Physiologia Plantarum

Papers
(The TQCC of Physiologia Plantarum is 10. The table below lists those papers that are above that threshold based on CrossRef citation counts [max. 250 papers]. The publications cover those that have been published in the past four years, i.e., from 2020-04-01 to 2024-04-01.)
ArticleCitations
Osmoregulation and its actions during the drought stress in plants236
Meta‐analysis of drought and heat stress combination impact on crop yield and yield components187
Abiotic stress‐induced anthocyanins in plants: Their role in tolerance to abiotic stresses186
Crosstalk between phytohormones and secondary metabolites in the drought stress tolerance of crop plants: A review163
Plant sugars: Homeostasis and transport under abiotic stress in plants142
Mechanistic insights on melatonin‐mediated drought stress mitigation in plants136
Transcription factors as key molecular target to strengthen the drought stress tolerance in plants132
The cell wall of green microalgae and its role in heavy metal removal100
Recent advances on the roles of flavonoids as plant protective molecules after UV and high light exposure98
Drought: Sensing, signalling, effects and tolerance in higher plants97
Impact of exogenously applied trehalose on leaf biochemistry, achene yield and oil composition of sunflower under drought stress96
Effects of 24‐epibrassinolide on plant growth, antioxidants defense system, and endogenous hormones in two wheat varieties under drought stress90
Inoculation with Bacillus amyloliquefaciens and mycorrhiza confers tolerance to drought stress and improve seed yield and quality of soybean plant86
Role of ATP‐binding cassette transporters in maintaining plant homeostasis under abiotic and biotic stresses83
Sucrose transport in response to drought and salt stress involves ABA‐mediated induction of OsSWEET13 and OsSWEET15 in rice82
Imperative role of sugar signaling and transport during drought stress responses in plants74
Negative impact of long‐term exposure of salinity and drought stress on native Tetraena mandavillei L.74
Phytomelatonin: An overview of the importance and mediating functions of melatonin against environmental stresses73
Minimizing hazard impacts of soil salinity and water stress on wheat plants by soil application of vermicompost and biochar71
Role of sugar and auxin crosstalk in plant growth and development69
High temperatures modify plant responses to abiotic stress conditions67
Membrane dynamics during individual and combined abiotic stresses in plants and tools to study the same66
Reassessing the role of ion homeostasis for improving salinity tolerance in crop plants65
Ion homeostasis for salinity tolerance in plants: a molecular approach62
A manipulative interplay between positive and negative regulators of phytohormones: A way forward for improving drought tolerance in plants62
Wastewater treatment by microalgae61
Exogenous abscisic acid and jasmonic acid restrain polyethylene glycol‐induced drought by improving the growth and antioxidative enzyme activities in pearl millet58
Exogenous melatonin enhances the reactive oxygen species metabolism, antioxidant defense‐related gene expression, and photosynthetic capacity of Phaseolus vulgaris L. to confer salt 56
Regulatory electron transport pathways of photosynthesis in cyanobacteria and microalgae: Recent advances and biotechnological prospects54
The SlWRKY81 transcription factor inhibits stomatal closure by attenuating nitric oxide accumulation in the guard cells of tomato under drought53
Appraising the potential of EPS‐producing rhizobacteria with ACC‐deaminase activity to improve growth and physiology of maize under drought stress52
HKT sodium and potassium transporters in Arabidopsis thaliana and related halophyte species50
The impact of water deficit and heat stress combination on the molecular response, physiology, and seed production of soybean50
Silicon deposition on guard cells increases stomatal sensitivity as mediated by K+ efflux and consequently reduces stomatal conductance49
Root system architecture, physiological and transcriptional traits of soybean (Glycine max L.) in response to water deficit: A review48
Emerging warriors against salinity in plants: Nitric oxide and hydrogen sulphide48
Volatile organic compounds produced by Pseudomonas pseudoalcaligenes alleviated drought stress by modulating defense system in maize (Zea mays L.)48
Improving drought tolerance in rice: Ensuring food security through multi‐dimensional approaches47
Gibberellins and auxin regulate soybean hypocotyl elongation under low light and high‐temperature interaction46
Physiological and molecular mechanisms of metal accumulation in hyperaccumulator plants45
Proline is a quencher of singlet oxygen and superoxide both in in vitro systems and isolated thylakoids45
Auxin response factors in plant adaptation to drought and salinity stress44
Drought‐tolerant Pseudomonas sp. showed differential expression of stress‐responsive genes and induced drought tolerance in Arabidopsis thaliana44
Melatonin alleviates drought impact on growth and essential oil yield of lemon verbena by enhancing antioxidant responses, mineral balance, and abscisic acid content43
Arbuscular mycorrhizal fungi and pistachio husk biochar combination reduces Ni distribution in mungbean plant and improves plant antioxidants and soil enzymes43
Ion transporters and their regulatory signal transduction mechanisms for salinity tolerance in plants43
Insights into the plant responses to drought and decoding the potential of root associated microbiome for inducing drought tolerance42
Trichoderma spp. volatile organic compounds protect grapevine plants by activating defense‐related processes against downy mildew42
Acetic acid improves drought acclimation in soybean: an integrative response of photosynthesis, osmoregulation, mineral uptake and antioxidant defense41
Plant aquaporins alleviate drought tolerance in plants by modulating cellular biochemistry, root‐architecture, and photosynthesis41
Nanoparticles as potential hallmarks of drought stress tolerance in plants40
The interplay of hydraulic failure and cell vitality explains tree capacity to recover from drought40
Crosstalk between melatonin and nitric oxide in plant development and stress responses40
γ‐Aminobutyric acid (GABA) mitigates drought and heat stress in sunflower (Helianthus annuus L.) by regulating its physiological, biochemical and molecular pathways39
Stomatal conductance of tomato leaves is regulated by both abscisic acid and leaf water potential under combined water and salt stress39
Current status of microRNA‐mediated regulation of drought stress responses in cereals39
Mixotrophy in diatoms: Molecular mechanism and industrial potential38
New approaches to improve crop tolerance to biotic and abiotic stresses38
Bioactive peptides from microalgae: Focus on anti‐cancer and immunomodulating activity38
Shaping the root system architecture in plants for adaptation to drought stress38
Linking changes in chlorophyll a fluorescence with drought stress susceptibility in mung bean [Vigna radiata (L.) Wilczek]37
Heavy metal induced regulation of plant biology: Recent insights36
PbWRKY75 promotes anthocyanin synthesis by activating PbDFR, PbUFGT, and PbMYB10b in pear36
Overexpression of Os‐microRNA408 enhances drought tolerance in perennial ryegrass35
Exogenous melatonin mitigates salinity‐induced damage in olive seedlings by modulating ion homeostasis, antioxidant defense, and phytohormone balance35
Interrelations of nutrient and water transporters in plants under abiotic stress35
The molecular mechanism of vernalization in Arabidopsis and cereals: role of Flowering Locus C and its homologs34
Nitrate reductase is required for salicylic acid‐induced water stress tolerance of pepper by upraising the AsA‐GSH pathway and glyoxalase system34
Enhancing potassium content in leaves and stems improves drought tolerance of eucalyptus clones33
Melatonin improves the seed filling rate and endogenous hormonal mechanism in grains of summer maize33
The role of solute transporters in aluminum toxicity and tolerance32
Sugar transporters and their molecular tradeoffs during abiotic stress responses in plants32
Dew absorption by leaf trichomes in Caragana korshinskii: An alternative water acquisition strategy for withstanding drought in arid environments31
The ACC deaminase‐producing plant growth‐promoting bacteria: Influences of bacterial strains and ACC deaminase activities in plant tolerance to abiotic stress31
Metal transporters in organelles and their roles in heavy metal transportation and sequestration mechanisms in plants31
Optimising the foliar uptake of zinc oxide nanoparticles: Do leaf surface properties and particle coating affect absorption?31
Genome‐wide identification and expression analysis of the NF‐Y transcription factor family in Populus30
Plant aquaporins: A frontward to make crop plants drought resistant30
Physiological and metabolomic responses of bermudagrass (Cynodon dactylon) to alkali stress29
An Arabidopsis NAC domain transcription factor, ATAF2, promotes age‐dependent and dark‐induced leaf senescence29
Beneficial effects of abscisic acid and melatonin in overcoming drought stress in cotton (Gossypium hirsutumL.)29
Characterization of the Salt Overly Sensitive pathway genes in sugarcane under salinity stress28
Stacking for future: Pyramiding genes to improve drought and salinity tolerance in rice28
Alpha‐ketoglutarate‐dependent dioxygenase homolog 10B, an N6‐methyladenosine mRNA demethylase, plays a role in salt stress and abscisic acid responses in Arabidopsis thaliana28
Sugars and the speed of life—Metabolic signals that determine plant growth, development and death27
Hydrogen sulfide: An emerging signaling molecule regulating drought stress response in plants27
Emerging from the darkness: interplay between light and plastid signaling during chloroplast biogenesis27
Vacuolar Iron Transporter (Like) proteins: Regulators of cellular iron accumulation in plants27
Alleviating aluminum toxicity in plants: Implications of reactive oxygen species signaling and crosstalk with other signaling pathways27
Modulation of cell cycle progression and chromatin dynamic as tolerance mechanisms to salinity and drought stress in maize27
WRKY9 transcription factor regulates cytochrome P450 genes CYP94B3 and CYP86B1, leading to increased root suberin and salt tolerance in Arabid27
Spotlight on the overlapping routes and partners for anthocyanin transport in plants27
Fe toxicity in plants: Impacts and remediation27
MYC2 influences salicylic acid biosynthesis and defense against bacterial pathogens in Arabidopsis thaliana27
Scrutinizing the impact of water deficit in plants: Transcriptional regulation, signaling, photosynthetic efficacy, and management27
Silicon and nitric oxide‐mediated mechanisms of cadmium toxicity alleviation in wheat seedlings27
Imperative role of trehalose metabolism and trehalose‐6‐phosphate signaling on salt stress responses in plants27
Circular drought‐hardening confers drought tolerance via modulation of the antioxidant defense system, osmoregulation, and gene expression in tobacco26
Melatonin improves heat tolerance in Actinidia deliciosa via carotenoid biosynthesis and heat shock proteins expression26
Silver nanoparticle pollutants activate oxidative stress responses and rosmarinic acid accumulation in sage26
Overexpression of tomato RING E3 ubiquitin ligase gene SlRING1 confers cadmium tolerance by att25
Exogenous salicylic acid alleviates the negative impacts on production components, biomass and gas exchange in tomato plants under water deficit improving redox status and anatomical responses25
The effects of putrescine pre‐treatment on osmotic stress responses in drought‐tolerant and drought‐sensitive wheat seedlings25
Hydrogen sulfide mediates defense response in safflower by regulating secondary metabolism, oxidative defense, and elemental uptake under drought25
Drought tolerance inBrassica napusis accompanied with enhanced antioxidative protection, photosynthetic and hormonal regulation at seedling stage25
The HD‐Zip I transcription factor MdHB7‐like confers tolerance to salinity in transgenic apple (Malus domestica)25
Molecular insights into the role of plant transporters in salt stress response25
Exogenous methyl jasmonate promotes salt stress‐induced growth inhibition and prioritizes defense response of Nitraria tangutorum Bobr.24
The chloride channels: Silently serving the plants24
Unraveling the contribution of OsSOS2 in conferring salinity and drought tolerance in a high‐yielding rice24
Different drought resistance mechanisms between two buckwheat speciesFagopyrum esculentumandFagopyrum tataricum24
Unraveling the roles of brassinosteroids in alleviating drought stress in young Eucalyptus urophylla plants: Implications on redox homeostasis and photosynthetic apparatus24
Temperature‐induced dynamics of plant carbohydrate metabolism24
Peroxidase activity and operation of photo‐protective component of NPQ play key roles in drought tolerance of mung bean [Vigna radiata (L.) Wilcziek]24
Determinants of root system architecture for future‐ready, stress‐resilient crops24
Mechanistic insights of CRISPR/Cas‐mediated genome editing towards enhancing abiotic stress tolerance in plants24
Silicon suppresses zinc uptake through down‐regulating zinc transporter gene in rice23
Heavy metal stress in rice: Uptake, transport, signaling, and tolerance mechanisms23
Gene regulation at transcriptional and post‐transcriptional levels to combat salt stress in plants23
Meta‐analysis and validation of genomic loci governing seedling and reproductive stage salinity tolerance in rice22
Significance of solute specificity, expression, and gating mechanism of tonoplast intrinsic protein during development and stress response in plants22
Photosynthetic hydrogen production: Novel protocols, promising engineering approaches and application of semi‐synthetic hydrogenases22
Genome‐wide analysis of mitogen‐activated protein (MAP) kinase gene family expression in response to biotic and abiotic stresses in sugarcane22
Molecular mechanisms suppressing COP1/SPA E3 ubiquitin ligase activity in blue light22
Brassinosteroids trigger tolerance to iron toxicity in rice22
Spectral effects of blue and red light on growth, anatomy, and physiology of lettuce22
Role of transporters in plant disease resistance22
Sodium sequestration confers salinity tolerance in an ancestral wild rice22
Genome‐wide identification and expression analysis of detoxification efflux carriers (DTX) genes family under abiotic stresses in flax21
EkFLS overexpression promotes flavonoid accumulation and abiotic stress tolerance in plant21
HbWRKY82, a novel IIc WRKY transcription factor from Hevea brasiliensis associated with abiotic stress tolerance and leaf senescence in Arabidopsis21
Long‐term somatic memory of salinity unveiled from physiological, biochemical and epigenetic responses in two contrasting rice genotypes21
Seed inoculation of desert‐plant growth‐promoting rhizobacteria induce biochemical alterations and develop resistance against water stress in wheat21
Hydrogen sulfide‐mediated mitigation and its integrated signaling crosstalk during salinity stress20
Hydrogen peroxide potentiates defense system in presence of sulfur to protect chloroplast damage and photosynthesis of wheat under drought stress20
Secondary metabolites and related genes in Vitis vinifera L. cv. Tempranillo grapes as influenced by ultraviolet radiation and berry development20
Plant growth‐promoting rhizobacteria Shewanella putrefaciens and Cronobacter dublinensis enhance drought tolerance of pearl millet by modulating hormones and stress‐responsive genes20
Introgression of a novel cold and drought regulatory‐protein encoding CORA‐like gene, SbCDR, induced osmotic tolerance in transgenic tobacco20
Isolation and characterization of Salt Overly Sensitive family genes in spinach20
Effects of exogenous methyl jasmonate on the synthesis of endogenous jasmonates and the regulation of photosynthesis in citrus20
Phytochrome‐imposed inhibition of PIF7 activity shapes photoperiodic growth in Arabidopsis together with PIF1, 3, 4 and 520
A rice transcription factor, OsMADS57, positively regulates high salinity tolerance in transgenic Arabidopsis thaliana and Oryza sativa plants20
Doing synthetic biology with photosynthetic microorganisms20
Histone modifications and chromatin remodelling in plants in response to salt stress20
Redox imbalance impedes photosynthetic activity in rice by disrupting cellular membrane integrity and induces programmed cell death under submergence20
Molecular cues of sugar signaling in plants20
Thiamin stimulates growth and secondary metabolites in turnip (Brassica rapa L.) leaf and root under drought stress20
Low temperature and high light dependent dynamic photoprotective strategies in Arabidopsis thaliana20
The evening complex is central to the difference between the circadian clocks of Arabidopsis thaliana shoots and roots19
Stem phototropism toward blue and ultraviolet light19
Supplementation of potassium alleviates water stress‐induced changes in Sorghum bicolor L.19
Exploring the new dimensions of selenium research to understand the underlying mechanism of its uptake, translocation, and accumulation19
Clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR‐associated genome‐editing toolkit to enhance salt stress tolerance in rice and wheat18
An apoplastic fluid extraction method for the characterization of grapevine leaves proteome and metabolome from a single sample18
Drought stress reduces crop carbon gain due to delayed photosynthetic induction under fluctuating light conditions18
Will rising atmospheric CO2 concentration inhibit nitrate assimilation in shoots but enhance it in roots of C3 plants?18
Role of the type‐B authentic response regulator gene family in fragrant rice under alkaline salt stress18
Effect of temperature on the Arabidopsis cryptochrome photocycle18
Hormonal crosstalk in regulating salinity stress tolerance in graminaceous crops18
Foliar melatonin stimulates cotton boll distribution characteristics by modifying leaf sugar metabolism and antioxidant activities during drought conditions18
One‐time abscisic acid priming induces long‐term salinity resistance in Vicia faba: Changes in key transcripts, metabolites, and ionic relations18
Understanding the mechanistic basis of adaptation of perennial Sarcocornia quinqueflora species to soil salinity18
Combined effects of water stress and salinity on growth, physiological, and biochemical traits in two walnut genotypes18
Coordinating light responses between the nucleus and the chloroplast, a role for plant cryptochromes and phytochromes17
Understanding the potential of root microbiome influencing salt‐tolerance in plants and mechanisms involved at the transcriptional and translational level17
Volatile organic compounds as mediators of plant communication and adaptation to climate change17
Negative effects of long‐term exposure to salinity, drought, and combined stresses on halophyte Halogeton glomeratus17
Genome‐wide investigation and comparative analysis of MATE gene family in Rosaceae species and their regulatory role in abiotic stress responses in Chinese pear (Pyrus bretschneideri17
Combined linkage mapping and association analysis reveals genetic control of maize kernel moisture content17
Understanding drought tolerance in plants17
Oryza sativa,C4HC3‐type really interesting new gene (RING),OsRFPv6, is a positive regulator in response to salt stress by regulating Na+absorption16
Sustainable resource production for manufacturing bioactives from micro‐ and macroalgae: Examples from harvesting and cultivation in the Nordic region16
Adventitious root formation in crops—Potato as an example16
A maize calcineurin B‐like interacting protein kinase ZmCIPK42 confers salt stress tolerance16
Involvement of ethylene in melatonin‐modified photosynthetic‐N use efficiency and antioxidant activity to improve photosynthesis of salt grown wheat16
Transcriptome analysis reveals the inhibitory nature of high nitrate during adventitious roots formation in the apple rootstock16
The photoperiodic response of hypocotyl elongation involves regulation of CDF1 and CDF5 activity16
Comprehensive RNA‐seq analysis revealed molecular pathways and genes associated with drought tolerance in wild soybean (Glycine soja Sieb. and Zucc.)15
The soybean plasma membrane‐localized cation/H+ exchanger GmCHX20a plays a negative role under salt stress15
Silicon modulates nitro‐oxidative homeostasis along with the antioxidant metabolism to promote drought stress tolerance in lentil plants15
Leaf N content regulates the speed of photosynthetic induction under fluctuating light among canola genotypes (Brassica napus L.)15
Physiological and metabolic adjustments in the xero‐halophyte Haloxylon salicornicum conferring drought tolerance15
Can smart nutrient applications optimize the plant's hidden half to improve drought resistance?15
Future CO2, warming and water deficit impact white and red Tempranillo grapevine: Photosynthetic acclimation to elevated CO2 and biomass allocation15
Enhanced N‐metabolites, ABA and IAA‐conjugate in anthers instigate heat sensitivity in spring wheat15
Chemical diversity and cellular effects of antifungal cyclic lipopeptides from cyanobacteria15
Plausible association between drought stress tolerance of barley (Hordeum vulgare L.) and programmed cell death via MC1 and TSN1 genes15
Characterization of a 2,3‐oxidosqualene cyclase in the toosendanin biosynthetic pathway of Melia toosendan14
The role of light quality of photoperiodic lighting on photosynthesis, flowering and metabolic profiling in Ranunculus asiaticus L.14
GWAS with a PCA uncovers candidate genes for accumulations of microelements in maize seedlings14
Evaluation and screening of elite wheat germplasm for salinity stress at the seedling phase14
Acclimation of mesophyll conductance and anatomy to light during leaf aging in Arabidopsis thaliana14
Insights into sugar metabolism during bilberry (Vaccinium myrtillus L.) fruit development14
Salicylic acid‐induced hydrogen sulphide improves lead stress tolerance in pepper plants by upraising the ascorbate‐glutathione cycle14
Enhancing drought stress tolerance in Camelina (Camelina sativa L.) through exogenous application of potassium14
Acclimation to elevated CO2 affects the C/N balance by reducing de novo N‐assimilation14
Genetic engineering of potato ( Solanum tuberosum L.) for enhanced α‐tocopherols and abiotic stress tolerance14
Physiological responses of the green microalga Acutodesmus dimorphus to temperature induced oxidative stress conditions14
ACC deaminase‐producing Brevibacterium linensRS16 enhances heat‐stress tolerance of rice (Oryza sativa L.)14
Functional analysis of ZmCOP1 and ZmHY5 reveals conserved light signaling mechanism in maize and Arabidopsis14
Nitrogen use efficiency, rhizosphere bacterial community, and root metabolome reprogramming due to maize seed treatment with microbial biostimulants14
Amelioration of short‐term drought stress during different growth stages in Brassica juncea by rhizobacteria mediated maintenance of ROS homeostasis14
Seasonal environmental changes affect differently the physiological and biochemical responses of two Limonium species in Sabkha biotope14
Nitro‐oxidative stress induces the formation of roots' cortical aerenchyma in rice under osmotic stress14
Rhizosphere pH and cation‐anion balance determine the exudation of nitrification inhibitor 3‐epi‐brachialactone suggesting release via secondary transport14
Transcriptomewide isolation and expression of NF‐Y gene family in male cone development and hormonal treatment of Pinus tabuliformis13
DNA methylation in tomato fruit ripening13
The potential role of Mucoromycotina ‘fine root endophytes’ in plant nitrogen nutrition13
Evidence that exogenous urea acts as a potent cue to alleviate ammonium‐inhibition of root system growth of cotton plant (Gossypium hirsutum)13
Comparative transcriptome analysis of root types in salt tolerant and sensitive rice varieties in response to salinity stress13
The miR159‐MYB33‐ABI5 module regulates seed germination in Arabidopsis13
Elevated temperature and waterlogging decrease cottonseed quality by altering the accumulation and distribution of carbohydrates, oil and protein13
A rice R2R3‐MYB (OsC1) transcriptional regulator improves oxidative stress tolerance by modulating anthocyanin biosynthesis13
Coping with inclement weather conditions due to high temperature and water deficit in rice: An insight from genetic and biochemical perspectives13
SlPHL1, a MYB‐CC transcription factor identified from tomato, positively regulates the phosphate starvation response13
Transcriptome analysis reveals key genes regulating signaling and metabolic pathways during the growth of moso bamboo (Phyllostachys edulis) shoots13
Insight into the cellular and physiological regulatory modulations of Class‐I TCP9 to enhance drought and salinity stress tolerance in cowpea13
Color variation in young and senescent leaves of Formosan sweet gum (Liquidambar formosana) by the gene regulation of anthocyanidin biosynthesis13
Genome‐wide identification of U‐box genes and protein ubiquitination under PEG‐induced drought stress in potato13
Ultraviolet‐B exposure and exogenous hydrogen peroxide application lead to cross‐tolerance toward drought in Nicotiana tabacum L.13
Reduced photosynthesis in Arabidopsis thalianaatpme17.2 and atpae11.1 mutants is associated to altered cell wall composition13
What drives interspecies graft union success? Exploring the role of phylogenetic relatedness and stem anatomy13
Silicon induces metallochaperone‐driven cadmium binding to the cell wall and restores redox status through elevated glutathione in Cd‐stressed sugar beet12
Soybean transporter database: A comprehensive database for identification and exploration of natural variants in soybean transporter genes12
Enhanced reactive oxygen detoxification occurs in salt‐stressed soybean roots expressing GmSALT312
Optimal water and fertilizer applications improve growth of Tamarix chinensis in a coal mine degraded area under arid conditions12
Myo‐inositol transport and metabolism participate in salt tolerance of halophyte ice plant seedlings12
Dual function of VvWRKY18 transcription factor in the β‐aminobutyric acid‐activated priming defense in grapes12
The MYB33, MYB65, and MYB101 transcription factors affect Arabidopsis and potato responses to drought by regulating the ABA signaling pathway12
Alternative oxidase plays a role in minimizing ROS and RNS produced under salinity stress in Arabidopsis thaliana12
Halotolerant native bacteria Enterobacter 64S1 and Pseudomonas 42P4 alleviate saline stress in tomato plants12
Maintenance of photosynthetic capacity in flooded tomato plants with reduced ethylene sensitivity12
Shedding light on the chromatin changes that modulate shade responses12
Outdoor cultivation of a novel isolate of the microalgae Scenedesmus sp. and the evaluation of its potential as a novel protein crop12
Modulation of polyamine metabolism in Arabidopsis thaliana by salicylic acid12
Hypomethylation of the aquatic invasive plant, Ludwigia grandiflora subsp. hexapetala mimics the adaptive transition into the terrestrial morphotype12
Molecular phylogeny of fucoxanthin‐chlorophyll a/c proteins from Chaetoceros gracilis and Lhcq/Lhcf diversity12
Inheritance and quantitative trait loci analyses of the anthocyanins and catechins of Camellia sinensis cultivar ‘Ziyan’ with dark‐purple leaves12
Green leaf volatile (Z)‐3‐hexeny‐1‐yl acetate reduces salt stress in peanut by affecting photosynthesis and cellular redox homeostasis12
Genotypic variation in intrinsic transpiration efficiency correlates with sugarcane yield under rainfed and irrigated field conditions12
Insights into decontamination of soils by phytoremediation: A detailed account on heavy metal toxicity and mitigation strategies12
Characterizing reduced height wheat mutants for traits affecting abiotic stress and photosynthesis during seedling growth12
Draft genome and transcriptome analyses of halophyte rice Oryza coarctata provide resources for salinity and submergence stress response factors12
The extra‐vascular water pathway regulates dynamic leaf hydraulic decline and recovery in Populus nigra12
Comprehensive RNAseq analysis for identification of genes expressed under heat stress in lentil12
Ethylene regulates sulfur acquisition by regulating the expression of sulfate transporter genes in oilseed rape12
Genetic biofortification of wheat with zinc: Opportunities to fine‐tune zinc uptake, transport and grain loading12
Towards understanding the multifaceted role of SUMOylation in plant growth and development12
Genome‐wide association mapping identifies HvNIP2;2/HvLsi6 accounting for efficient boron transport in barley12
OsPSKR15, a phytosulfokine receptor from rice enhances abscisic acid response and drought stress tolerance12
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