Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 63 checked references that resolve
resolves10.1007/s003740050027Inoculation of rice plants with the endophytic diazotrophs Herbaspirillum seropedicae and Burkholderia spp.
resolves10.1128/AEM.01047-06Enhancement of Chilling Resistance of Inoculated Grapevine Plantlets with a Plant Growth-Promoting Rhizobacterium,<i>Burkholderia phytofirmans</i>Strain PsJN
resolves10.1007/BF00032247Biological nitrogen fixation associated with sugar cane and rice: Contributions and prospects for improvement
resolves10.1023/A:1004732500983Influence of nitrogen fertilisation on the population of diazotrophic bacteria Herbaspirillum spp. and Acetobacter diazotrophicus in sugar cane (Saccharum spp.)
resolves10.1093/jxb/erl242Members of the ethylene signalling pathway are regulated in sugarcane during the association with nitrogen-fixing endophytic bacteria
resolves10.1128/AEM.71.11.7271-7278.2005Ascending Migration of Endophytic Rhizobia, from Roots to Leaves, inside Rice Plants and Assessment of Benefits to Rice Growth Physiology
resolves10.1128/AEM.71.4.1685-1693.2005Endophytic Colonization of
<i>Vitis vinifera</i>
L. by Plant Growth-Promoting Bacterium
<i>Burkholderia</i>
sp. Strain PsJN
resolves10.1128/AEM.70.11.6407-6413.2004Effect of Microbial Inoculants on the Indigenous Actinobacterial Endophyte Population in the Roots of Wheat as Determined by Terminal Restriction Fragment Length Polymorphism
resolves10.1007/s00284-005-0191-yRelationship Between In Vitro Enhanced Nitrogenase Activity of an Azospirillum brasilense Sp7 Mutant and Its Growth-Promoting Activities In Situ
resolves10.1007/s11104-006-0025-0Yield of micropropagated sugarcane varieties in different soil types following inoculation with diazotrophic bacteria
resolves10.1023/A:1021538226573Root colonization and growth promotion of winter wheat and pea by Cellulomonas spp. at different temperatures
resolves10.1046/j.1462-2920.2000.00078.xPreferential occurrence of diazotrophic endophytes,
<i>Azoarcus</i>
spp., in wild rice species and land races of
<i>Oryza sativa</i>
in comparison with modern races
resolves10.1099/ijs.0.63406-0Pleomorphomonas oryzae gen. nov., sp. nov., a nitrogen-fixing bacterium isolated from paddy soil of Oryza sativa
resolves10.1139/m95-015The enhancement of plant growth by free-living bacteria
resolves10.1007/s11104-005-3223-2Improved Yield of Micropropagated Sugarcane Following Inoculation by Endophytic Burkholderia vietnamiensis
resolves10.1007/s11274-006-9326-yIsolation, molecular characterization and growth-promoting activities of endophytic sugarcane diazotroph Klebsiella sp. GR9
resolves10.1007/s00248-007-9247-9Effects of the Inoculation of Burkholderia vietnamensis and Related Endophytic Diazotrophic Bacteria on Grain Yield of Rice
resolves10.1139/w01-068Effets de l'inoculation avec des souches de<i>Rhizobium leguminosarum</i>biovar<i>trifolii</i>sur la croissance du blé dans deux sols du Maroc
resolves10.1094/MPMI.2002.15.3.233<i>Azoarcus</i> Grass Endophytes Contribute Fixed Nitrogen to the Plant in an Unculturable State
resolves10.1093/jexbot/52.357.747Further observations on the interaction between sugar cane and Gluconacetobacter diazotrophicus under laboratory and greenhouse conditions1
resolves10.1094/MPMI.2002.15.9.894Infection and Colonization of Rice Seedlings by the Plant Growth-Promoting Bacterium <i>Herbaspirillum seropedicae</i> Z67
resolves10.1007/s00284-005-0296-3Rhizobium-Mediated Induction of Phenolics and Plant Growth Promotion in Rice (Oryza sativa L.)
resolves10.1023/A:1013388619231Isolation, partial characterization, and the effect of plant growth-promoting bacteria (PGPB) on micro-propagated sugarcane in vitro
resolves10.1007/s00248-003-0110-3Population Dynamics of Gluconacetobacter diazotrophicus in Sugarcane Cultivars and Its Effect on Plant Growth
resolves10.1023/A:1019963928947Effect of inorganic N on the population, in vitro colonization and morphology of Acetobacter diazotrophicus (syn. Gluconacetobacter diazotrophicus)
resolves10.1016/j.syapm.2005.01.006Natural association of Gluconacetobacter diazotrophicus and diazotrophic Acetobacter peroxydans with wetland rice
resolves10.1023/A:1016249704336The effect of inoculating endophytic N2-fixing bacteria on micropropagated sugarcane plants
resolves10.1111/j.1462-2920.2007.01541.xMutations in lipopolysaccharide biosynthetic genes impair maize rhizosphere and root colonization of
<i>Rhizobium tropici</i>
CIAT899
resolves10.1111/j.1462-2920.2005.00927.xPlasmid‐associated genes in the model micro‐symbiont
<i>Sinorhizobium meliloti</i>
1021 affect the growth and development of young rice seedlings
resolves10.1094/MPMI-20-3-0283<i>Rhizobium</i>-Initiated Rice Growth Inhibition Caused by Nitric Oxide Accumulation
resolves10.1093/jxb/erm181Infection process and the interaction of rice roots with rhizobia
resolves10.1055/s-2002-35441Signalling in Rhizobacteria‐Induced Systemic Resistance in <i>Arabidopsis thaliana</i>
resolves10.1016/S0167-8809(99)00058-4Economic and environmental evaluation of alternative pollution-reducing nitrogen management practices in central Illinois
resolves10.1094/MPMI.2001.14.3.358Comparison of Benefit to Sugarcane Plant Growth and <sup>15</sup>N<sub>2</sub> Incorporation Following Inoculation of Sterile Plants with <i>Acetobacter diazotrophicus</i> Wild-Type and Nif¯ Mutant Strains
resolves10.1111/j.1472-765X.2005.01827.xEffect of plant growth promoting rhizobacteria containing ACC-deaminase on maize (Zea mays L.) growth under axenic conditions and on nodulation in mung bean (Vigna radiata L.)
resolves10.1007/s10725-005-2847-9Improving Sugarcane Growth and Nutrient Uptake by Inoculating Gluconacetobacter diazotrophicus
resolves10.1007/s10725-007-9219-6Nitrogen use efficiency of sugarcane in relation to its BNF potential and population of endophytic diazotrophs at different N levels
resolves10.1023/A:1014986916913Repeated beneficial effects of rice inoculation with a strain of Burkholderia vietnamiensison early and late yield components in low fertility sulphate acid soils of Vietnam
resolves10.1016/S0168-1656(01)00333-9Evaluation of plant growth promoting and colonization ability of endophytic diazotrophs from deep water rice
resolves10.1023/B:BILE.0000018263.94440.abEndophytic colonization ability of two deep-water rice endophytes, Pantoea sp. and Ochrobactrum sp. using green fluorescent protein reporter
resolves10.1128/AEM.72.1.760-768.2006Involvement of Quinolinate Phosphoribosyl Transferase in Promotion of Potato Growth by a
<i>Burkholderia</i>
Strain
resolves10.1023/A:1004269902246Natural endophytic association between Rhizobium leguminosarum bv. trifolii and rice roots and assessment of its potential to promote rice growth
resolves10.1128/AEM.71.12.8183-8190.2005Expression of the
<i>nifH</i>
Gene of a
<i>Herbaspirillum</i>
Endophyte in Wild Rice Species: Daily Rhythm during the Light-Dark Cycle
resolves10.1007/s00248-006-9126-9A nifH-based Oligonucleotide Microarray for Functional Diagnostics of Nitrogen-fixing Microorganisms
The 11 references without a DOI — listed, not checked
no DOI — not checkedDobbelaere S, Croonenborghs A, Thys A, Ptacek D, Vanderleyden J, Dutto P, Labandera-Gonzalez C, Caballero-Mellado J, Aguirre JF, Kapulnik Y, Brener S, Burdman S, Kadouri D, Sarig S, Okon Y (2001) Responses of agronomically important crops to inoculation with Azospirillum. Aust J Plant Physiol 28:871–879
no DOI — not checkedLegaz M-E, de Armas R, Barriguete E, Vicente C (2000) Binding of soluble glycoproteins from sugarcane juice to cells of Acetobacter diazotrophicus. Int Microbiol 3:177–182
no DOI — not checkedMatthews SS, Sparkes DL, Bullard MJ (2001) The response of wheat to inoculation with the diazotroph Azorhizobium caulinodans. Aspects Appl Biol 63:35–42
no DOI — not checkedMirza MS, Rasul G, Mehnaz S, Ladha JK, So RB, Ali S, Malik KA (2000) Beneficial effects of inoculated nitrogen-fixing bacteria on rice. In: Ladha JK, Reddy PM (eds) The quest for nitrogen fixation in rice. International Rice Research Institute, Los Baños, pp 191–204
no DOI — not checkedMuthukumarasamy R, Revathi G, Lakshminarasimhan C (1999) Diazotrophic associations in sugar cane cultivation in South India. Trop Agric 76:171–178
no DOI — not checkedMuthukumarasamy R, Kang UG, Park KD, Jeon W-T, Park CY, Cho YS, Kwon S-W, Song J, Roh D-H, Revathi G (2007) Enumeration, isolation and identification of diazotrophs from Korean wetland rice varieties grown with long-term application of N and compost and their short-term inoculation effect on rice plants. J Appl Microbiol 102:981–991
no DOI — not checkedPrayitno J, Stefaniak J, McIver J, Weinmen JJ, Dazzo FB, Ladha JK, Barraquio W, Yanni YG, Rolfe BG (1999) Interactions of rice seedlings with bacteria isolated from rice roots. Aust J Plant Physiol 26:521–535
no DOI — not checkedRiggs PJ, Chelius MK, Iniguez AL, Kaeppler SM, Triplett EW (2001) Enhanced maize productivity by inoculation with diazotrophic bacteria. Aust J Plant Physiol 28:829–836
no DOI — not checkedSaleh SA, Mekhemar GAA, El-Soud AAA, Ragab AA, Mikhaeel FT (2001) Survival of Azorhizobium and Azospirillum in different carrier materials: inoculation of wheat and Sesbania rostrata. Bulletin of Faculty of Agriculture, Cairo University 52:319–338
no DOI — not checkedSevilla M, Kennedy C (2000) Genetic analysis of nitrogen fixation and plant-growth stimulating properties of Acetobacter diazotrophicus, an endophyte of sugarcane. In: Triplett EW (ed) Prokaryotic nitrogen fixation: a model system for analysis of a biological process. Horizon Scientific, Norwich, UK, pp 737–760
no DOI — not checkedYanni YG, Rizk RY, El-Fattah FKA, Squartini A, Corich V, Giacomini A, de Bruijn F, Rademaker J, Maya-Flores J, Ostrom P, Vega-Hernandez M, Hollingsworth RI, Martinez-Molina E, Mateos P, Velazquez E, Wopereis J, Triplett E, Umali-Garcia M, Anarna JA, Rolfe BG, Ladha JK, Hill J, Mujoo R, Ng PK, Dazzo FB (2001) The beneficial plant growth-promoting association of Rhizobium leguminosarum bv. trifolii with rice roots. Aust J Plant Physiol 28:845–870
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