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 146 checked references that resolve
resolves10.1104/pp.87.3.609Induction of 33-kD and 60-kD Peroxidases during Ethylene-Induced Senescence of Cucumber Cotyledons
resolves10.1105/tpc.106.048041ABA Is an Essential Signal for Plant Resistance to Pathogens Affecting JA Biosynthesis and the Activation of Defenses in<i>Arabidopsis</i>
resolves10.1007/s10725-008-9290-7Modulation of growth, photosynthetic capacity and water relations in salt stressed wheat plants by exogenously applied 24-epibrassinolide
resolves10.1111/j.1365-313X.2010.04151.xA gene regulatory network controlled by the NAC transcription factor ANAC092/AtNAC2/ORE1 during salt-promoted senescence
resolves10.1007/BF00201346Differences in gene expression between natural and artificially induced leaf senescence
resolves10.1093/jxb/err450WRKY54 and WRKY70 co-operate as negative regulators of leaf senescence in Arabidopsis thaliana
resolves10.1073/pnas.160241697New roles for
<i>cis</i>
-jasmone as an insect semiochemical and in plant defense
resolves10.1104/pp.61.5.812Microviscosity of Plasmalemmas in Rose Petals as Affected by Age and Environmental Factors
resolves10.1105/tpc.111.083345High-Resolution Temporal Profiling of Transcripts during<i>Arabidopsis</i>Leaf Senescence Reveals a Distinct Chronology of Processes and Regulation
resolves10.1007/s10886-006-9245-2Jasmonic Acid-Induced Changes in Brassica oleracea Affect Oviposition Preference of Two Specialist Herbivores
resolves10.1111/j.1365-313X.2005.02399.xComparative transcriptome analysis reveals significant differences in gene expression and signalling pathways between developmental and dark/starvation‐induced senescence in Arabidopsis
resolves10.1093/jxb/ern079Expression of the β-oxidation gene 3-ketoacyl-CoA thiolase 2 (KAT2) is required for the timely onset of natural and dark-induced leaf senescence in Arabidopsis
resolves10.1104/pp.104.039925Gene-Specific Involvement of <i>β</i>-Oxidation in Wound-Activated Responses in Arabidopsis
resolves10.1093/jxb/err278Role of ARABIDOPSIS A-FIFTEEN in regulating leaf senescence involves response to reactive oxygen species and is dependent on ETHYLENE INSENSITIVE2
resolves10.1002/ps.2000Application of plant growth regulators mitigates chlorotic foliar injury by the black pecan aphid (Hemiptera: Aphididae)
resolves10.1104/pp.75.2.318Effects of Pod Removal on Metabolism and Senescence of Nodulating and Nonnodulating Soybean Isolines
resolves10.1105/tpc.11.7.1253Overexpression of Arabidopsis Hexokinase in Tomato Plants Inhibits Growth, Reduces Photosynthesis, and Induces Rapid Senescence
resolves10.1186/1471-2229-11-67A cytochrome P450 monooxygenase commonly used for negative selection in transgenic plants causes growth anomalies by disrupting brassinosteroid signaling
resolves10.1104/pp.109.152702Abscisic Acid-Induced Resistance against the Brown Spot Pathogen <i>Cochliobolus miyabeanus</i> in Rice Involves MAP Kinase-Mediated Repression of Ethylene Signaling
resolves10.1104/pp.112.193672Brassinosteroids Antagonize Gibberellin- and Salicylate-Mediated Root Immunity in Rice
resolves10.1023/A:1020942102181Jasmonic Acid and Herbivory Differentially Induce Carnivore-Attracting Plant Volatiles in Lima Bean Plants
resolves10.1242/dev.02012<i>AUXIN RESPONSE FACTOR1</i>and<i>AUXIN RESPONSE FACTOR2</i>regulate senescence and floral organ abscission in<i>Arabidopsis thaliana</i>
resolves10.1016/j.scienta.2007.03.012Impact of exogenous salicylic acid on the growth, antioxidant activity and physiology of carrot plants subjected to combined salinity and boron toxicity
resolves10.21273/JASHS.122.1.117Respiratory Changes Associated with Growth-regulator-delayed Leaf Yellowing in Easter Lily
resolves10.1111/j.1365-3040.2011.02442.xConvergence and divergence in gene expression profiles induced by leaf senescence and 27 senescence‐promoting hormonal, pathological and environmental stress treatments
resolves10.1104/pp.126.2.707Networking Senescence-Regulating Pathways by Using Arabidopsis Enhancer Trap Lines
resolves10.1104/pp.010843Evidence Supporting a Role of Jasmonic Acid in Arabidopsis Leaf Senescence
resolves10.1093/jxb/eri103Endogenous hormones and expression of senescence-related genes in different senescent types of maize
resolves10.1016/j.cub.2007.05.036BAK1 and BKK1 Regulate Brassinosteroid-Dependent Growth and Brassinosteroid-Independent Cell-Death Pathways
resolves10.1105/tpc.5.5.553Developmental and age-related processes that influence the longevity and senescence of photosynthetic tissues in arabidopsis.
resolves10.1186/1471-2229-11-51Overexpression of the UGT73C6 alters brassinosteroid glucoside formation in Arabidopsis thaliana
resolves10.1104/pp.94.3.1233Age-Related Changes in Petal Membranes from Attached and Detached Rose Flowers
resolves10.1093/jxb/eri287Ethylene-induced leaf senescence depends on age-related changes and OLD genes in Arabidopsis
resolves10.1105/tpc.106.041103Silencing Threonine Deaminase and <i>JAR4</i> in <i>Nicotiana attenuata</i> Impairs Jasmonic Acid–Isoleucine–Mediated Defenses against <i>Manduca sexta</i>
resolves10.1104/pp.109.143875<i>SAUR39</i>, a Small Auxin-Up RNA Gene, Acts as a Negative Regulator of Auxin Synthesis and Transport in Rice
resolves10.1007/s00425-004-1328-0The DNA-binding protease, CND41, and the degradation of ribulose-1,5-bisphosphate carboxylase/oxygenase in senescent leaves of tobacco
resolves10.1104/pp.86.3.978Photoperiodic and Genetic Control of Carbon Partitioning in Peas and Its Relationship to Apical Senescence
resolves10.1016/0092-8674(93)90119-BCTR1, a negative regulator of the ethylene response pathway in arabidopsis, encodes a member of the Raf family of protein kinases
resolves10.1073/pnas.0505150103Cytokinin-mediated control of leaf longevity by AHK3 through phosphorylation of ARR2 in
<i>Arabidopsis</i>
resolves10.1126/science.1166386Trifurcate Feed-Forward Regulation of Age-Dependent Cell Death Involving
<i>miR164</i>
in
<i>Arabidopsis</i>
resolves10.1007/s13258-011-0044-yThree positive regulators of leaf senescence in Arabidopsis, ORE1, ORE3 and ORE9, play roles in crosstalk among multiple hormone-mediated senescence pathways
resolves10.1093/jxb/err094YUCCA6 over-expression demonstrates auxin function in delaying leaf senescence in Arabidopsis thaliana
resolves10.1093/pcp/pcp183Identification of growth insensitive to ABA3 (gia3), a Recessive Mutation Affecting ABA Signaling for the Control of Early Post-Germination Growth in Arabidopsis thaliana
resolves10.1105/tpc.018929Extracellular Invertase Is an Essential Component of Cytokinin-Mediated Delay of Senescence[W]
resolves10.1093/pcp/pcr026Age-Dependent Action of an ABA-Inducible Receptor Kinase, RPK1, as a Positive Regulator of Senescence in Arabidopsis Leaves
resolves10.1093/jxb/erq010Auxin response factor 2 (ARF2) plays a major role in regulating auxin-mediated leaf longevity
resolves10.1186/1741-7007-10-8The embryonic leaf identity gene FUSCA3 regulates vegetative phase transitions by negatively modulating ethylene-regulated gene expression in Arabidopsis
resolves10.1104/pp.010244Effects of PSAG12-<i>IPT</i> Gene Expression on Development and Senescence in Transgenic Lettuce
resolves10.21273/JASHS.135.3.230Effects of SAG12-ipt and HSP18.2-ipt Expression on Cytokinin Production, Root Growth, and Leaf Senescence in Creeping Bentgrass Exposed to Drought Stress
resolves10.1093/jxb/err166Protein accumulation in leaves and roots associated with improved drought tolerance in creeping bentgrass expressing an ipt gene for cytokinin synthesis
resolves10.1093/jxb/err372Elevated cytokinin content in ipt transgenic creeping bentgrass promotes drought tolerance through regulating metabolite accumulation
resolves10.1104/pp.104.053389Major Signaling Pathways Modulate Arabidopsis Glucosinolate Accumulation and Response to Both Phloem-Feeding and Chewing Insects
resolves10.1007/s11103-005-2142-1Targets of the WRKY53 transcription factor and its role during leaf senescence in Arabidopsis
resolves10.1023/A:1006342412688Identification of a promoter region responsible for the senescence-specific expression of SAG12
resolves10.1104/pp.105.063586Functional Analysis of Arabidopsis Ethylene-Responsive Element Binding Protein Conferring Resistance to Bax and Abiotic Stress-Induced Plant Cell Death
resolves10.1105/tpc.11.6.1073Leaf Senescence Is Delayed in Tobacco Plants Expressing the Maize Homeobox Gene <i>knotted1</i> under the Control of a Senescence-Activated Promoter
resolves10.1046/j.1365-313X.2002.01328.xA knock‐out mutation in allene oxide synthase results in male sterility and defective wound signal transduction in
<i>Arabidopsis</i>
due to a block in jasmonic acid biosynthesis
resolves10.1007/BF00144585Characterization and use in ELISA of a new monoclonal antibody for quantitation of abscisic acid in senescing rice leaves
resolves10.1104/pp.111.187302<i>SPINDLY</i>, a Negative Regulator of Gibberellic Acid Signaling, Is Involved in the Plant Abiotic Stress Response
resolves10.1023/A:1006199932265Diverse range of gene activity during Arabidopsis thaliana leaf senescence includes pathogen-independent induction of defense-related genes
resolves10.1093/pcp/pcq143Enhanced Cytokinin Synthesis in Tobacco Plants Expressing PSARK::IPT Prevents the Degradation of Photosynthetic Protein Complexes During Drought
resolves10.1046/j.1365-313X.2001.01131.xA new member of the <i>Arabidopsis</i> WRKY transcription factor family, <i>At</i>WRKY6, is associated with both senescence‐ and defence‐related processes
resolves10.1105/tpc.107.056341The
<i>Arabidopsis onset of leaf death5</i>
Mutation of Quinolinate Synthase Affects Nicotinamide Adenine Dinucleotide Biosynthesis and Causes Early Ageing
resolves10.1007/s10265-003-0096-4Structure and function of cytokinin oxidase/dehydrogenase genes of maize, rice, Arabidopsis and other species
resolves10.1104/pp.110.153114Differential Impact of Lipoxygenase 2 and Jasmonates on Natural and Stress-Induced Senescence in Arabidopsis
resolves10.3391/ai.2007.2.3.3New records of the Chinese mitten crab, Eriocheir sinensis H. Milne Edwards, 1853, from the Volga River, Russia
resolves10.1104/pp.110.166595The Role of Arabidopsis Rubisco Activase in Jasmonate-Induced Leaf Senescence
resolves10.1093/jxb/erp300Overexpression of the CBF2 transcriptional activator in Arabidopsis delays leaf senescence and extends plant longevity
resolves10.1105/tpc.112.098640Ethylene Signaling Negatively Regulates Freezing Tolerance by Repressing Expression of <i>CBF</i> and Type-A <i>ARR</i> Genes in <i>Arabidopsis</i>
resolves10.1105/tpc.111.084160Pause-and-Stop: The Effects of Osmotic Stress on Cell Proliferation during Early Leaf Development in
<i>Arabidopsis</i>
and a Role for Ethylene Signaling in Cell Cycle Arrest
resolves10.1093/jxb/err148Resource partitioning to male and female flowers of Spinacia oleracea L. in relation to whole-plant monocarpic senescence
resolves10.1016/S0092-8674(00)81094-6Brassinosteroids Rescue the Deficiency of CYP90, a Cytochrome P450, Controlling Cell Elongation and De-etiolation in Arabidopsis
resolves10.1007/s00425-006-0474-yThe WRKY70 transcription factor of Arabidopsis influences both the plant senescence and defense signaling pathways
resolves10.1104/pp.106.079293Transcription Analysis of Arabidopsis Membrane Transporters and Hormone Pathways during Developmental and Induced Leaf Senescence
resolves10.1105/tpc.111.088443The
<i>Arabidopsis</i>
Glucosyltransferase UGT76B1 Conjugates Isoleucic Acid and Modulates Plant Defense and Senescence
resolves10.1093/aob/mcm079Jasmonates: An Update on Biosynthesis, Signal Transduction and Action in Plant Stress Response, Growth and Development
resolves10.1023/A:1005934428906A comparison of the expression patterns of several senescence-associated genes in response to stress and hormone treatment
resolves10.1105/tpc.014928Cytokinin-Deficient Transgenic Arabidopsis Plants Show Multiple Developmental Alterations Indicating Opposite Functions of Cytokinins in the Regulation of Shoot and Root Meristem Activity
resolves10.1093/jxb/39.11.1605Role of Ethylene in Senescence of Petals—Morphological and Taxonomical Relationships
resolves10.1104/pp.111.176933Overexpression of Arabidopsis ACBP3 Enhances NPR1-Dependent Plant Resistance to <i>Pseudomonas syringe</i> pv <i>tomato</i> DC3000
resolves10.1105/tpc.020370COS1: An Arabidopsis <i>coronatine insensitive1</i> Suppressor Essential for Regulation of Jasmonate-Mediated Plant Defense and Senescence
resolves10.1105/tpc.110.075333Overexpression of <i>Arabidopsis</i> Acyl-CoA Binding Protein ACBP3 Promotes Starvation-Induced and Age-Dependent Leaf Senescence
resolves10.1074/jbc.M801392200Activation of MAPK Kinase 9 Induces Ethylene and Camalexin Biosynthesis and Enhances Sensitivity to Salt Stress in Arabidopsis
resolves10.1007/s00425-002-0789-2Abscisic acid and cytokinins in the root exudates and leaves and their relationship to senescence and remobilization of carbon reserves in rice subjected to water stress during grain filling
resolves10.1105/tpc.111.084913The<i>Arabidopsis</i>NAC Transcription Factor VNI2 Integrates Abscisic Acid Signals into Leaf Senescence via the<i>COR</i>/<i>RD</i>Genes
resolves10.1016/S0092-8674(02)00721-3BES1 Accumulates in the Nucleus in Response to Brassinosteroids to Regulate Gene Expression and Promote Stem Elongation
resolves10.1105/tpc.109.068635Autophagy Negatively Regulates Cell Death by Controlling NPR1-Dependent Salicylic Acid Signaling during Senescence and the Innate Immune Response in<i>Arabidopsis</i>
resolves10.1016/j.jplph.2008.11.002Senescence of aerial parts is impeded by exogenous gibberellic acid in herbaceous perennial Paris polyphylla
resolves10.4161/psb.4.5.8268Improving rhizome yield and quality of<i>Paris polyphylla</i>through gibberellic acid-induced retardation of senescence of aerial parts
resolves10.1104/pp.111.190876An Abscisic Acid-AtNAP Transcription Factor-SAG113 Protein Phosphatase 2C Regulatory Chain for Controlling Dehydration in Senescing Arabidopsis Leaves
resolves10.21273/JASHS.135.2.108Effects of ipt Gene Expression on Leaf Senescence Induced by Nitrogen or Phosphorus Deficiency in Creeping Bentgrass
The 8 references without a DOI — listed, not checked
no DOI — not checkedAbeles F (1986) Manipulation of plant growth by ethylene. Manip Ethyl Responses Hortic XXII IHC 201:11–20
no DOI — not checkedÇanakci S, Dursum B (2012) The effect of pre-application of salicylic acid on some physiological and biochemical characteristics of tomato seedling (Lycopersicon esculentum L) growing in cadmium containing media. Afr J Biotechnol 11:3173–3178
no DOI — not checkedChoudhury S, Panda SK (2004) Role of salicylic acid in regulating cadmium induced oxidative stress in Oryza sativa L. roots. Bulg J Plant Physiol 30:95–110
no DOI — not checkedDing W, Zhao Y, Ding WM, Zhao YJ (1995) Effect of epi-BR on activity of peroxidase and soluble protein content of cucumber cotyledons. Acta Phytophysiol Sinica 21:259–264
no DOI — not checkedHe J, Xu R, Zhao Y, He JJ, Xu RJ, Zhao YJ (1996) Enhancement of senescence by epibrassinolide in leaves of mung bean seedling. Acta Phytophysiol Sinica 22:58–62
no DOI — not checkedPandey S, Gupta K, Mukherjee A (2007) Impact of cadmium and lead on Catharanthus roseus-A phytoremediation study. J Environ Biol 28:655–662
no DOI — not checkedRao SSR, Vidya Vardhini B, Sujatha E, Anuradha S (2002) Brassinosteroids: a new class of phytohormones. Curr Sci 82:1239–1245
no DOI — not checkedZentgraf U (2007) Oxidative stress and leaf senescence. In: Gan S (ed) Annual plant reviews: senescence processes in plants. Blackwell Publishing Ltd, Oxford, UK, p 26
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