Most popular articles
Everything About Peaches. Clemson University Cooperative Extension Service Everything About Peaches Website: whether you are a professional or backyard peach...
Mission Statement. For the sake of mankind and the world as a whole a further increase of the sustainability...
Newsletter 9: July 2013 - Temperate Fruits in the Tropics and Subtropics. Download your copy of the Working Group Temperate...
USA Walnut varieties. The Walnut Germplasm Collection of the University of California, Davis (USA). A description of the Collection and a History...
China Walnut varieties.

Articles

COLONIZATION OF FLOWERS BY PSEUDOMONAS FLUORESCENS A506 FORMULATED IN A BIOPOLYMER GEL

Article number
704_42
Pages
293 – 300
Language
English
Abstract
Economical, stable formulations of gram-negative bacteria are needed for commercial biocontrol products.
The fire blight biocontrol product, BlightBan A506 (Pseudomonas fluorescens A506; NuFarm Americas, Sugarland, TX) is distributed as frozen, lyophilized cells (1 X 1010 CFU/g) in a foil pouch.
This formulation is relatively expensive, which creates a trade-off between cost and the concentration of cells suspended in the spray tank.
For example, when mixed by label directions, BlightBan A506 is sprayed onto trees at ca. 8 X 105 to 8 X 106 CFU/ml.
In contrast, most research on fire blight biocontrol has been conducted with suspensions of 1 X 108 CFU/ml.
In 2002 and 2003, we tested colonization of flowers by A506 in an alternative formulation.
Cells of A506 were collected from broth culture and formulated in a proprietary biopolymer gel to 6 X 1010 CFU/g.
The biopolymer formulation of A506 was sealed in plastic containers and stored at 4°C. Pear and apple trees were treated at 80% bloom with either ca. 106 or 107 CFU/ml BlightBan A506 or 106 to 108 CFU/ml biopolymer A506. In five trials, inoculum dose, not formulation, significantly affected the incidence of detection and population size of A506 on flowers.
With doses of 106 CFU/ml, only 25 to 75% of sprayed flowers had detectable populations of A506; at 107 and 108 CFU/ml, 55 to 95% of flowers were colonized.
Because effective disease control depends on establishment of large populations of A506, a high-titer formulation may reduce variability in efficacy of BlightBan A506. The refrigerated biopolymer formulation has several apparent cost advantages over a lyophilized formulation including lower cell attrition and energy inputs during formulation, storage and transport.
The biopolymer formulation may represent an economic method to produce a stable, high-titer product of A506 for fire blight control.

Publication
Authors
V.O. Stockwell, K.B. Johnson, V.W. Johnson
Keywords
apple, pear, BlightBan A506, fire blight, biological control, formulation
Full text
Online Articles (93)
T. Dreo | M. Zupančič | T. Demsar | M. Ravnikar
M. Keck | S. Richter | L. Loncaric | W. Ruppitsch | H. Pechhacker | R. Moosbeckhofer | E. Biosca | K. Geider
H. Saygili | Y. Aysan | M. Mirik | F. Sahin
B.S. Borejsza-Wysocki | R.A. Durst | A.S. Aldwinckle
M.M. López | P. Llop | M.T. Gorris | J. Peñalver | V. Donat | M. Cambra | M. Keck
E.G. Biosca | E. Marco-Noales | M. Ordax | M.M. Lopez
ZS. Orosz-Kovács | P. Bukovics | A. Farkas | L.GY. Szabó | A. Horváth | H. Déri | T. Bubán
U. Mazzucchi | S. Mucini | F. Traversa | P. Minardi
A.G. Sabatini | M. Alexandrova | E. Carpana | P. Medrzycki | L. Bortolotti | S. Ghini | S. Girotti | C. Porrini | C. Bazzi | F. Baroni | A. Alessandrini
R. Zasso | R. Moskovitch | I. Pertot | C. Gessler
J. Vogelsanger | B. Schoch | A. Vignutelli | C. Baroffio | M. Bünter | E. Holliger | B. Duffy
M. Ordax | E. Marco-Noales | M.M. Lopez | E.G. Biosca
Y. Günen | N. Özdemir | E. Günen | H. Türküsay | N. Tosun | H. Saygih
T. Buban | E. Beszeda | L. Dorgai | L. Földes | I. Hudak | J. Dobranszki | M. Hevesi
J. Adaskaveg | H. Förster | B.A. Holtz | E. Hoffman | D. Gubler | E. Erickson
C. Bazzi | E. Biondi | R. Berardi | A. Brunelli
V. Jakovljevic | Z. Du | S. Jock | K. Geider
T.N. Temple | V.O. Stockwell | K.B. Johnson | J.E. Loper
M. Hevesi | K. Al-Arabi | M. Göndör | J. Papp | K. Honty | K. Kasa | M. Toth
J.L. Vanneste | G. Fischer | A. Spornberger | H.C. Pechhacker | F. Berger
B. Duffy | J. Vogelsanger | B. Schoch | E. Holliger
A. Seibold | M. Viehrig | W. Jelkmann
A.E. Tawfik | A.F. Abd El-Rahman | E.M. Hussein | N.Y. Abd El-Ghafar
S.V. Beer | A.B. Bocsanczy | N.T. Perna | J. Parkhill
K. Geider | Z. Du | M. Hildebrand | W.S. Kim | V. Jakovljevic | S. Jock
S. Cesbron | M.N. Brisset | M. Tharaud | J.P. Paulin
J.E. Asselin | C.S. Oh | R.M. Nissinen | S.V. Beer
L. Molina | G. Defago | B. Duffy
P. Llop | V. Donat | M.M. Lopez | J. Cabrefiga | L. Ruz | E. Montesinos | J.L. Palomo | M. Rodriguez
Y. Aysan | M. Mirik | F. Sahin | R. Kotan | H. Saygili
A.M. Bocsanczy | R.M. Nissinen | C.S. Oh | S.V. Beer
M. Faize | M.N. Brisset | J.P. Paulin | M. Tharaud | C. Perino | B. Vian | M.A. Barny
E.E. Borejsza-Wysocka | M. Malnoy | H.S. Aldwinckle | X. Meng | J.M. Bonasera | R.M. Nissinen | J.F. Kim | S.V. Beer
N. LoGiudice | H.S. Aldwinckle | T.L. Robinson | G. Fazio
M. Malnoy | M.M. Borejsza-Wysocka | H.S. Aldwinckle | Q.L. Jin | S.Y. HE
P. Sobiczewski | E. Żurawicz | S. Berczyński | M. Lewandowski
L. Dondini | F. Gaiotti | L. Pierantoni | R. Chiodini | S. Tartarini | S. Sansavini | C. Bazzi
M. Bergamashi | L. Rivalta | S. Sirri | E. Biondi | F. Ramilli | C. Bazzi
F. Paprstein | J. Kosina | J. Korba | J. Sillerova
K. Honty | M. Göndör | M. Toth | K Kasa | M. Hevesi