2023 Peer-reviewed publications citing use of GDR (266)

2023 Peer-reviewed papers citing GDR (266)
 

  1. Lang, X., Yu, C., Shen, M., Gu, L., Qian, Q., Zhou, D., ... & Liu, Q. (2023). PRMD: an integrated database for plant RNA modifications. Nucleic Acids Research, gkad851.
  2. Zhang, Y., Kan, L., Hu, S., Liu, Z., & Kang, C. (2023). Roles and evolution of four LEAFY homologs in floral patterning and leaf development in woodland strawberry. Plant Physiology, 192(1), 240-255.
    Cited By
  3. Sun, Y., Liu, Y., Liang, J., Luo, J., Yang, F., Feng, P., ... & Zhao, T. (2023). Identification of PLATZ genes in Malus and expression characteristics of MdPLATZs in response to drought and ABA stresses. Frontiers in Plant Science, 13, 1109784.
    Cited By
  4. Lv, J., Feng, Y., Jiang, L., Zhang, G., Wu, T., Zhang, X., ... & Han, Z. (2023). Genome-wide identification of WOX family members in nine Rosaceae species and a functional analysis of MdWOX13-1 in drought resistance. Plant Science, 328, 111564.
    Cited By
  5. Jing, X., Xu, L., Huai, X., Zhang, H., Zhao, F., & Qiao, Y. (2023). Genome-Wide Identification and Characterization of Argonaute, Dicer-like and RNA-Dependent RNA Polymerase Gene Families and Their Expression Analyses in Fragaria spp. Genes, 14(1), 121.
    Cited By
  6. Feng, Y., Lv, J., Peng, M., Li, J., Wu, Y., Gao, M., ... & Han, Z. (2023). Genome-wide identification and characterization of the IPT family members in nine Rosaceae species and a functional analysis of MdIPT5b in cold resistance. Horticultural Plant Journal, 9(4), 616-630.
    Cited By
  7. Goeckeritz, C. Z., Rhoades, K. E., Childs, K. L., Iezzoni, A. F., VanBuren, R., & Hollender, C. A. (2023). Genome of tetraploid sour cherry (Prunus cerasus L.)‘Montmorency’identifies three distinct ancestral Prunus genomes. Horticulture Research, uhad097.
    Cited By
  8. Zhang, Z., Fang, M., Wu, R., Zong, H., Huang, H., Tong, Y., ... & Wang, Y. (2023). Large-Scale Biomedical Relation Extraction Across Diverse Relation Types: Model Development and Usability Study on COVID-19. Journal of Medical Internet Research, 25, e48115.
  9. Wamhoff, D., Patzer, L., Schulz, D. F., Debener, T., & Winkelmann, T. (2023). GWAS of adventitious root formation in roses identifies a putative phosphoinositide phosphatase (SAC9) for marker-assisted selection. Plos one, 18(8), e0287452.
  10. Price, R. J., Davik, J., Fernandéz Fernandéz, F., Bates, H. J., Lynn, S., Nellist, C. F., ... & Sargent, D. J. (2023). Chromosome-scale genome sequence assemblies of the ‘Autumn Bliss’ and ‘Malling Jewel’cultivars of the highly heterozygous red raspberry (Rubus idaeus L.) derived from long-read Oxford Nanopore sequence data. Plos one, 18(5), e0285756.
    Cited By
  11. Jiang, L., Lin, Y., Wang, L., Peng, Y., Yang, M., Jiang, Y., ... & Luo, Y. (2023). Genome-wide identification and expression profiling reveal the regulatory role of U-box E3 ubiquitin ligase genes in strawberry fruit ripening and abiotic stresses resistance. Frontiers in Plant Science, 14, 1171056.
  12. Schaller, A., Vanderzande, S., & Peace, C. (2023). Deducing genotypes for loci of interest from SNP array data via haplotype sharing, demonstrated for apple and cherry. Plos one, 18(2), e0272888.
  13. Mansfeld, B. N., Yocca, A., Ou, S., Harkess, A., Burchard, E., Gutierrez, B., ... & Gottschalk, C. (2023). A haplotype resolved chromosome‐scale assembly of North American wild apple Malus fusca and comparative genomics of the fire blight Mfu10 locus. The Plant Journal.
    Cited By
  14. Rawandoozi, Z., Young, E. L., Liang, S., Wu, X., Fu, Q., Hochhaus, T., ... & Riera-Lizarazu, O. (2023). Pedigree-based QTL analysis of flower size traits in two multi-parental diploid rose populations. Frontiers in Plant Science, 14.
  15. Lau, J., Gill, H., Taniguti, C. H., Young, E. L., Klein, P. E., Byrne, D. H., & Riera-Lizarazu, O. (2023). QTL discovery for resistance to black spot and cercospora leaf spot, and defoliation in two interconnected F1 bi-parental tetraploid garden rose populations. Frontiers in Plant Science, 14.
  16. Zhang, Y., Yuan, Y., Qu, M., & Kang, C. (2023). Brassinosteroid catabolic enzyme CYP734A129 regulates the morphologies of leaves and floral organs in woodland strawberry. Plant Science, 335, 111788.
  17. Da, L., Li, J., Zhao, F., Liu, H., Shi, P., Shi, S., ... & Zhang, H. (2023). RoseAP: an analytical platform for gene function of Rosa rugosa. Frontiers in Plant Science, 14.
  18. Jiang, L., Lv, J., Li, K., Zhai, L., Wu, Y., Wu, T., ... & Wang, Y. (2023). MdGRF11-MdARF19-2 module acts as a positive regulator of drought resistance in apple rootstock. Plant Science, 335, 111782.
  19. Moya-León, M. A., Stappung, Y., Mattus-Araya, E., & Herrera, R. (2023). Insights into the Genes Involved in ABA Biosynthesis and Perception during Development and Ripening of the Chilean Strawberry Fruit. International Journal of Molecular Sciences, 24(10), 8531.
    Cited By
  20. Lin, Y., He, H., Wen, Y., Cao, S., Wang, Z., Sun, Z., ... & Tang, H. (2023). Comprehensive Analysis of the Pectate Lyase Gene Family and the Role of FaPL1 in Strawberry Softening. International Journal of Molecular Sciences, 24(17), 13217.
    Cited By
  21. Yamaguchi, T., Nomura, T., & Asano, Y. (2023). Identification and characterization of cytochrome P450 CYP77A59 of loquat (Rhaphiolepis bibas) responsible for biosynthesis of phenylacetonitrile, a floral nitrile compound. Planta, 257(6), 114.
    Cited By
  22. Qiao, Z., Li, H., Wang, X., Ji, X., & You, C. (2023). Genome-wide identification of apple auxin receptor family genes and functional characterization of MdAFB1. Horticultural Plant Journal.
  23. Jiang, C., Zeng, S., Yang, J., & Wang, X. (2023). Genome-Wide Identification and Expression Profiling Analysis of SWEET Family Genes Involved in Fruit Development in Plum (Prunus salicina Lindl). Genes, 14(9), 1679.
    Cited By
  24. Song, J., Chen, F., Lv, B., Guo, C., Yang, J., Huang, L., ... & Xiang, F. (2023). Genome-Wide Identification and Expression Analysis of the TIR-NBS-LRR Gene Family and Its Response to Fungal Disease in Rose (Rosa chinensis). Biology, 12(3), 426.
  25. Kenchanmane Raju, S. K., Ledford, M., & Niederhuth, C. E. (2023). DNA methylation signatures of duplicate gene evolution in angiosperms. Plant Physiology, 192(4), 2883-2901.
    Cited By
  26. Xiang, N., Chang, X., Qin, L., Li, K., Wang, S., & Guo, X. (2023). Insights into tissue-specific anthocyanin accumulation in Japanese plum (Prunus salicina L.) fruits: A comparative study of three cultivars. Food Chemistry: Molecular Sciences, 7, 100178.
  27. Wang, X. L., Peng, L., Wang, J., Liu, J. L., Jia, J. J., & Tang, L. P. (2023). Transcriptome analyses reveal the effects of mixed saline–alkali stress on indoleacetic acid and cytokinins in Malus hupehensis Rehd. leaves. Physiology and Molecular Biology of Plants, 29(1), 11-22.
  28. Waite, J. M., Kelly, E. A., Zhang, H., Hargarten, H. L., Waliullah, S., Altman, N. S., ... & Kalcsits, L. (2023). Transcriptomic approach to uncover dynamic events in the development of mid-season sunburn in apple fruit. G3: Genes, Genomes, Genetics, 13(8), jkad120.
  29. Rawandoozi, Z. J., Young, E. L., Kang, S., Yan, M., Noyan, S., Fu, Q., ... & Riera-Lizarazu, O. (2023). Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance. Frontiers in Plant Science, 13, 1082461.
    Cited By
  30. Xiang, C., Tao, H., Wang, T., Meng, H., Guan, D., Li, H., ... & Zhang, W. (2023). Genome-wide identification and characterization of SRLK gene family reveal their roles in self-incompatibility of Erigeron breviscapus. BMC genomics, 24(1), 1-14.
  31. Zhang, Y., Viejo, M., Yakovlev, I., Tengs, T., Krokene, P., Hytönen, T., ... & Fossdal, C. G. (2023). Major transcriptomic differences are induced by warmer temperature conditions experienced during asexual and sexual reproduction in Fragaria vesca ecotypes. Frontiers in Plant Science, 14.
  32. Zhang, Y., Fan, G., Toivainen, T., Tengs, T., Yakovlev, I., Krokene, P., ... & Grini, P. E. (2023). Warmer temperature during asexual reproduction induce methylome, transcriptomic, and lasting phenotypic changes in Fragaria vesca ecotypes. Horticulture Research, 10(9), uhad156.
  33. Liang, Z., Ye, H., Ma, J., Wei, Z., Wang, Y., Zhang, Y., ... & Chen, K. (2023). m6A-Atlas v2. 0: updated resources for unraveling the N 6-methyladenosine (m6A) epitranscriptome among multiple species. Nucleic Acids Research, gkad691.
    Cited By
  34. Liu, Z., Zhu, X., Liu, W., Qi, K., Xie, Z., Zhang, S., ... & Wang, P. (2023). Characterization of the REVEILLE family in Rosaceae and role of PbLHY in flowering time regulation. BMC genomics, 24(1), 1-16.
    Cited By
  35. Zhou, T., Cao, L., Hu, K., Yu, X., & Qu, S. (2023). miR164–NAC21/22 module regulates the resistance of Malus hupehensis against Alternaria alternata by controlling jasmonic acid signaling. Plant Science, 330, 111635.
    Cited By
  36. Cao, K., Pan, H., Zhao, Y., Bie, H., Wang, J., Zhu, G., ... & Wang, L. (2023). Discovery of a key gene associated with fruit maturity date and analysis of its regulatory pathway in peach. Plant Science, 111735.
    Cited By
  37. Cao, K., Zhang, S., Chen, Y., Ye, J., Wei, Y., Jiang, S., & Shao, X. (2023). ERF transcription factor PpRAP2. 12 activates PpVIN2 expression in peach fruit and reduces tolerance to cold stress. Postharvest Biology and Technology, 199, 112276.
    Cited By
  38. Wang, G., Guan, S. L., Zhu, N., Li, Q., Chong, X., Wang, T., & Xuan, J. (2023). Comprehensive Genomic Analysis of SnRK in Rosaceae and Expression Analysis of RoSnRK2 in Response to Abiotic Stress in Rubus occidentalis. Plants, 12(9), 1784.
  39. Lv, J., Zhang, Y., Tang, W., Chen, J., Ge, Y., & Li, J. (2023). Concentration-dependent impacts of exogenous methyl jasmonate (MeJA) on chlorophyll degradation of apple fruit during ripening. Postharvest Biology and Technology, 203, 112398.
    Cited By
  40. Wang, J., Li, F., Zhang, X., Sun, W., Ali, M., Li, X., & Zhang, X. (2023). Combined transcriptomic and targeted metabolomic analysis reveals the mechanism of flesh browning in cold stored ‘Fuji’apple fruit. Scientia Horticulturae, 320, 112195.
    Cited By
  41. Jing, Y., Pei, T., Li, C., Wang, D., Wang, Q., Chen, Y., ... & Ma, F. (2023). Overexpression of the FERONIA receptor kinase MdMRLK2 enhances apple cold tolerance. The Plant Journal.
    Cited By
  42. Zhang, C., Liu, Y., Wang, B., Li, H., Zhang, J., Ma, Y., ... & Zhang, Z. (2023). CRISPR/Cas9 targeted knockout FvPHO2 can increase phosphorus content and improve fruit quality of woodland strawberry. Scientia Horticulturae, 317, 112078.
    Cited By
  43. Wang, Q., Cao, K., Li, Y., Wu, J., Fan, J., Ding, T., ... & Wang, L. (2023). Identification of co-expressed networks and key genes associated with organic acid in peach fruit. Scientia Horticulturae, 307, 111496.
    Cited By
  44. Li, X., Su, Q., Feng, Y., Gao, X., Wang, B., Tahir, M. M., ... & Zhao, Z. (2023). Identification and analysis of the xyloglucan endotransferase/hydrolase (XTH) family genes in apple. Scientia Horticulturae, 315, 111990.
    Cited By
  45. ZHANG, L. H., ZHU, L. C., Yu, X. U., Long, L. V., LI, X. G., LI, W. H., ... & HAN, D. G. (2023). Genome-wide identification and function analysis of the sucrose phosphate synthase MdSPS gene family in apple. Journal of Integrative Agriculture.
  46. Liu, H. F., Zhang, T. T., Liu, Y. Q., Kang, H., Rui, L., Wang, D. R., ... & Wang, X. F. (2023). Genome-wide analysis of the 6B-INTERACTING PROTEIN1 gene family with functional characterization of MdSIP1-2 in Malus domestica. Plant Physiology and Biochemistry.
    Cited By
  47. Zhou, Y., Xiong, J., Shu, Z., Dong, C., Gu, T., Sun, P., ... & Cheng, Z. M. (2023). The telomere-to-telomere genome of Fragaria vesca reveals the genomic evolution of Fragaria and the origin of cultivated octoploid strawberry. Horticulture Research, 10(4), uhad027.
    Cited By
  48. Kou, X., He, Q., Cao, P., Wang, P., Zhang, S., & Wu, J. (2023). Comprehensive genomic analysis of the Rho GTPases regulators in seven Rosaceae species revealed that PbrGDI1 controls pollen tube growth in Pyrus via mediating cellulose deposition. International Journal of Biological Macromolecules, 235, 123860.
    Cited By
  49. Wafula, E. K., Zhang, H., Von Kuster, G., Leebens-Mack, J. H., Honaas, L. A., & dePamphilis, C. W. (2023). PlantTribes2: Tools for comparative gene family analysis in plant genomics. Frontiers in Plant Science, 13, 1011199.
    Cited By
  50. Guo, J., Zhao, Y., Chu, Y., Li, Y., Song, Y., Pan, Q., ... & Zhu, Y. (2023). Screening Candidate Genes at the Co Locus Conferring to the Columnar Growth Habit in Apple (Malus× Domestica Borkh.). Genes, 14(5), 964.
  51. Sun, Z., Li, J., Guo, D., Wang, T., Tian, Y., Ma, C., ... & Zheng, X. (2023). Melatonin enhances KCl salinity tolerance by maintaining K+ homeostasis in Malus hupehensis. Plant Biotechnology Journal.
  52. Sun, C., Yang, X., Gu, Q., Jiang, G., Shen, L., Zhou, J., ... & Zhang, Y. (2023). Comprehensive analysis of nanoplastic effects on growth phenotype, nanoplastic accumulation, oxidative stress response, gene expression, and metabolite accumulation in multiple strawberry cultivars. Science of The Total Environment, 165432.
  53. Zhang, L., Li, S., Fang, X., An, H., & Zhang, X. (2023). Genome-wide analysis of LysM gene family members and their expression in response to Colletotrichum fructicola infection in Octoploid strawberry (Fragaria× ananassa). Frontiers in Plant Science, 13, 1105591.
    Cited By
  54. Gogoi, A., Lysøe, E., Eikemo, H., Stensvand, A., Davik, J., & Brurberg, M. B. (2023). Comparative Transcriptome Analysis Reveals Novel Candidate Resistance Genes Involved in Defence against Phytophthora cactorum in Strawberry. International Journal of Molecular Sciences, 24(13), 10851.
    Cited By
  55. Zhang, T. T., Liu, Y. Q., Li, X. W., Liu, H. F., Wang, Y. X., Zhang, F. J., ... & Lu, X. Y. (2023). The drought-responsive factor MdDREB2A affects root development by directly regulating the transcription of MdARF6. Environmental and Experimental Botany, 105437.
  56. Hu, J., Huang, B., Yin, H., Qi, K., Jia, Y., Xie, Z., ... & Qiao, X. (2023). PearMODB: a multiomics database for pear (Pyrus) genomics, genetics and breeding study. Database, 2023, baad050.
    Cited By
  57. Yamaguchi, T., Nomura, T., & Asano, Y. (2023). Identification and characterization of cytochrome P450 CYP77A59 of loquat (Rhaphiolepis bibas) responsible for biosynthesis of phenylacetonitrile, a floral nitrile compound. Planta, 257(6), 114
    Cited By
  58. Shen, S., Hu, X., Cheng, J., Lou, L., Huan, C., & Zheng, X. (2023). PsbZIP1 and PsbZIP10 induce anthocyanin synthesis in plums (Prunus salicina cv. Taoxingli) via PsUFGT by methyl salicylate treatment during postharvest. Postharvest Biology and Technology, 203, 112396.
    Wang, Y., Zhu, Y., Jiang, H., Mao, Z., Zhang, J., Fang, H., ... & Wang, N. (2023). The regulatory module MdBZR1–MdCOL6 mediates brassinosteroid‐and light‐regulated anthocyanin synthesis in apple. New Phytologist.
    Cited By
  59. Li, W., Li, P., Chen, H., Zhong, J., Liang, X., Wei, Y., ... & Han, D. (2023). Overexpression of a Fragaria vesca 1R-MYB Transcription Factor Gene (FvMYB114) Increases Salt and Cold Tolerance in Arabidopsis thaliana. International Journal of Molecular Sciences, 24(6), 5261.
    Cited By
  60. Li, W., Li, P., Chen, H., Zhong, J., Liang, X., Wei, Y., ... & Han, D. (2023). Overexpression of a Fragaria vesca 1R-MYB Transcription Factor Gene (FvMYB114) Increases Salt and Cold Tolerance in Arabidopsis thaliana. International Journal of Molecular Sciences, 24(6), 5261.
    Cited By
  61. Li, Z., Song, X., Li, H., Zhang, Z., & Zhang, J. (2023). Transcriptome and hormones analysis provide insights into elongated fruit somaclonal mutant in ‘Akihime’strawberry. Scientia Horticulturae, 309, 111608.
    Cited By
  62. Cai, Y., Tang, C., Lv, S., Chen, Q., Zhu, X., Li, X., ... & Wu, J. (2023). Elucidation of the GAUT gene family in eight Rosaceae species and function analysis of PbrGAUT22 in pear pollen tube growth. Planta, 257(4), 68.
    Cited By
  63. Muñoz, P., Castillejo, C., Gómez, J. A., Miranda, L., Lesemann, S., Olbricht, K., ... & Amaya, I. (2023). QTL analysis for ascorbic acid content in strawberry fruit reveals a complex genetic architecture and association with GDP-L-galactose phosphorylase. Horticulture Research.
    Cited By
  64. Hedhly, A., Guerra, M. E., Grimplet, J., & Rodrigo, J. (2023). S-Locus Genotyping in Japanese Plum by High Throughput Sequencing Using a Synthetic S-Loci Reference Sequence. International Journal of Molecular Sciences, 24(4), 3932.
  65. Yang, J., Zhan, R., Wang, L., Li, J., Ma, B., Ma, F., & Li, M. (2023). Overexpression of MdFRK2 enhances apple drought resistance by promoting carbohydrate metabolism and root growth under drought stress. Horticultural Plant Journal.
    Cited By
  66. Duval, H., Coindre, E., Ramos-Onsins, S. E., Alexiou, K. G., Rubio Cabetas, M. J., Martínez-García, P. J., ... & Arús, P. (2023). Development and Evaluation of an AxiomTM 60K SNP Array for Almond (Prunus dulcis). Plants, 12(2), 242.
    Cited By
  67. Zuo, L., Yu, H., Cao, Y., Zhao, D., Sun, E., Jiang, D., ... & Chen, B. (2023). ROS and JA signaling participate in positive regulation of Pyrus betulifolia LysM-containing receptor protein 1 (PbeLYP1) in Valsa canker resistance. Plant Growth Regulation, 1-10.
    Cited By
  68. Noor, I., Sohail, H., Zhang, D., Zhu, K., Shen, W., Pan, J., ... & Liu, J. (2023). Silencing of PpNRAMP5 improves manganese toxicity tolerance in peach (Prunus persica) seedlings. Journal of Hazardous Materials, 454, 131442.
    Cited By
  69. Li, X., Wang, J., Su, M., Zhang, M., Hu, Y., Du, J., ... & Ye, Z. (2023). Multiple-statistical genome-wide association analysis and genomic prediction of fruit aroma and agronomic traits in peaches. Horticulture Research, uhad117.
    Cited By
  70. Pi, M., Zhong, R., Hu, S., Cai, Z., Plunkert, M., Zhang, W., ... & Kang, C. (2023). A GT‐1 and PKc domain‐containing transcription regulator SIMPLE LEAF1 controls compound leaf development in woodland strawberry. New Phytologist, 237(4), 1391-1404.
    Cited By
  71. Liu, J., Yuan, X., Quan, S., Zhang, M., Kang, C., Guo, C., ... & Niu, J. (2023). Genome-Wide Identification and Expression Analysis of NCED Gene Family in Pear and Its Response to Exogenous Gibberellin and Paclobutrazol. International Journal of Molecular Sciences, 24(8), 7566.
    Cited By
  72. Xu, R., Wang, Y., Wang, L., Zhao, Z., Cao, J., Fu, D., & Jiang, W. (2023). PsERF1B-PsMYB10. 1-PsbHLH3 module enhances anthocyanin biosynthesis in the flesh-reddening of amber-fleshed plum (cv. Friar) fruit in response to cold storage. Horticulture Research, uhad091.
    Cited By
  73. Jiao, Y., Li, X., Huang, X., Liu, F., Zhang, Z., & Cao, L. (2023). The Identification of SQS/SQE/OSC Gene Families in Regulating the Biosynthesis of Triterpenes in Potentilla anserina. Molecules, 28(6), 2782.
  74. Li, Z. Y., Duan, K., Zhu, J. J., Bin, L., Wang, X. Y., Chen, S. Y., ... & Gao, Q. H. Comparative characterization and expression analysis revealed cinnamyl alcohol dehydrogenase genes differentially responding to Colletotrichum fructicola in woodland and cultivated strawberries. Journal of Berry Research, (Preprint), 1-21.
  75. Wen, Z., Li, M., Meng, J., Miao, R., Liu, X., Fan, D., ... & Sun, L. (2023). Genome-Wide Identification of the MAPK and MAPKK Gene Families in Response to Cold Stress in Prunus mume. International Journal of Molecular Sciences, 24(10), 8829.
    Cited By
  76. Li, Z., Liu, W., Chen, Q., Zhang, S., Mei, Z., Yu, L., ... & Wang, N. (2023). Mdm‐miR858 targets MdMYB9 and MdMYBPA1 to participate anthocyanin biosynthesis in red‐fleshed apple. The Plant Journal, 113(6), 1295-1309.
    Cited By
  77. Mao, J., Wang, Y., Wang, B., Li, J., Zhang, C., Zhang, W., ... & Zhang, Z. (2023). High-quality haplotype-resolved genome assembly of cultivated octoploid strawberry. Horticulture Research.
    Cited By
  78. Hochhaus, T., Lau, J., Taniguti, C. H., Young, E. L., Byrne, D. H., & Riera-Lizarazu, O. (2023). Meta-Analysis of Rose Rosette Disease-Resistant Quantitative Trait Loci and a Search for Candidate Genes. Pathogens, 12(4), 575.
  79. Demirel, G., Calle, A., Lawton, J. M., Atagul, O., Fu, W., & Gasic, K. (2023). Ppe. CR. 1 DNA test for predicting chilling requirement in peach. Scientific Reports, 13(1), 987.
    Cited By
  80. Sun, P., Yang, C., Zhu, W., Wu, J., Lin, X., Wang, Y., ... & Shen, J. (2023). Metabolome, Plant Hormone, and Transcriptome Analyses Reveal the Mechanism of Spatial Accumulation Pattern of Anthocyanins in Peach Flesh. Foods, 12(12), 2297.
  81. Xia, Z., Wen, B., Shao, J., Zhang, T., Hu, M., Lin, L., ... & Chen, J. (2023). The transcription factor PbrbZIP52 positively affects pear pollen tube longevity by promoting callose synthesis. Plant Physiology, 191(3), 1734-1750.
    Cited By
  82. Yu, J., Song, B., Gu, K., Cao, B., Zhao, K., Wu, J., & Li, J. (2023). Genome-Wide Identification and Expression Analysis of CAMTA Gene Family Implies PbrCAMTA2 Involved in Fruit Softening in Pear. Horticulturae, 9(4), 467.
    Cited By
  83. Jiang, X., Liu, K., Peng, H., Fang, J., Zhang, A., Han, Y., & Zhang, X. (2023). Comparative network analysis reveals the dynamics of organic acid diversity during fruit ripening in peach (Prunus persica L. Batsch). BMC Plant Biology, 23(1), 1-14.
    Cited By
  84. Kiyak, A., & Mutlu, A. G. (2023). Molecular cloning, characterization and expression profile of FLOWERING LOCUS T (FT) gene from Prunus armeniaca L. South African Journal of Botany, 155, 330-339.
  85. Su, L., Zhang, Y., Yu, S., Geng, L., Lin, S., Ouyang, L., & Jiang, X. (2023). RcbHLH59-RcPRs module enhances salinity stress tolerance by balancing Na+/K+ through callose deposition in rose (Rosa chinensis). Horticulture Research, 10(3), uhac291.
  86. Morales-Quintana, L., Monsalve, L., Bernales, M., Figueroa, C. R., Valdenegro, M., Olivares, A., ... & Fuentes, L. (2023). Molecular dynamics simulation of the interaction of a raspberry polygalacturonase (RiPG) with a PG inhibiting protein (RiPGIP) isolated from ripening raspberry (Rubus idaeus cv. Heritage) fruit as a model to understand proteins interaction during fruit softening. Journal of Molecular Graphics and Modelling, 122, 108502.
  87. Zhang, B., Dang, X., Chen, H., Li, T., Zhu, F., & Nagawa, S. (2023). Ectopic Expression of FvVND4c Promotes Secondary Cell Wall Thickening and Flavonoid Accumulation in Fragaria vesca. International Journal of Molecular Sciences, 24(9), 8110.
  88. HOU, Q. D., Yi, H. O. N. G., Zhuang, W. E. N., SHANG, C. Q., LI, Z. C., CAI, X. W., ... & WEN, X. P. (2023). Molecular characterization of the SAUR gene family in sweet cherry and functional analysis of PavSAUR55 in the process of abscission1. Journal of Integrative Agriculture.
    Cited By
  89. Peng, Y., Zhu, L., Tian, R., Wang, L., Su, J., Yuan, Y., ... & Ma, B. (2023). Genome-wide identification, characterization and evolutionary dynamic of invertase gene family in apple, and revealing its roles in cold tolerance. International Journal of Biological Macromolecules.
    Cited By
  90. Liu, G., Rui, L., Yang, Y., Liu, R., Li, H., Ye, F., ... & Zhang, S. (2023). Identification and Functional Characterization of MdNRT1. 1 in Nitrogen Utilization and Abiotic Stress Tolerance in Malus domestica. International Journal of Molecular Sciences, 24(11), 9291.
    Yang, F., Liu, Y., Zhang, X., Liu, X., Wang, G., Jing, X., ... & You, C. X. (2023). Oxidative post-translational modification of catalase confers salt stress acclimatization by regulating H2O2 homeostasis in Malus hupehensis. Journal of Plant Physiology, 154037.
  91. Fu, M., Xu, Z., Ma, H., Hao, Y., Tian, J., Wang, Y., ... & Wu, T. (2023). Characteristics of long-distance mobile mRNAs from shoot to root in grafted plant species. Horticultural Plant Journal.
  92. Chang, Y., Zheng, W., Wang, S., He, X., He, P., Li, H., ... & Li, L. (2023). QTL mapping combined RNA-seq technology identified potential genes involved in regulation of apple size. Scientia Horticulturae, 319, 112150.
  93. Xu, Y., Liu, Z., Lv, T., Wei, Y., Liu, W., Wei, Y., ... & Wang, A. (2023). Exogenous Ca2+ promotes transcription factor phosphorylation to suppress ethylene biosynthesis in apple. Plant Physiology, 191(4), 2475-2488.
    Cited By
  94. Cheng, Y., Liang, C., Qiu, Z., Zhou, S., Liu, J., Yang, Y., ... & Li, D. (2023). Jasmonic acid negatively regulates branch growth in pear. Frontiers in Plant Science, 14, 1105521.
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