Buell C.R., Cartinhour S., Chatterjee A.K., Delaney T.P.,
Lazarowitz S.G., Martin G.B., Schneider D.J. and Xiaoyan Tang.
105
25.
Comparative genomics of Xanthomonas strains.
Ferro J.A.,
de Oliveira
J.C.K,
Furian
L.R. and
da Silva A.C.R. 109
26.
The plant pathogenic phenotype in Streptomyces species: a new paradigm?
Loria
R.,
Kers
J.A., Cameron K.D.,
Wach
M.J., Joshi
M.,
YoshidaM., Bukhalidand
Gibson
D.M. 113
Type III secretion in pathogenic bacteria
27.
Bacterial type III secretion in pathogenesis.
He S.Y., Bandyopadhyay S., Bray E., Hauck P., Jin Q.-L., Kolade O., Nomura K.,
Thilmony R., Underwood W. and Zwiesler-Vollick J.
116
28.
Bacterial type
ΠΙ
effectors and their secretion (symposium remarks).
He S.Y.
121
29.
Type III effector proteins from Xanthomonas campestris pv.
vesicatoria.
Buttner
D.,
Thieme
F.,
Noel
L.,
Weber
E.
and Bonas
U.
123
30.
Plant targets for Xanthomonas campestris type III
cysteine
protease
effectors.
Hotson
Α.,
Chosed R., Orth K. and Mudgett M.B.
127
31.
Evolutionary and functional genomics of host specificity in Pseudomo¬
nas syringae.
Guttman
D.S.
and
Särkar S.F.
132
32.
Pseudomonas syringae type III secretion: chaperones, translocators,
and effectors that suppress programmed cell death.
Alfano J.R., Chancey S.T.,
Espinosa
Α.,
Fu Z.Q.,
Guo
M.,
Hanks
M., Jamir Y.,
Janes M.D. and Petnicki-Ocwieja T.
138
33.
What type III effector proteins is Xanthomonas injecting into a plant
cell during pathogenesis?
Roden
J.
and Mudgett M.B.
142
Virulence
in plant-fungal pathosystems
34.
Molecular signaling in the interactions between toxigenic pathogenic
fungi and plants.
Walton J.
146
35.
Plant-fungal pathogenesis, mechanisms of virulence
(symposium remarks).
Walton J.
152
36.
Tailor-made toxin target controlling the specificity of ACR-toxin.
Ohtani K., Masunaka
Α.,
Yamasaki
Y,
Yamamoto H. and Akimitsu K.
154
37.
Characterisation of avirulence in the apple scab fungus.
Plummer K.M.,
Win J. and Greenwood D.R.
157
38.
Functional characterisation of appressorial specific proteins from
Phytophthora
infestans.
Grenville L.J., Taylor C.R., Williams
Α.,
Avrova
Α.,
Birch P. and van West P.
162
39.
Plant resistance to Phytophthora based on the
sterol
composition.
Khodjaiova L., Andreeva E., Zhan
Xi
Chun and Lutova L.
166
40.
Genetic analysis of disease susceptibility in the Arabidopsis thaliana-
Peronospom
parasítica
interaction.
Van Damme ML,
Andel
Α.,
Huibers
R.,
Weisbeek
P. and Van den Ackerveken G.
170
41.
Evolution of secondary metabolism in plant pathogenic fungi
(Round Table summary).
Walton J.
174
42.
Rust haustoria as sink in plant tissues or
-
how to survive in leaves.
Struck C,
Voegele R.T.,
Hahn
M.
and Mendgen K.
177
Local/systemic resistance
43.
The roles of Pseudomonas type III effectors AvrPto and AvrPtoB as
modulators of plant disease susceptibility and immunity.
Abramovitch R.B., Anderson J.C., Nai-Chun Lin and Martin G.B.
180
44.
Molecular mechanism of systemic acquired resistance.
Xinnian Dong, Zhonglin
Mou,
Dong Wang and Weihua Fan.
184
45.
Jasmonate and
ethylene
signals in plant defence.
Lorenzo
O., Adie
В.,
Sanchez-Serrano J.J. and
Solano R.
188
46.
Signaling during rhizobacteria-induced systemic resistance in Arabidopsis.
Pieterse CM.}.,
Bakker P.A.H.M., Verhagen B.W.M,
and van Loon L.C.
192
47.
Identification
of disease resistance in Arabidopsis independent of
systemic acquired resistance.
Delaney T.P., Argueso C, Kim H.S. and
Ko J.-H.
196
48.
Signal signature of Arabidopsis induced upon pathogen and insect attack.
Van
Oosten
V.R.,
De Vos M.,
Van Pelt J.A., Van Loon L.C., Van Poecke R.M.P.,
Dicke
M.
and Pieterse C.M.J.
199
Mechanisms of plant defence
49.
Molecular basis of plant response to microbial invasion.
de
Wit P.J.,
Brandwagt B.F.,
van den Burg
H.A.,
Gabriels SB.., van
der Hoorn R.A.,
de
Jong
CF.,
van
t Klooster J.W., de
Kock
M.J.,
Kruijt
M.,
Luderer
R., Munnik
T.,
Stulemeijer I.J., Thomma B.P.,
Vervoort
J.J, Westerink N. and Joosten M.H. 203
50. Differential
gene
expression
between
avirulent and virulent
Meloidogyne
incognita isogenic lines.
Neveu
С,
Abad
P. and Castagnone-Sereno P.
208
51.
Identification
of genes involved in the resistance response of tomato
against the leaf mold pathogen Cladosporiumfulvum.
Gabriels S.H.,
Takken
F.L.,
de
Jong
CF.,
Hooiveld
R.,
Wachowski L.K., Witsenboer
H., de
Wit P.J. and Joosten M.H.
212
52.
Signal transduction involved in elicitation of phytoalexin synthesis in
onion (Allium
cepa)
cells.
Dmitriev A.P.
,
Kravchuk Z.N. and Grodzinsky
D.M. 216
53.
Comparative and functional genomics of plant pathogenic fungi.
Turgeon B.G. and members of the former Torcey Mesa Research Institute Fungal Group
220
54.
Genetic and molecular mechanisms of barley resistance to Pyrenophora
teres
Drechs.
Afanasenko O., Manninen O. and Terentieva I.
224
55.
Anion
channels are upstream components of a signalling cascade
leading to defence responses.
Wendehenne
D.,
Lamotte
О.
and Pugin A.
228
56.
Insights into plant defense strategies by studying PGIPs,
polygalacturonases and oligogalacturonides.
De
Lorenzo G., D Ovidio R., Ferrari S., Raiola
Α.,
Di
Matteo
A. and Mattéi
В.
233
Evolution of plant defence
57.
mRNA expression profiling of the Arabidopsis
flgžž-triggered
innate
immune response and the AvrSVCf-P response in tobacco.
Navarro
L.,
Zipfel
С,
Rowland
О.,
Robatzek S.,
Boller
T. and Jones J.D.G.
237
58.
Enhanced durability and utility of genes for resistance by deployment in
cultivar
mixtures.
Newton
A.C.,
Swanston J.S. and Guy D.C.
240
59.
Moss as a model system for studies on plant-pathogen interactions.
Akita M.,
Andersson
R.A., Pirhonen M.,
Gammelgård
E.
and Valkonen J.P.T.
244
60.
Control of polygalacturonase activity by PGIP restricts fungal invasion.
Manfredini
С,
Sicilia
F., Pontiggia
D.,
Căprari
С,
Salvi
G.,
Scala
F., Lorito
M.,
Bellincampi
D.,
Cervone
F. and De
Lorenzo
G.
248
61.
Functional
aspects
of R genes assessed by expression profiling/flagellin
recognition and FLS2.
Bent
Α.,
Wan J., Tan X., Michelmore R.,
Pfund
С,
Tans-Kersten
J.,
Allen C. and
Dunning
F.M.
251
62.
Origin and maintenance of the RPW8 disease resistance locus in
Arabidopsis
Xiao S., Emerson
В.,
Ratanasut K., Patrick E,, Bent E., O Neill C, Bancroft I. and
Turner J.G.
254
63.
Functions and evolution of an Arabidopsis insect resistance QTLs.
Kroymann J. and Mitchell-Olds T.
259
Co-evolution and breeding in fungal pathosystems
64.
Approaches to achieve durable resistance.
Leach J.E., Liu
В.,
Wu J.,
Se
Weon Lee, Hulbert S., Casiana
Vera
Cruz and
Hei
Leung.
263
65.
Importance of studies of co-evolutionary processes in plants and their
pathogens (symposium remarks).
Afanasenko O.
270
66.
Characterization of genetic structure of the fungus population,
Magnaporthe
grísea,
in Guangdong province, China.
Wang Ling, Hu Tiezhu, Wu Weihuai, Yang Xueyan and Pan Qinghua
272
67.
Founder effect in population of
Ventaria inaequalis
caused by the
breakdown of the resistance gene
Vf
in apple.
Guerin
F.,
Devaux M. and
Le
Cam B.
276
68.
Molecular variation and sensitivity to fungicides in Fusarium
graminearum.
Gagkaeva T.Yu. and Yli-Mattila T.
281
Molecular plant-nematode
interactions
69.
Plant-nematode
interactions.
Williamson
V.M., Gleason CA.,
Hwang
CF.,
Lower
S.,
Branch
С.
and Liu Q.
284
70.
Secrets in secretions: analysis of the parasitome of Heterodera
glycines.
Baum T.J.,
Gao
В.,
Maier T.R., Hussey R.S. and Davis E.L. 289
71. An
enhanced expression of HsP™ 1 in feeding sites is required for initia¬
tion of resistance to the beet cyst nematode (Heterodera schachtii Schmidt).
Cai
D.,
Thurau T.,
Weng L.H.,
Wegelin T.,
Tian
Y.,
Grundler F.M.W,
and Jung
С.
293
72.
Plant cell wall modifications in potato cyst nematode parasitism.
Goverse
Α.,
Kudla
TJ.,
Swiecicka M., Karczmarek
Α.,
Overmars H., Qin L.,
Filipecki M.,
Bakker
J.,
Helder
J. and Smant G.
297
73.
Plant genes involved in giant cell formation induced by root-knot
nematodes in Arabidopsis and Medicago
Favery
В.,
Jammes
F.,
Chelysheva
L.,
Lecomte
P.,
Complainville
Α.,
Mergaert
P.,
Crespi
M.
and
Abad
P.
301
Biocontrol of pathogens
74.
Microbial control of tomato foot and root rot.
Lugtenberg B.J.J., Bloemberg G.V.,
Bolwerk
Α.,
van
den Broek
D., Cazorla-Lopez
F.,
Chin-A-Woeng T.F.C., Eijkemans K.,
Kamilova
F.D.,
Kuiper
I., Mulders I.H.M.,
van
Rij
E.T. and
de Weert
S.
305
75.
Molecular aspects of biocontrol traits (symposium remarks).
Lugtenberg B.J.J.
310
76.
Chitinase system and its involvement in the antifungal activity of
Bacillus cereus
28-9.
Huang
C.J.,
Wang
Т.К.,
Chung
S.C.
and Chen C.Y.
312
77.
Biocontrol of Fusarium oxy
sporům
and Verticillium dahliae on tomato
and cucumber by
Serrana marcescens.
Popova
E.V.
and Khatskevich L.K.
315
78.
The rhizosphere microbial community of cotton grown in semi-arid
region.
Egamberdiy
eva
D.
and Davranov K.
319
79.
Interactions between Pseudomonas biocontrol strains and Fusarium
oxysporum f.sp. radicis-lycopersici in the tomato rhizosphere.
Bolwerk
Α.,
Lagopodi A.L.,
Wijfjes A.H.M.,
Lamers G.E.M.,
Lugtenberg B.J.J.
and Bloemberg G.V.
323
10
80.
The chemical composition and functions of Azospirillum extracellular
polysaccharidic complexes.
Konnova
S.A.
and Ignatov V.V.
327
Signaling in beneficial plant-microbe interactions
81.
Arabidopsis thaliana: usefull for functional analysis of ENOD401
Ruttink
T.,
Lorvellec M., Bisseling T. and Franssen H.
332
82.
Symbiosis and defense: two sides of one coin
van
der Holst
P.P.G.,
Grönlund
M.,
Stougaard
J.
and Spaink H.P.
338
83.
Nod factor hydrolysis by non-nodulating pea mutants blocked at
different symbiotic stages.
Ovtsyna
Α.,
Dolgikh E.,
Kilanova
Α.,
Tsyganov
V., Borisov
Α.,
Tikhonovich I.
and Staehelin
С
343
84.
Diffusible factors from
arbuscular
mycorrhizal fungi elicit early nodulin
gene expression in Medicago truncatula.
Košuta
S., Chabaud M., Lougnon G.,
Gough
C, Denarie J.,
Barker D.G. and Becard G.
347
85.
Lectin apyrases and lectin receptor kinases: proteins potentially playing
a role in the legume-rhizobia symbiosis.
Navarro-Gochicoa M.-T., Hogg
В.,
Bono J.-J., Imberty A. and Cullimore J.V.
351
86.
Cell-to-cell communication and enod40 action in nodule
organogénesis.
Complainville
Α.,
Campalans
Α.,
FrugierR,
Brocard
L,
Roberts
I.,
Dax
E.,
Wolf
S.,
Oparka
К.,
Kondorosi A. and
Crespi
M.
355
Developmental impacts of plant-microbe
symbioses
87.
Plant-microbe interactions
-
a
tool for studying
plant
development.
Kondorosi
Α.,
Vinardell J.-M., Nikovics K., Maunoury N.,Tarayre S., D Erfurth L,
Kelemen
Ζ.,
Vaubert
D.,
Kevei
Z., Fedorova E., Mergaert
P.,
Ratet
P. and Kondorosi
E.
359
88.
Plant cell cycle rearrangements under the microbe influence. An
overview on plant cell cycle regulation, specific aspects of plant develop¬
ment and plant-microbe interactions (symposium remarks).
Kondorosi E.
364
89.
Control of cell cycle during nodule development.
Kondorosi E., Tarayre S., Nikovics K., Vinardell J.M., Foucher
F., Roudier F.,
Kelemen
Z.,
Mergaert P. and Kondorosi A.
366
90.
Systemic regulation of nodulation by a leaf-controlled LRR-receptor kinase.
Gresshoff P.M.,
Buzas
D.M.,
Laniya
T.,
Men
Α.,
Jiang O.,
Schenk
P.M., Hayward
Α.,
Kam J.,
Li
D.,
Miyahara
Α.,
Nontachaiyapoom
S.,
Indrasumunar
Α.,
Brcích
T.,
Gualtieri
G.,
Davis P. and Carroll
В.
369
11
91.
Reactive
oxygen species and
ethylene
mediate nodule initiation at
lateral root bases of Sesbania
rostrata.
Holsters M., D Haeze W.,
De
Rycke R., Mathis R.,
Pagnotta
S., Capoen W.,
Den
Herder J.
and Goormachtig
S.
373
92.
A unique pea (Pisum sativum L.) mutant impaired in nodule, leaf and
flower development.
Voroshilova V.A., Tsyganov V.E., Rozov S.M., Priefer U.B.,
Borisov A.Y.
and
Tikhonovich
I.A. 376
93.
Manipulation of plant root cells by sedentary nematodes: molecular
insights.
Gheysen G.,
Grunewald
W.,
Karimi
M., Plovie
E.,
Ţytgat
T., Vanholme
В.
and de
Almeida
Engler
J.
380
Hormonal
regulation of plant-microbe interactions
94.
Changes elicited by Rhizobium inoculation in expression of genes
influenced by phytohormone levels.
Hirsch
A.M., Lum M.R., Giordano W.F., Fujishige N.A. and Woo H.-H.
383
95.
Hormonal regulation in plant-microbe
symbioses
(symposium remarks).
Hirsch
A.M.
389
96.
Salicylic acid signaling in plant defense: the
lipid
connection.
Shah J., Nandi
Α.,
Buseman
СМ.,
Li
M.,
Krothapalli
K., Pegadaraju V,
Buffìngton R.,
Morton J., Omoluabi O., Baughman E.
and Welti
R.
391
97.
Phytohormones in cyanobacteria: occurrence and perspectives.
Liaimer A. and Bergman B.
394
98.
Role of fungal auxin in the ectomycorrhizal symbiosis.
Gay G., Reddy M.S.,
Pandey A.K.,
Melayah D., Raffier C, Charvet-Candela V.,
Hitchin S., Debaud J.C. and Marmeisse R.
398
99.
Mutants of Agrobacterium radiobacter 5D1 impaired in
іпіоіе-З-асейс
acid biosynthesis, nitrogen metabolism, and association with non-legume
plants.
Muronets E.M., Kameneva
S.V.,
Ruslyakova M.V. and Elanskaya
I.V. 402
Biochemistry of beneficial plant-microbe interactions
100.
Genetics and genomics of nutrient deprivation-induced, microaerobic
and symbiotic gene expression in Sinorhizobium meliloti.
de
Bruijn F.J., Davey M.E.,
Berges H.,
Krol
E., Bruand
G, Ruberg S.,
Capela D.,
Lauber
E., Meilhoc E., Ampe
F.,
Fourment J., Francez-Charlot
Α.,
Kahn
D.,
Kuster
Η.,
Liebe
С,
Puhler
Α.,
Weidner
S.,
Batut J.
and Becker A.
405
12
101. Regulation
of rhizobial life in symbiosis
Hennecke
H.
411
102.
Foraging for meaning
-
postgenome approaches to Sinorhizobium
meliloti.
Kahn
M.L., Schroeder B.K., House B.L., Mortimer M.W., Yurgel S.N., Maloney
S.C., Warren K.L., Fisher R.F.,
Barnett M.J.,
Toman
С
and Long S.R.
416
103.
Role of bacterial phosphatidylcholine in symbiotic and pathogenic
interactions.
Geiger
О.,
Martinez-Morales
F., Sohlenkamp
С.
and Lopez-Lara
LM.
423
104. Phosphate
assimilation in
Sinorhizobium
meliloti.
Zechun
Y.,
Zaheer
R. and
Finan
T.M.
427
Diversity of plant-microbe interactions
105.
Azoarcus sp. strain BH72 as a model for nitrogen-fixing grass endophytes.
Reinhold-Hurek
В.,
Miche L., Plessi J.
and Hurek
T.
431
106.
Differential colonization of rice varieties by the endophytic nitrogen-
fixing bacterium Azoarcus sp. BH72: is plant defence involved?
Miche
L.,
Wiese
S. and Reinhold-Hurek
В.
436
107.
Phase variable
effects of Pseudomonas brassicacearum on
Arabidopsis thaliana root architecture.
Achouak W., Conrod S., Robert S. and Heulin T.
440
108.
Arbuscular
mycorrhizal fungi harbor endocellular bacteria.
Genre
Α.,
Bianciotto
V.,
Jargeat P.,
Lumini E.,
Uetake Y., Becard G., and Bonfante P.
445
109.
Tissue specificity of endophyte development in
Epichloe/Neotyphodium
symbioses
with
grasses.
Hesse
U., Christensen M.J. and Schardl C.L.
448
Mycorrhizae
110.
Molecular dialogue
in
arbuscular
mycorrhiza: exploring the symbiotic
cell programme.
Gianinazzi-Pearson V.,
Brechenmacher
L.,
Weidmann
S.,
Sanchez
L.,
Kuster
H.,
Gianinazzi S., and
van Tuinen D.
453
111. ESTs from the extra-radical mycelium of Glomus intraradices.
Maldonado-Mendoza I.E., Dewbre G., Bell C. and Harrison M.J.
460
112.
A mycorrhiza-inducible plant chitinase accelerates the life cycle of
arbuscular
mycorrhizal fungi.
Salzer P.,
Elfstrand
M.,
Wieroken
Α.
and Boller
T.
464
13
113.
Comparative
functional genomics of
arbuscular mycorrhizal
tomato
and Medicago roots using microarray and in silico approaches.
Kapulnik
Y., Kahana
Α.,
Davydov O., Fluhr R., Bendov R., Gadkar V., Koltai H.
and Volpin H.
468
114.
The maize
пореї
gene involved in pre-symbiotic recognition of roots
by
arbuscular
mycorrhizal fungi.
Paszkowski U., Shi L., Luginbuhl P., Boiler T. and
Briggs S.P. 472
Plant symbiotic genes
115.
Novel symbiotic organelles in the Rhizobium-legume symbiosis.
Brewin
N. 476
116.
Integration of plant and microbial genetic systems in symbiosis
Tikhonovich
I.A.,
Borisov
A.Y,
Tsyganov V.E., Ovtsyna
A.O.-
and Provorov N.A.
483
117.
Genetic reorganisation of legume transport and metabolism during
symbiotic nitrogen fixation.
Udvardi M., Bock V., Colebatch
G., Desbrosses
G., Kloska
S.,
Корка
J.,
Krause
K.,
Krusell L., Ott
T., Trevaskis
B. and Wandrey M.
490
118.
Ds
gene tagging in Lotus
japónicas.
Tirichine L., Herrera-Cervera J.A. and Stougaard J.
493
119.
NORK, a single
transmembrane
receptor kinase plays a central role in
the signal transduction pathway of nodulation.
Endre
G.,
Kereszt
Α.,
Kevei
Ζ.,
Kalo
P.,
Mihacea
S.,
Perhald
A.
and Kiss
G.B.
497
120.
Pea (Pisum
sativumL.) regulatory
genes
controlling development of
nitrogen-fixing nodule and
arbuscular
mycorrhiza.
Borisov
A.Y., Voroshilova V.A.,
Zhukov V.A.,
Zhernakov A.I.,
Danilova T.N.,
Shtark O.Y., Naumkina T.S., Tsyganov V.E., Madsen L.H., Sanjuan J.,
Olivares J.,
Priefer
U.
В.,
Ellis
N..
Stougaard J. and Tikhonovich
I.A. 502
121.
A new pea (Pisum sativum L.) cadmium tolerant mutant is a unique tool
for studying molecular plant-microbe interactions under cadmium stress.
Tsyganov V.E., Belimov
A.A.,
Safronova
V.l.,
Naumkina T.S.,
Borisov A.Y.,
Dietz K.-J. and Tikhonovich
I.A. 506
Microbial tools for plant engineering
122.
Agrobacterium-plant interactions: unfinished business and continuing
surprises.
Nester
E.,
Wood
D., Pantoja M.
and Liu P.
510
123.
Welcome to the symposium on Agrobacterium.
Nester
E.
516
14
124.
Mutational
analysis of the channel forming protein, VirE2
of Agrobacterium tumefaciens.
Jacob
S.S., Axthelm F., Hohn
В.
and Duckely
M.
518
125.
Agrobacterium extracellular structures involving in transfer of genetic
information.
Volokhina
I.V.,
Burmatov A.V. and Chumakov M.I.
521
126.
Search for sequences homologous to Agrobacterium T-DNA
in different plant genomes.
Matveeva T.V., Lutova L.A., Wood D. and
Nester E.W. 526
127.
Consequences of insect protection of maize on Fusarium susceptibility.
Hammond
В.,
Segueira J.,
Pinson
L.,
Tatii
F.,
Grogna
R. and Tinland
В.
530
128.
Analysis of physiological processes in plants by means of expression
of introduced bacterial genes.
Piruzian E.S., Goldenkova
I.V.,
Musiychuk K.A., Abdeev R.M. and Sazonova
I.A. 533
Plant-microbe molecular entity in soil
129.
Common mechanisms in beneficial and deleterious host-microbe interactions.
Haas D.,
Reimmann
С.
and
Valverde
С.
537
130.
Symbiotic type III protein secretion systems.
Deakin W.J.,
Bartsev A.V.,
Boukli
N.M.,
Inaba Y., Kobayashi H., Marie C,
Perret
X., Saad M., Skorpil P., Staehelin C, Viprey V. and Broughton W.J.
542
131.
In vivo markers to study cytoskeleton dynamics during plant-
microorganism interactions.
Timmers
A.C.J.,
Voigt
В.,
Heym
С.
and
Menzel
D.
545
132. Isolation
and characterization of a gene involved in control of nodula-
tion competitiveness of Sinorhizobium meliloti strain CXMl-lOS.
Chizhevskaya E.P., Onishchuk
O.P.,
Sharypova L.A. and Simarov B.V.
549
133.
N-acyl homoserine lactones of rhizosphere bacteria trigger systemic
resistance in tomato plants.
Hartmann
Α.,
Gantner
S.,
Schuhegger
R., Steidle
Α.,
Dürr
C,
Schmid
M.,
Dazzo F., Eberl
L.
and Langebartels
С.
554
134.
The role of bacterial ACC deaminase in promoting the plant growth.
Glick B.R.
557
135.
Role of site-specific recombinases and motility in alfalfa rhizosphere
colonization by Pseudomonas
fluorescens Fl
13.
Martínez-Granero
F.M., Capdevila
S.,
Sanchez-Contreras
M.,
Larenas
J.,
Rivilla R.
and Martin
M.
561
15
136.
Character of massetolide-A production by biocontrol strain
Pseudomonas sp. MF-30.
Konnova
E.V.,
Hedman
R.,
Welch
C. J.
and Gerhardson
В.
565
Microbes in sustainable agriculture
137.
Improving the legume-rhizobia symbiosis: can genomics and molecular
genetics help?
Fedorova M.,
Dentón
M.,
Schulze
J.,
Liu
J., Graham M.,
Allan
D.,
Samac
D.,
and Vance
C.
569
138.
Field release experiments using Sinorhizobium meliloti strains tagged
with a luciferase gene.
Puhler
Α.,
Dresing U., Keller M., Schneiker S. and Selbitschka W.
575
139.
Moving out: role of recombination in horizontal gene transfer in
Rhizobium.
Romero D.,
Brom
S.,
Garcia-de
los
Santos
Α.,
Girard
L., Martinez-Salazar J.,
Rodriguez
C, Santoyo G.,
Tun
C.
and Valencia-Morales
E.
579
140.
Conjugative transfer
symbiotic
DNA in rhizobia.
Perez-Mendoza D.,
Domínguez
Α.,
Sepulveda E.,
Pando
V., Munoz S.,
Nogales
J.,
Herrera-Cervera J.A.,
Soto
M.J.,
Olivares
J.,
Girard
L.,
Romero
D.,
Brom
S.
and
Sanjuan J.
582
141.
Molecular ecology strategies to investigate the behaviour of GM and
non-modified biocontrol
inoculants
in the rhizosphere.
Mark G.L., Morrissey J., Baysse C, Sweeney P. and O Gara F.
585
142.
Infection and Release Model is used to analyze the fate of modified
rhizobia in the field.
Provorov N.A. and Vorobyov N.I.
589
143.
Rhizobial
inoculant
technology in North America.
Smith R.S.
594
144.
Production and application efficiency of the biopreparations based on
rhizobacteria (PGPR).
Chebotar V.K. and Kang U.G.
· 597
Appendix
145.
MPMI in University Education (Round Table summary)
.
Bender C. and Leach J.
602
Autors
index
. 605
Subject index
6 ] 4
16
|
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ctrlnum | (OCoLC)163526293 (DE-599)BVBBV019701688 |
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format | Conference Proceeding Book |
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spelling | Molecular plant-microbe interactions new bridges between past and future ; proceedings of the 11th International Congress on Molecular Plant-Microbe Interactions, St.-Petersburg, Russia, July 18 - 26, 2003 ed. by Igor Tikhonovich ... St. Paul <Minn.> Internat. Soc. for Molecular Plant-Microbe Interactions 2004 632 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Biology of plant-microbe interactions 4 Pflanzenparasit (DE-588)4231165-2 gnd rswk-swf Wechselwirkung (DE-588)4064937-4 gnd rswk-swf Wirt (DE-588)4132477-8 gnd rswk-swf Pflanzen (DE-588)4045539-7 gnd rswk-swf Mikroorganismus (DE-588)4039226-0 gnd rswk-swf (DE-588)1071861417 Konferenzschrift 2003 Sankt Petersburg gnd-content Pflanzen (DE-588)4045539-7 s Mikroorganismus (DE-588)4039226-0 s Wechselwirkung (DE-588)4064937-4 s DE-604 Pflanzenparasit (DE-588)4231165-2 s Wirt (DE-588)4132477-8 s b DE-604 Tichonovič, Igor' A. Sonstige oth International Congress on Molecular Plant Microbe Interactions 11 2003 Sankt Petersburg Sonstige (DE-588)6504368-6 oth Biology of plant-microbe interactions 4 (DE-604)BV019701485 4 Digitalisierung TU Muenchen application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013029237&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Molecular plant-microbe interactions new bridges between past and future ; proceedings of the 11th International Congress on Molecular Plant-Microbe Interactions, St.-Petersburg, Russia, July 18 - 26, 2003 Biology of plant-microbe interactions Pflanzenparasit (DE-588)4231165-2 gnd Wechselwirkung (DE-588)4064937-4 gnd Wirt (DE-588)4132477-8 gnd Pflanzen (DE-588)4045539-7 gnd Mikroorganismus (DE-588)4039226-0 gnd |
subject_GND | (DE-588)4231165-2 (DE-588)4064937-4 (DE-588)4132477-8 (DE-588)4045539-7 (DE-588)4039226-0 (DE-588)1071861417 |
title | Molecular plant-microbe interactions new bridges between past and future ; proceedings of the 11th International Congress on Molecular Plant-Microbe Interactions, St.-Petersburg, Russia, July 18 - 26, 2003 |
title_auth | Molecular plant-microbe interactions new bridges between past and future ; proceedings of the 11th International Congress on Molecular Plant-Microbe Interactions, St.-Petersburg, Russia, July 18 - 26, 2003 |
title_exact_search | Molecular plant-microbe interactions new bridges between past and future ; proceedings of the 11th International Congress on Molecular Plant-Microbe Interactions, St.-Petersburg, Russia, July 18 - 26, 2003 |
title_full | Molecular plant-microbe interactions new bridges between past and future ; proceedings of the 11th International Congress on Molecular Plant-Microbe Interactions, St.-Petersburg, Russia, July 18 - 26, 2003 ed. by Igor Tikhonovich ... |
title_fullStr | Molecular plant-microbe interactions new bridges between past and future ; proceedings of the 11th International Congress on Molecular Plant-Microbe Interactions, St.-Petersburg, Russia, July 18 - 26, 2003 ed. by Igor Tikhonovich ... |
title_full_unstemmed | Molecular plant-microbe interactions new bridges between past and future ; proceedings of the 11th International Congress on Molecular Plant-Microbe Interactions, St.-Petersburg, Russia, July 18 - 26, 2003 ed. by Igor Tikhonovich ... |
title_short | Molecular plant-microbe interactions |
title_sort | molecular plant microbe interactions new bridges between past and future proceedings of the 11th international congress on molecular plant microbe interactions st petersburg russia july 18 26 2003 |
title_sub | new bridges between past and future ; proceedings of the 11th International Congress on Molecular Plant-Microbe Interactions, St.-Petersburg, Russia, July 18 - 26, 2003 |
topic | Pflanzenparasit (DE-588)4231165-2 gnd Wechselwirkung (DE-588)4064937-4 gnd Wirt (DE-588)4132477-8 gnd Pflanzen (DE-588)4045539-7 gnd Mikroorganismus (DE-588)4039226-0 gnd |
topic_facet | Pflanzenparasit Wechselwirkung Wirt Pflanzen Mikroorganismus Konferenzschrift 2003 Sankt Petersburg |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013029237&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV019701485 |
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