At the dated check, the references listed below either did not resolve in
Crossref or DataCite, or carried a retraction notice. Each one is shown with the
registry record that put it there.
The 48 checked references that resolve
resolves10.1094/PHYTO-98-6-0666Protection Against Pathogen and Salt Stress by Four Plant Growth-Promoting Rhizobacteria Isolated from <i>Pinus</i> sp. on <i>Arabidopsis thaliana</i>
resolves10.1007/BF02931592Differential methods of inoculation of plant growth-promoting rhizobacteria induce synthesis of phenylalanine ammonia-lyase and phenolic compounds differentially in chickpca
resolves10.1007/s004380000340Physiological evidence for differently regulated tryptophan-dependent pathways for indole-3-acetic acid synthesis in Azospirillum brasilense
resolves10.1007/BF00405186Role of peroxidase in the development of water-impermeable seed coats in Sida spinosa L.
resolves10.1104/pp.102.017277Glucosylglycerol, a Compatible Solute, Sustains Cell Division under Salt Stress
resolves10.1023/A:1004737422842Contribution of N2 fixing cyanobacteria to rice production: availability of nitrogen from 15N-labelled cyanobacteria and ammonium sulphate to rice
resolves10.1139/m95-015The enhancement of plant growth by free-living bacteria
resolves10.1021/jf00017a018Stabilization of the Prussian blue color in the determination of polyphenols
resolves10.1094/Phyto-70-1078Effects of Rhizosphere Colonization by Plant Growth-Promoting Rhizobacteria on Potato Plant Development and Yield
resolves10.1104/pp.102.016295Enhancement of Plant-Microbe Interactions Using a Rhizosphere Metabolomics-Driven Approach and Its Application in the Removal of Polychlorinated Biphenyls,
resolves10.1007/s00284-005-5578-2Induction of Plant Defense Enzymes and Phenolics by Treatment With Plant Growth–Promoting Rhizobacteria Serratia marcescens NBRI1213
resolves10.1002/9783527621989.ch6Molecular Mechanisms Underpinning Colonization of a Plant by Plant Growth‐Promoting Rhizobacteria
resolves10.1006/pmpp.1997.0088Increased resistance toFusarium oxysporumf. sp.radicis-lycopersiciin tomato plants treated with the endophytic bacteriumPseudomonas fluorescensstrain 63-28
resolves10.1556/AChrom.21.2009.1.9Development and validation of an HPLC-UV-MS-MS method for identification and quantification of polyphenols in<i>Artemisia pallens</i>L.
resolves10.1094/MPMI-3-004<i>Current Review</i>Phenolic Compounds as Regulators of Gene Expression in Plant-Microbe Interactions
resolves10.1105/tpc.8.8.1225Systemic resistance in Arabidopsis induced by biocontrol bacteria is independent of salicylic acid accumulation and pathogenesis-related gene expression.
resolves10.1002/9783527621989.ch4A Review on the Taxonomy and Possible Screening Traits of Plant Growth Promoting Rhizobacteria
resolves10.1046/j.1439-0434.2002.00755.xPlant Growth‐Promoting Rhizobacteria‐Elicited Alterations in Phenolic Profile of Chickpea (<i>Cicer arietinum</i>) Infected by <i>Sclerotium rolfsii</i>
resolves10.1093/plankt/fbp076Cyanobacterial cytoskeleton immunostaining: the detection of cyanobacterial cell lysis induced by planktopeptin BL1125
resolves10.1023/A:1006386800974Acetyl salicylic acid (Aspirin) and salicylic acid induce multiple stress tolerance in bean and tomato plants
resolves10.1007/s00284-001-0007-7Plant Growth-Promoting Rhizobacteria-Mediated Induction of Phenolics in Pea (Pisum sativum) After Infection with Erysiphe pisi
resolves10.1007/s00284-002-3834-2Effect of Plant Growth-Promoting Rhizobacteria and Culture Filtrate of Sclerotium rolfsii on Phenolic and Salicylic Acid Contents in Chickpea ( Cicer arietinum )
resolves10.1016/j.fct.2009.02.004Polyphenolics from various extracts/fractions of red onion (Allium cepa) peel with potent antioxidant and antimutagenic activities
resolves10.1007/s10482-009-9411-yEffect of mineral phosphates on growth and nitrogen fixation of diazotrophic cyanobacteria Anabaena variabilis and Westiellopsis prolifica
resolves10.1128/AEM.65.3.1061-1070.1999Induction of Defense Responses in Cucumber Plants (
<i>Cucumis sativus</i>
L.) by the Biocontrol Agent
<i>Trichoderma harzianum</i>
resolves10.1128/AEM.69.12.7343-7353.2003Concomitant Induction of Systemic Resistance to
<i>Pseudomonas syringae</i>
pv.
<i>lachrymans</i>
in Cucumber by
<i>Trichoderma asperellum</i>
(T-203) and Accumulation ofPhytoalexins
The 9 references without a DOI — listed, not checked
no DOI — not checkedFadzilla NM, Finch RP, Burdon RH (1997) Salinity, oxidative stress and antioxidant responses in shoot cultures of rice. J Exp Biol 48:325–331
no DOI — not checkedFletcher JS, Hedge RS (1995) Release of phenols by perennial plant roots and their potential importance in bioremediation. Environ Toxicol Chem 31:3009–3016
no DOI — not checkedInderjit, Keating KI (1999) Allelopathy: principles, procedures, processes and promises for biological control. In: Sparks DL (ed) Advances in agronomy. Academic Press, London, pp 142–207
no DOI — not checkedKumar A, Singh DP, Tyagi MB, Kumar A, Prasuna EG, Thakur JK (2000) Production of hepatotoxin by the cyanobacterium Scytonema sp. Strain BT 23. J Microbiol Biotechnol 10:375–380
no DOI — not checkedNaher UA, Othman R, Shamsuddin ZHJ, Saud HM, Ismail MR (2009) Growth enhancement and root colonization of rice seedlings by Rhizobium and Corynebacterium spp. Int J Agric Biol 11:586–590
no DOI — not checkedPieterse CMJ, van Wees SCM, van Pelt JA, Trijssenaar A, Van’t Westende YAM, Bolink EM, van Loon LC (1996a) Systemic resistance in Arabidopsis thaliana induced by biocontrol bacteria. Meded Fac Land bouwkd Toegep Biol Wet Univ Gent 61:209–220
no DOI — not checkedRamos Solano B, Barriuso Maicas J, Pereyra de la Iglesia MT, Domenech J, Gutiérrez Mañero FJ (2008) Systemic disease protection elicited by plant growth promoting rhizobacteria strains: relationship between metabolic responses, systemic disease protection, and biotic elicitors. Biol Control 98:451–457
no DOI — not checkedWink M, Schimmer O (1999) Modes of action of defence secondary metabolites. In: Wink M (ed) Functions of plant secondary metabolites and their exploitation in biotechnology. CRC Press, Boca Raton, Florida, pp 17–112
no DOI — not checkedYang J, Kloepper JW, Ryu C-M (2008) Rhizosphere bacteria help plants tolerate abiotic stress. Cell Press. doi: 10.1016/j.tplants.2008.10.0
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