© Benaki Phytopathological Institute
Sakr
12
ogy
, 88: 396–401.
French-Monar, R.D., Rodrigues, F.A., Korndorfer, G.H.
and Datnoff, L.E. 2010. Silicon suppresses
Phy-
tophthora
blight development on bell pepper.
Journal of Phytopathology
, 158: 554-560.
Fortunato, A.A., Debona, D., Bernardeli, A.M.A. and
Rodrigues, F.A. 2015. Defense-related enzymes
in soybean resistance to target spot.
Journal of
Phytopathology
, 163: 731–742.
Fortunato, A.A., Rodrigues, F.A., Baroni P.J.C., Soares
B.G.C., Rodriguez, D.M.A. and Pereira, O.L. 2012.
Silicon suppresses
Fusarium
wilt development
in banana plants.
Journal of Phytopathology
,
160: 674-679.
Ghareeb, H., Bozso, Z., Ott, P.G., Repenning, C., Stahl,
F. and Wydra, K. 2011. Transcriptome of silicon-
induced resistance against
Ralstonia solan-
acearum
in the silicon non-accumulator tomato
implicates priming effect.
Physiological and Mo-
lecular Plant Pathology
, 75: 83–89.
Ghanmi, D., McNally, D.J., Benhamou, N., Menzies,
J.G. and Belanger, R.R. 2004. Powdery mildew of
Arabidopsis thaliana:
a pathosystem for explor-
ing the role of silicon in plant–microbe interac-
tions.
Physiological and Molecular Plant Patholo-
gy
, 64: 189–199.
Gillman, J., Zlesak, D. and Smith, J. 2003. Applications
of potassium silicate decrease black spot infec-
tion of
Rosa hybrida
‘Meilpelta’.
HortScience
, 38:
144-1147.
Guo, Y., Liu, L., Zhao, J. and Bi, Y. 2007. Use of silicon
oxide and sodiumsilicate for controlling
Trichoth-
ecium roseum
postharvest rot in Chinese canta-
loupe (
Cucumis melo
L.).
International Journal of
Food Science and Technology
, 42: 1012-1018.
Guevel, M.H., Menzies, J.G. and Blanger, R.R. 2007.
Effect of root and foliar applications of soluble
silicon on powdery mildew control and growth
of wheat plants.
European Journal of Plant Pa-
thology
, 119: 429-436.
Hayasaka, T., Fujii, H. and Ishiguro, K. 2008. The role
of silicon in preventing appressorial penetra-
tion by the rice blast fungus.
Phytopathology
,
98: 1038-44.
Heckman, J. 2013. Silicon: A Beneficial Substance.
Better Crops
, 97: 14-16.
Heine, G., Tikum, G. and Horst, W. 2007. The effect
of silicon on the infection by and spread of
Py-
thium aphanidermatum
in single roots of toma-
to and bitter gourd.
Journal of Experimental Bot-
any
, 58: 569-577.
Huang, C.H., Roberts, P.D. and Datnoff, L.E. 2011. Sil-
icon suppresses
Fusarium
crown and root rot of
tomato.
Journal of Phytopathology
, 159: 546–554.
Inanaga, S., Okasaka, A. and Tanaka, S. 1995. Does
silicon exist in association with organic com-
pounds in rice plant?
Japanese Society of Soil Sci-
ence and Plant Nutrition
, 11: 111-117.
Kablan, L., Lagauche, A., Delvaux, B. and Legreve, A.
2012. Silicon reduces black sigatoka develop-
ment in banana.
Plant Disease
, 96: 273-278.
Kanto, T., Miyoshi, A., Ogawa, T., Maekawa, K. and
Aino, M. 2006. Suppressive effect of liquid po-
tassium silicate on powdery mildew of straw-
berry in soil.
Journal of General Plant Pathology
,
72: 137-142.
Kauss, K., Franke, R., Gilbert, S., Dietrich, A. and Krog-
er, N. 2003. Silica deposition by a strongly cation-
ic proline-rich protein from systemically resis-
tant cucumber plants.
Plant Journal
, 33: 87-95.
Kim, S., Kim, W., Park, E. and Choi, D. 2002. Silicon-in-
duced cell wall fortification of rice leaves: a pos-
sible cellular mechanism of enhanced host re-
sistance to blast.
Phytopathology
, 92: 1095-1103.
Kunoh, H. and Ishizaki, H. 1975. Silicon levels near
penetration sites of fungi on wheat, barley, cu-
cumber and morning glory leaves. P
hysiological
and Plant Pathology
, 5: 283-287.
Leusch, H. and Buchenauer, H. 1989. Effect of soil
treatments with silica-rich lime fertilizers and
sodium trisilicate on the incidence of wheat
by
Erysiphe graminis
and
Septoria nodorum
de-
pending on the form of N-fertilizer.
Journal of
Plant Diseases and Protection
, 96: 154-172.
Li, Y.C., Bi, Y., Ge, Y.H., Sun, X.J. and Wang, Y. 2009. An-
tifungal activity of sodium silicate on
Fusarium
sulphureum
and its effect on dry rot of potato tu-
bers.
Journal of Food Science
, 74: M213-M218.
Liang, Y.C., Si, J. and Romheld, V. 2005. Silicon uptake
and transport is an active process in
Cucumis sa-
tivus. New Phytologist
, 167: 797–804.
Liang, Y., Sun, W., Zhu, Y.G. and Christie, P. 2007.
Mechanisms of silicon-mediated alleviation of
abiotic stresses in higher plants: A review.
Envi-
ronmental Pollution
, 147: 422-428.
Liu, J., Zong, Y., Qin, G., Li, B. and Tian, S. 2010. Plas-
ma membrane damage contributes to antifun-
gal activity of silicon against Penicillium digitat-
um.
Current Microbiology
, 61: 274-279.
Lowenstam, H.A. 1981. Minerals formed by organ-
isms.
Science
, 211: 1126–1131.
Ma, Z. and Michailides, T.J., 2005. Advances in un-
derstanding molecular mechanisms of fungi-
cide resistance and molecular detection of re-
sistant genotypes in phytopathogenic fungi.
Crop Protection
, 24: 853-863.
Ma, J.F. and Takahashi, E. 2002. Soil, fertilizer, and
plant silicon research in Japan. Elsevier Science,
Amsterdam, The Netherlands, 294 p.
Ma, J.F. and Yamaji, N. 2006. Silicon uptake and ac-
cumulation in higher plants.
Trends in Plant Sci-
ence
, 11: 392-397.
Maekawa, K., Watanabe, K,. Kanto, T., Aino, M. and
Saigusa, M. 2003. Effect of soluble silicic acid on
suppression of rice leaf blast.
Japanese Journal