Agriculture Reference
In-Depth Information
Pan J, Plant JA, Voulvoulis N, Oates CJ, Ihlenfeld C (2010) Cadmium levels in Europe: implica-
tions for human health. Environ Geochem Health 32:1-12
Pathom-Aree W, Stach JE, Ward AC, Horikoshi K, Bull AT, Goodfellow M (2006) Diversity of
actinomycetes isolated from Challenger Deep sediment (10,898 m) from the Mariana Trench.
Extremophiles 10:181-189
Pattanapipitpaisal P, Kamlandharn R (2012) Screening of chitinolytic actinomycetes for biological
control of Sclerotium rolfsii stem rot disease of chilli. Songklanakarin J Sci Technol 34:387-
393
Pikovskaya RI (1948) Mobilization of phosphorus in soil in connection with vital activity of some
microbial species. Microbiology 17:362-370
Pogell BM, Zhang HL, Feng YM (1991) Expression of veratryl alcohol oxidase activity and cloned
fungal lignin peroxidase in Streptomyces lividans . International symposium on biology of
actinomycetes. Madison, WI
Pragya R, Yasmin A, Anshula J (2012) An insight into agricultural properties of actinomycetes. Int
J Res BioSci 1:7-12
Prapagdee B, Kuekulvong C, Mongkolsuk S (2008) Antifungal potential of extracellular metab-
olite produced by Streptomyces hygroscopicus against phytopathogenic fungi. Int J Biol Sci
4:330-337
Pridham TG, Tresner HD (1974) Streptomycetaceae. In: Buchanan RE, Gibbons NE (eds)
Bergey's manual of determinative bacteriology, 8th edn. Williams & Wilkins, Baltimore, p
747
Qin S, Wang HB, Chen HH, Zhang YQ, Jiang CL, Xu LH, Li WJ (2008) Glycomyces endophyticus
sp. nov., an endophytic actinomycete isolated from the root of Carex baccans Nees. Int J Syst
Evol Microbiol 58:2525-2528
Qin S, Xing K, Jiang JH, Lu IH (2011) Biodiversity, bioactive natural products and biotechno-
logical potential of plant-associated endophytic actinobacteria. Appl Microbiol Biotechnol
89:457-473
Qin S, Zhang YJ, Yuan B, Xu PY, Xing K, Wang J, Jiang JH (2014) Isolation of ACC deaminase-
producing habitat-adapted symbiotic bacteria associated with halophyte Limonium sinense
(Girard) Kuntze and evaluating their plant growth-promoting activity under salt stress. Plant
Soil 374:753-766
Raghothama KG (1999) Phosphate acquisition. Annu Rev Plant Physiol Plant Mol Biol 50:665-
693
Raghothama KG, Karthikeyan AS (2005) Phosphate acquisition. Plant Soil 274:37-49
Rai R, Dash PK, Prasanna BM, Singh A (2007) Endophytic bacterial flora in the stem tissue of a
tropical maize ( Zea mays L.) genotype: isolation, identification and enumeration. World J
Microbiol Biotechnol 23:853-858
Ramachandra M, Crawford DL, Hertel G (1988) Characterization of an extracellular lignin
peroxidase of the lignocellulolytic actinomycete Streptomyces viridosporus . Appl Environ
Microbiol 54:3057-3063
Rengel Z, Marschner P (2005) Nutrient availability and management in the rhizosphere: exploiting
genotypic differences. New Phytol 168:305-312
Reza-Ghorbani-Nasrabadi GR, Alikhani HA, Hamedi J (2012) Identification and determination of
extracellular phytate-degrading activity in actinomycetes. World J Microbiol Biotechnol
28:2601-2608
Richardson AE, Barea JM, McNeill AM, Prigent-Combaret C (2009) Acquisition of phosphorus
and nitrogen in the rhizosphere and plant growth promotion by microorganisms. Plant Soil
321:305-339
Richardson AE, Lynch JP, Ryan PR, Delhaize E, Smith FA, Smith SE, Harvey PR, Ryan MH,
Veneklaas EJ, Lambers H, Oberson A, Culvenor RA, Simpson RJ (2011) Plant and microbial
strategies to improve the phosphorus efficiency of agriculture. Plant Soil 349:121-156
Rothrock CS, Gottlieb D (1984) Role of antibiosis in antagonism of Streptomyces hygroscopicus
var. geldanus to Rhizoctonia solani in soil. Can J Microbiol 30:1440-1447
Search WWH ::




Custom Search