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  1. Article

    Open Access

    Genome-wide identification of WRKY transcription factors in Casuarina equisetifolia and the function analysis of CeqWRKY11 in response to NaCl/NaHCO3 stresses

    Casuarina equisetifolia (C. equisetifolia) is a woody species with many excellent features. It has natural resistance against drought, salt and saline-alkali stresses. WRKY transcription factors (TFs) play signif...

    **aohong Zhao, Guoning Qi, **hong Liu, Kui Chen, **nxin Miao in BMC Plant Biology (2024)

  2. Article

    Open Access

    Correction to: Cyclic guanosine monophosphate improves salt tolerance in Solanum lycopersicum

    Gulnaz Bibi, Iqra Shafique, Sartaj Ali, Raza Ahmad in Journal of Plant Research (2024)

  3. Article

    Open Access

    Cyclic guanosine monophosphate improves salt tolerance in Solanum lycopersicum

    The cyclic nucleotide cyclic guanosine monophosphate (cGMP) is a powerful cell signaling molecule involved in biotic and abiotic stress perception and signal transduction. In the model plant Arabidopsis thaliana,...

    Gulnaz Bibi, Iqra Shafique, Sartaj Ali, Raza Ahmad in Journal of Plant Research (2024)

  4. No Access

    Chapter

    Na+ Sensing, Transport, and Plant Salt Tolerance

    Salinity is a major threat to global agricultural production. Salt stress causes accumulation of higher concentrations of Na+ in the cytoplasm, which has deleterious effects on cell metabolism. For genetic manipu...

    Aniqah Akhter, Gulnaz Bibi, Nabgha Rasti in Sustainable Plant Nutrition under Contamin… (2022)

  5. Article

    Open Access

    Yellow nutsedge WRI4-like gene improves drought tolerance in Arabidopsis thaliana by promoting cuticular wax biosynthesis

    Cuticular wax plays important role in protecting plants from drought stress. In Arabidopsis WRI4 improves drought tolerance by regulating the biosynthesis of fatty acids and cuticular wax. Cyperus esculentus (yel...

    Chao Cheng, Shutong Hu, Yun Han, Di **a, Bang-Lian Huang, Wenhua Wu in BMC Plant Biology (2020)

  6. No Access

    Article

    The expression of cyanobacterial glycolate–decarboxylation pathway genes improves biomass accumulation in Arabidopsis thaliana

    Transgenic Arabidopsis thaliana plants expressing cyanobacterial decarboxylation genes GLCD1 (GLYCOLATE DEHYDROGENASE I), HDH (HYDROXYACID DEHYDROGENASE), ODC (OXALATE DECARBOXYLASE) alone, and HDH::ODC simultane...

    Misbah Bilal, Anum Zeb Abbasi, Ghazal Khurshid in Plant Biotechnology Reports (2019)

  7. Article

    Open Access

    Correction: Corrigendum: Constitutive cyclic GMP accumulation in Arabidopsis thaliana compromises systemic acquired resistance induced by an avirulent pathogen by modulating local signals

    Scientific Reports 6: Article number: 36423; published online: 04 November 2016; updated: 03 May 2017. This Article contains an error in Figure 3c, where the y-axis ‘ASC + DHA (μmol/mg prot)’ is incorrectly gi...

    Jamshaid Hussain, Jian Chen, Vittoria Locato, Wilma Sabetta in Scientific Reports (2017)

  8. Article

    Open Access

    Constitutive cyclic GMP accumulation in Arabidopsis thaliana compromises systemic acquired resistance induced by an avirulent pathogen by modulating local signals

    The infection of Arabidopsis thaliana plants with avirulent pathogens causes the accumulation of cGMP with a biphasic profile downstream of nitric oxide signalling. However, plant enzymes that modulate cGMP level...

    Jamshaid Hussain, Jian Chen, Vittoria Locato, Wilma Sabetta in Scientific Reports (2016)

  9. No Access

    Article

    Protein kinase OsSAPK8 functions as an essential activator of S-type anion channel OsSLAC1, which is nitrate-selective in rice

    OsSAPK8 is an essential activator of OsSLAC1 by phosphorylation, and OsSLAC1 is a nitrate-selective anion channel.

    Shu-**g Sun, Guo-Ning Qi, Qi-Fei Gao, Hui-Qin Wang, Fen-Yong Yao in Planta (2016)

  10. No Access

    Article

    Dietary Toxicity of Lead and Hyper-Accumulation in Petroselinum crispum

    The current study investigated the bioaccumulation potential of Petroselinum crispum (Parsley) for lead (Pb) contaminated soils. Different concentrations of lead nitrate (0, 200, 600, 1,000 and 1,200 mg kg−1 soil...

    Jamshaid Hussain, Wajeeha Saeed in Arabian Journal for Science and Engineering (2015)

  11. Article

    Open Access

    Distinct colonization patterns and cDNA-AFLP transcriptome profiles in compatible and incompatible interactions between melon and different races of Fusarium oxysporum f. sp. melonis

    Fusarium oxysporum f. sp. melonis Snyd. & Hans. (FOM) causes Fusarium wilt, the most important infectious disease of melon (Cucumis melo L.). The four known races of this pathogen can be distinguished only by inf...

    Sara Sestili, Annalisa Polverari, Laura Luongo, Alberto Ferrarini in BMC Genomics (2011)