◆发表论文
近5年以第一作者和通讯作者(含共同)发表论文20余篇,代表论文:
通讯作者:
[1] Genome-wide characterization and comparative transcriptomics unravel CpMADS47 as a positive regulator during fruit ripening and softening in Chinese cherry. Postharvest Biology and Technology, 2025, 219: 113287. (SCI, IF6.4, 中科院一区TOP)
[2] Fruit sugar and organic acid composition and inheritance analysis in an intraspecific cross of Chinese cherry. LWT-Food Science & Technology, 2024, 198: 116101. (SCI, IF6.0, 中科院一区TOP)
[3] 中国樱桃CpMADS47基因调控果实成熟软化的功能分析. 四川农业大学学报, 2024, 42(6): 1186-1194. (CSCD)
[4] 50份中国樱桃品种资源的果实质地品质评价. 江苏农业学报, 2023, 39(7): 1613-1616. (CSCD-C)
第一作者:
[1] Identifying potential anthocyanin biosynthesis regulator in Chinese cherry by comprehensive genome-wide characterization of the R2R3-MYB transcription factor gene family. BMC Genomics, 2024, 25: 784. (SCI, IF4.4, 中科院二区TOP)
[2] Comparative physiological and transcriptomic analyses provide insights into fruit softening in Chinese cherry [Cerasus pseudocerasus (Lindl.) G.Don]. Frontiers in Plant Science, 2023, 14: 1190061. (SCI, IF6.627, 中科院二区TOP)
[3] Integrated transcriptome and metabolome analyses provide insights into the coloring mechanism of dark-red and yellow fruits in Chinese cherry [Cerasus pseudocerasus (Lindl.) G. Don]. International Journal of Molecular Sciences, 2023, 24(4): 3471. (SCI, IF6.208, 中科院二区TOP)
[4] Autopolyploid origin of Chinese cherry revealed by chromosomal karyotype and in situ hybridization of seedling progenies. Plants, 2023, 12: 3116 (SCI, IF4.5, 中科院二区)
[5] Inheritance analysis of fruit-related traits in Chinese cherry [Cerasus pseudocerasus (Lindl.) G.Don] breeding progenies. Scientia Horticulturae, 2023, 307: 111519. (SCI, IF4.432, 中科院二区TOP)
[6] Phenotyping in flower and main fruit traits in Chinese cherry [Cerasus pseudocerasus (Lindl.) G.Don], Scientia Horticulturae, 2022, 296: 110920. (SCI, IF4.432, 中科院二区TOP)
[7] Survey on intra-specific crossing and F1 seedling cultivation in seven combinations of Chinese cherry, The Horticulture Journal, 2022, 91(3): 267-275. (SCI)
[8] Allopolyploid origin in Rubus (Rosaceae) inferred from nuclear granule-bound starch synthase I (GBSSI) sequences. BMC Plant Biology, 2019, 19: 303. (SCI, IF3.93, 中科院二区)
[9] Ploidy level of Chinese cherry (Cerasus pseudocerasus Lindl.) and comparative study on karyotypes with four Cerasus species. Scientia Horticulturae, 2018, 232: 46-51. (SCI, IF1.624, 中科院二区TOP)
[10] 中国樱桃杂交新品种‘蜀紫美’. 园艺学报. 2025 (CSCD-C)
[11] 中国樱桃杂交新品种’蜀贵美‘的选育. 果树学报. 2025 (CSCD-C)
[12] 中国樱桃杂交F1代花和果实若干性状遗传倾向分析. 园艺学报, 2022, 49(9): 1853-1865. (CSCD-C)
[13] 中国果树新品保护与DUS测试研究进展. 江苏农业学报, 2022, 38(3): 849-864. (CSCD-C)
[14] 基因组原位杂交技术及其在园艺植物基因组研究中的应用. 西北植物学报, 2017, 37(10): 2087-2096. (CSCD-C)
共同通讯作者:
[1] Comparative metabolomics profiling highlights unique color variation and bitter taste formation of Chinese cherry fruits. Food Chemistry, 2024, 439: 138072. (SCI, IF8.8, 中科院一区TOP)
[2] Soluble sugar and organic acid composition and flavor evaluation of Chinese cherry fruits. Food Chemistry: X, 2023, 20: 100953. (SCI, IF6.1, 中科院一区TOP)
[3] Comparative transcriptomic analysis on compatible/incompatible grafts in Citrus, Horticulture Research, 2022, 9: uhab072. (SCI, IF6.793, 中科院一区TOP)
[4] Development and cross-species transferability of novel genomic-SSR markers and their utility in hybrid identification and trait association analysis in Chinese cherry. Horticulturae, 2022, 8: 222. (SCI, 中科院三区)
共同第一作者:
[1] Evolution of Rosaceae plastomes highlights unique Cerasus diversification and independent origins of fruiting cherry. Frontiers in Plant Science, 2021, 12: 736053 (SCI, IF5.753, 中科院二区TOP)
[2] 中国樱桃InDel 标记开发及其在蔷薇科果树中通用性评价. 园艺学报, 2020, 47(1): 98-110. (CSCD-C)
其他参与重要论文:
[1] Genomes and integrative genomic insights into the genetic architecture of main agronomic traits in the edible cherries. Horticulture Research, 2025, 12: uhae296. (SCI, IF7.6, 中科院一区TOP)
[2] The starch excess and key genes underlying citrus leaf chlorosis by rootstock-scion incompatibility. International Journal of Biological Macromolecules, 2024, 282: 137111. (SCI, IF7.7, 中科院一区TOP)
[3] Phenotypic characters and inheritance tendency of agronomic traits in F1 progeny of Chinese cherry. Agronomy, 2024, 14: 2862. (SCI, IF3.3, 中科院二区)
[4] Phylogeography of 912 cherry accessions insight into independent origins of fruiting cherries and domestication footprints of cultivated Chinese cherry (Prunus pseudocerasus Lindl.). Plants, 2023, 12: 2258 (SCI, IF4.658, 中科院二区)
[5] Accurate Chromosome Identification in the Prunus Subgenus Cerasus (Prunus pseudocerasus) and its Relatives by Oligo-FISH. International Journal of Molecular Sciences, 2022, 23: 13213. (SCI, IF6.208, 中科院二区TOP)
[6] Comparative analysis of transposable elements and the identification of candidate centromeric elements in the Prunus subgenus Cerasus and its relatives. Genes, 2022, 13: 461. (SCI, 中科院三区)
[7] Broaden the sugar donor selectivity of blackberry glycosyltransferase UGT78H2 through residual substitutions. International Journal of Biological Macromolecules, 2021, 166: 277-287. (SCI, IF5.12, 中科院一区TOP)
[8] 极早熟中国樱桃新品种‘蜀早美’. 园艺学报. 2025. (CSCD-C)
[9] 中国樱桃正反交F1代果实主要性状的遗传分析. 中国农业科学, 2023, 56(2): 345-356. (CSCD-C)