Environmental Engineering Reference
In-Depth Information
Schubert A, Wyss P, Wiekman A (1992) Occurrence of
trehalose in vesicular-arbuscular mycorrhizal fungi
and in mycorrhizal roots. J Plant Physiol 140:41-45
Schüßler A, Walker C (2010) The Glomeromycota. A spe-
cies list with new families and new genera. http://
www.lrz.de/wschuessler/amphylo/amphylo_species.
html . Accessed 14 Sep 2013
Schweiger PF, Jakobsen I (1998) Dose-response relation-
ships between four pesticides and phosphorus uptake
by hyphae of arbuscular mycorrhizas. Soil Biol
Biochem 30:1415-1422
Schweiger PF, Spliid NH, Jakobsen I (2001) Fungicide
application and phosphorus uptake by hyphae of
arbuscular mycorrhizal fungi in fi eld-grown peas. Soil
Biol Biochem 33:1231-1237
Séguin S, Désaulniers N, Dalpé Y, Lévesque CA (2003)
Development of AMF strains specifi c primers for
detection in fi eld-grown colonized roots. 4th Int Conf
Mycorrhizae. Montreal Quebec Canada, No. 444
Sharif M, Saud S, Burni T, Afzal M, Khan F, Khan MJ,
Wahid F (2012) Effect of arbuscular mycorrhizal fun-
gal inoculation in combination with different organic
fertilizers on maize crop in eroded soils. Pak J Bot
44:1427-1432
Sheng M, Tang M, Chan H, Yang B, Zhang F, Huang Y
(2008) Infl uence of arbuscular mycorrhizae on photo-
synthesis and water status of maize plants under salt
stress. Mycorrhiza 18:287-296
Sheng M, Tang M, Zhang F, Huang Y (2011) Infl uence of
arbuscular mycorrhiza on organic solutes in maize
leaves under salt stress. Mycorrhiza 21:423-430
Sheng M, Lalande R, Hamel C, Ziadi N, Shi Y (2012)
Growth of corn roots and associated arbuscular mycor-
rhizae are affected by long-term tillage and phospho-
rus fertilization. Agron J 104:1672-1678
Shirani H, Hajabbasi MA, Afyuni M, Hemmat A (2002)
Effects of farmyard manure and tillage systems on soil
physical properties and corn yield in central Iran. Soil
Tillage Res 68:101-108
Shivaram S, Rai PV, Hegde SV (1988) Nitrogen fi xation
and nitrogen balance studies in Rhizobium -VA mycor-
rhiza inoculated legume-grass association by 15 N iso-
tope dilution technique under a fi eld condition. Plant
Soil 111:11-16
Siddiqui ZA, Kataoka R (2011) Mycorrhizal inoculant:
progress in inoculant production technology. In:
Ahmad I, Ahmad C, Pichtel J (eds) Microbes and
microbial technology. Agricultural and environmental
applications. Springer, New York, pp 489-506
Siddiqui ZA, Pichtel J (2008) Mycorrhizae: an overview.
In: Siddiqui ZA, Akhtar MS, Futai K (eds)
Mycorrhizae: sustainable agriculture and forestry.
Springer, Dordrecht, pp 1-35
Sieverding E (1987) On-farm production of VAM inocu-
lum. In: Sylvia DM, Hung LL, Graham JH (eds)
Proceedings of the 7th North American conference on
mycorrhiza, Gainesville, pp 1-371
Sieverding E (1991) Vesicular-arbuscular mycorrhiza
management in tropical agrosystems. Technical coop-
eration, Federal Republic of Germany, Eschborn,
p 371
Sikes BA, Cottenie K, Klironomos JN (2009) Plant and
fungal identity determines pathogen protection of plant
roots by arbuscular mycorrhizas. J Ecol 97:1274-1280
Silva FSB, Melo AMY, Maia LC (2007) Production and
infectivity of inoculum of arbuscular mycorrhizal
fungi multiplied in a substrate supplemented with tris-
HCl buffer. Braz J Microbiol 38:752-755
Simard SW, Durall DM (2004) Mycorrhizal networks: a
review of their extent, function, and importance. Can J
Bot 82:1140-1165
Singh S, Srivastava K, Badola JC, Sharma AK (2012)
Aeroponic production of AMF inoculum and its appli-
cation for sustainable agriculture. Wudpecker J Agri
Res 1:186-190
Singh PK, Singh M, Agnihotri VK, Vyas D (2013)
Arbuscular mycorrhizal fungi: biocontrol against
Fusarium wilt of chickpea. Int J Sci Res 3:1-5
Sjoberg J, Persson P, Martensson A, Mattsson L, Adholeya
A, Alstrom S (2004) Occurrence of Glomeromycota
spores and some arbuscular mycorrhiza fungal species
in arable fi elds in Sweden. Acta Agric Scand B Soil
Plant Sci 54:202-212
Smith SE (1980) Mycorrhizas of autotrophic higher
plants. Biol Rev 55:475-510
Smith
SE,
Read
DJ
(2008)
Mycorrhizal
symbiosis.
Academic, San Diego
Smith SE, Smith FA, Jakobsen I (2003) Mycorrhizal fungi
can dominate phosphate supply to plants irrespective
of growth responses. Plant Physiol 133:16-20
Soliman ASH, Shanan NT, Massoud ON, Sweli DM
(2012) Improving salinity tolerance of Acacia
saligna (Labill.) plant by arbuscular mycorrhizal
fungi and Rhizobium inoculation. Afr J Biotechnol
11:1259-1266
Sreeramulu KR, Bagyaraj DJ (1986) Field response of
chilli to VA mycorrhiza on black clayey soil. Plant
Soil 93:299-302
St-Arnaud M, Vujanovic V (2007) Effect of the arbuscular
mycorrhizal symbiosis on plant diseases and pests. In:
Hamel C, Plenchette C (eds) Mycorrhizae in crop pro-
duction. Haworth Press, Binghamton, pp 67-122
St-Arnaud M, Hamel C, Vimard B, Caron M, Fortin JA
(1997) Inhibition of Fusarium oxysporum f. sp. dian-
thi in the non-VAM species Dianthus caryophyllus
by co-culture with Tagetes patula companion plants
colonized by Glomus intraradices . Can J Bot
75:998-1005
Stahl PD, Christensen M (1991) Population variation in
the mycorrhizal fungus Glomus mosseae : breadth of
environmental tolerance. Mycol Res 95:300-307
Subramanian KS, Charest C (1995) Infl uence of arbuscu-
lar mycorrhizae on the metabolism of maize under
drought stress. Mycorrhiza 5:273-278
Subramanian KS, Charest C (1998) Arbuscular mycorrhi-
zae and nitrogen assimilation in maize after drought
and recovery. Physiol Plant 102:285-296
Subramanian KS, Charest C (1999) Acquisition of N by
external hyphae of an arbuscular mycorrhizal fungus
and its impact on physiological responses in maize
under drought-stressed and well-watered conditions.
Mycorrhiza 9:69-75
Search WWH ::




Custom Search