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主要论文:
发表各类论文600多篇,其中:SCI收录62篇、ISTP 收录5篇、国内权威刊物论文73篇、中文核心约200多篇,含SCI一、二区高质量论文20多篇、国内顶级权威刊物论文 27篇。主要发表论文具体如下:
1. Yuling Lin, Jiumeng Min, Ruilian Lai, Zhangyan Wu, Yukun Chen, Lili Yu, Chunzhen Cheng, Yuanchun Jin, Qilin Tian, Qingfeng Liu, Weihua Liu, Chengguang Zhang, Lixia Lin, Yan Hu, Dongmin Zhang, Minkyaw Thu, Zihao Zhang, Shengcai Liu, Chunshui Zhong, Xiaodong Fang, Jian Wang, Huanming Yang, Rajeev K. Varshney, Ye Yin, Zhongxiong Lai*. Genome-wide sequencing of longan (Dimocarpus longan Lour.) provides insights into molecular basis of its polyphenol-rich characteristics.Gigascience 2017; 6 (5): 1-14. doi: 10.1093/gigascience/gix023. (龙眼:首次破译龙眼基因组, 无患子科第一个)
2. Xiaoping Xu, Yan Chen,Xiaohui Chen, Qinglin Zhang, Liyao Su,Xu Chen, Yukun Chen, Zihao Zhang, Yulin Lin*, Zhongxiong Lai*.Genome-wide identification of miRNAs and their targets during early somatic embryogenesis in Dimocarpus longan Lour. Scientific Reports,2020.02(accepted)(龙眼)
3. Cheng C*, Liu F, Sun X, Tian N, Mensah RA, Li D, Lai Z*. Identification of Fusarium oxysporum f. sp. cubense tropical race 4 (Foc TR4) responsive miRNAs in banana root[J]. Scientific Reports, 2019:9:13682.(香蕉)
4. Guo, Yuqiong., Zhu Chen., Zhao Shanshan., Zhang Shuting., Wang W., Fu, H., Lai, Zhongxiong*. De novo transcriptome and phytochemical analyses reveal differentially expressed genes and characteristic secondary metabolites in the original oolong tea (Camellia sinensis) cultivar‘Tieguanyin’compared with cultivar‘Benshan’. BMC genomics, (2019)20(1), 265.(茶树)
5. Dan-Chu Chin, Rajendran Senthil Kumar, Ching-Shu Suen, Chia-Yu Chien, Ming-Jing Hwang,Chun-Hua Hsu, Xu Xuhan, Zhong Xiong Lai, and Kai-Wun Yeh*(2019). Plant Cytosolic Ascorbate Peroxidase with Dual Catalytic Activity Modulates Abiotic Stress Tolerances. iScience, DOI: 10.1016/j.isci.2019.05.014.(文心兰)
6. Liu, W., Cheng, C., Chen, F., Ni, S., Lin, Y., & Lai, Z*. (2018). High-throughput sequencing of small RNAs revealed the diversified cold-responsive pathways during cold stress in the wild banana (Musa itinerans). BMC Plant Biol, 18(1), 308. doi: 10.1186/s12870-018-1483-2(野生蕉)
7. Li, H., Chen, X., Wang, Y., Yao, D., Lin Yuling, Lai Zhongxiong*(2019). Exploration of the effect of blue light on microRNAs involved in the accumulation of functional metabolites of longan embryonic calli through RNA-sequencing. Journal of the Science of Food and Agriculture, 99(4), 1533-1547.(龙眼)
8. Chen, Y., X. Li, L. Su, X. Chen, S. Zhang, X. Xu, Z. Zhang, Y. Chen, X. XuHan, Y. Lin* and Z. Lai* (2018)Genome-wide identification and characterization of long non-coding RNAs involved in the early somatic embryogenesis in Dimocarpus longan Lour.BMC Genomics.19(1): 805.(龙眼)
9. Chen, Y., Xu, X., Liu, Z., Zhang, Z., XuHan, X., Lin, Y*., & Lai, Z*. (2020). Global scale transcriptome analysis reveals differentially expressed genes involve in early somatic embryogenesis in Dimocarpus longan Lour. BMC genomics, 21(1), 4. https://doi.org/10.1186/s12864-019-6393-7.(龙眼)
10. Zhang, S., C. Zhu, Y. Lyu, Y. Chen, Z. Zhang, Z. Lai* and Y. Lin *(2020). Genome-wide identification, molecular evolution, and expression analysis provide new insights into the APETALA2/ethylene responsive factor (AP2/ERF) superfamily in Dimocarpus longan Lour. BMC Genomics 21(1): 62.(龙眼)
11. Guo, Y., S. Zhao, C. Zhu, X. Chang, C. Yue, Z. Wang, Y. Lin & Z. Lai *Identification of drought-responsive miRNAs and physiological characterization of tea plant (Camellia sinensis L.) under drought stress.BMC Plant Biol, (2017) 17, 211.(茶树)
12. Zhu, C., Zhang, S., Fu, H., Zhou, C., Chen, L., Li, X., ...Lai Z.* & Guo, Y*.Transcriptome and Phytochemical Analyses Provide New Insights into Long Non-Coding RNAs Modulating Characteristic Secondary Metabolites of Oolong Tea (Camellia sinensis) in Solar-Withering[J]. Frontiers in Plant Science, 2019, 10: 1638. (茶树)
13.Li, H., Lyu, Y., Chen, X., Wang, C., Yao, D., Ni, S., Lin, Y., Chen, Y., Zhang, Z., & Lai, Z*. (2019). Exploration of the Effect of Blue Light on Functional Metabolite Accumulation in Longan Embryonic Calli via RNA Sequencing. International journal of molecular sciences, 20(2), 441. https://doi.org/10.3390/ijms20020441 .(龙眼)
14.Liu, Shengcai., Zheng Xueli, Pan Junfei., Peng Liyun., Cheng Chunzheng, Wang Xiao, Zhao Chunli,Zhang Zihao,Lin yuling,Xu Xuhan,Lai Zhongxiong*(2019). RNA-sequencing analysis reveals betalains metabolism in the leaf of Amaranthus tricolor L. PloS one, 14(4), e0216001.(苋菜)
15. Dan Li,Dan Lia, Raphael Anue Mensaha, Fan Liua, Na Tiana, Quan Qia, KaiWun Yeha, Xu Xuhana,b, Chunzhen Cheng*, Zhongxiong Lai*(2019),Effects of Piriformospora indica on rooting and growth of tissue-cultured banana (Musa acuminata cv.Tianbaojiao) seedlings,[J], Scientia Horticulturae.257(17)https://doi.org/10.1016/j.scienta.2019.108649(香蕉)
16. Guo, R., Li, W., Wang, X., Chen, B., Huang, Z., Liu, T., Chen X,XuHan X*. & Lai, Z*(2019). Effect of photoperiod on the formation of cherry radish root[J]. Scientia Horticulturae, , 244: 193-199. https://doi.org/10.1016/j.scienta.2018.09.044(芥蓝)
17.Guo Rongfang, Huang Zhongkai, Deng Yanping, Chen Xiaodong, XuHan Xu*, Lai Zhongxiong*.Comparative Transcriptome Analyses Reveal a Special Glucosinolate Metabolism Mechanism in Brassica alboglabra Sprouts(2016).Frontiers in Plant Science,7:1497 DOI: 10.3389/fpls.2016.01497(芥蓝)
18. Rongfang Guo, Xiaodong Chen, Yuling Lin, Xuhan Xu,Min Kyaw Thu and Zhongxiong Lai*. Identification of Novel and Conserved miRNAs in Leaves of In vitro Grown Citrus reticulata “Lugan” Plantlets by Solexa Sequencing(2015). Front. Plant Sci., https://doi.org/10.3389/fpls.2015.01212(柑橘)
19. Munir N, Cheng C, Xia C, Xu, X., Nawaz, M. A., Iftikhar, J., ... & Lai, Z*. RNA-Seq analysis reveals an essential role of tyrosine metabolism pathway in response to root-rot infection in Gerbera hybrida (2019). PloS one, 14(10): e0223519-e0223519.(非洲菊)
20. Zhang, Y. Y., Liu, F., Tian, N., Che, J. R., Sun, X. L., Lai, Z. X*., & Cheng, C. Z*. . Characterization of the complete chloroplast genome of Sanming wild banana (Musa itinerans) and phylogenetic relationships[J]. Mitochondrial DNA Part B, 2019, 4(2): 2614-2616.(野生蕉)
21 Cheng, C., Li, D., Qi, Q., Sun, X., Anue, M. R., David, B. M., ... & Lai, Z. *. The root endophytic fungus Serendipita indica improves resistance of Banana to Fusarium oxysporum f. sp. cubense tropical race 4[J]. European Journal of Plant Pathology, 2019: 1-14.(香蕉)
22. Zhang, Y. Y., Liu, F., Wang, X. Q., Shi, X. B., Tian, N., Lai, Z. X.*, & Cheng, C. Z*. . Characterization of the complete chloroplast genome of Gerbera jamesonii Bolus in China and phylogenetic relationships. Mitochondrial DNA Part B,4(2), 2706-2707.(非洲菊)
23.Deng, S., C. Cheng, Z. Liu, Y. Chen, Z. Zhang, Y. Huang, Y. Lin, T. Wang & Z. Lai *. Comparative transcriptome analysis reveals a role for anthocyanin biosynthesis genes in the formation of purple peel in Minhou wild banana (Musa itinerans Cheesman.). The Journal of Horticultural Science and Biotechnology, (2018)1-17.(野生蕉)
24.Hansheng Li, Yuling Lin, Xiaohui Chen, Yu Bai, Congqiao Wang, Xiaoping Xu, Yun Wang, Zhongxiong Lai*. Effects of blue light on flavonoid accumulation linked to the expression of miR393, miR394 and miR395 in longan embryogenic calli[J].Plos One, 2018, 13(1):e0191444.(龙眼)
25. Zheng, S., Y. Lin, Z. Lai & J. Lin. Isolation and characterisation of a MYB transcription factor associated with epigallocatechin-3-gallate biosynthesis in Camellia sinensis L. The Journal of Horticultural Science and Biotechnology,(2018) 1-8.(茶树)
26.Weihua Liu, Zhengchun Lin, Yanying Liu, Yuling Lin, Xu XuHan, Zhongxiong Lai*. Genome-wide identification and characterization of the CKII gene family in the cultivated banana cultivar (Musa spp. cv Tianbaojiao) and the wild banana (Musa itinerans). Plos one, 2018. DOI:10.1371/journal.pone.0200149(野生蕉)
27. Weihua Liu, Chunzhen Cheng, Yuling Lin, Xu XuHan, Zhongxiong Lai*. Genome-wide identification and characterization of mRNAs and lncRNAs involved in cold stress in the wild banana (Musa itinerans). Plos one, 2018. 13 (7) :e0200002(野生蕉)
28. Wei Wang, Minghua Su, Huihua Li, Biyu Zeng, Qiang Chan, Zhong xiong Lai*. Effects of supplemental lighting with different light qualities on growth and secondary metabolite content of Anoectochilus roxburghii. Peer J, 2018. DOI:10.7717/peerj.5274(金线莲)
29. Yukun Chen, Xiaoping Xu, ZiHao Zhang, Yuling Lin, Zhongxiong Lai*. Seed-Specific Gene MOTHER of FT and TFL1 (MFT) Involved in Embryogenesis, Hormones and Stress Responses in Dimocarpus longan Lour. International Journal of Molecular Sciences, 2018, 19(8), 2403
(龙眼)
30.Yuqiong Guo, Xiaojun Chang, Chen Zhu, Shuting Zhang, Xiaozhen Li, Haifeng Fu, Changsong Chen, Yuling Lin and Zhongxiong Lai*(2018). De novo transcriptome combined with spectrophotometric method and GC-MS revealed the differentially expressed genes linking with the accumulation of secondary metabolites in the purple-leaf tea plant (Camellia sinensis cv Hongyafoshou)[J]. The Journal of Horticultural Science and Biotechnology,2018: 1-19.(茶树)
31.Sun, P., Cheng, C., Lin, Y., Zhu, Q., Lin, J*., & Lai, Z* (2017). Combined small RNA and degradome sequencing reveals complex microRNA regulation of catechin biosynthesis in tea (Camellia sinensis). PloS one, 12(2), e0171173.(茶树)
32. Ping, SUN., Zhen-lu, ZHANG., ZHU Qiu-fang, ZGY, Ping, XIANG., Yu-ling, LIN., Zhongxiong, LAI*, & Jin-ke, LIN*(2017). Identification of miRNAs and target genes regulating catechin biosynthesis in tea (Camellia sinensis). Journal of Integrative Agriculture,.Doi:10.1016/S2095-3119(17)61654-X (茶树)
33.Shizhong Zheng, Yuling Lin, Ping Sun, Zhongxiong Lai*, Jinke Lin*. Cloning and developmental expression analysis of a basic helix loop helix transcription factor, gene for epigallocatechin-3-gallate biosynthesis in tea plant (Camellia sinensis L.). Indian Journal of Biotechnolgy, 2017, 16. (茶树)
34. Yuqiong Guo, Shanshan Zhao, Chen Zhu,Xiaojun Chang, Chuan Yue,Zhong Wang, Yuling Lin & Zhongxiong Lai*(2017). Identification of drought-responsive miRNAs and physiological characterization of tea plant (Camellia sinensis L.) under drought stress. BMC Plant Biol 17, 211. https://doi.org/10.1186/s12870-017-1172-6(茶树)
35.Yuling Lin, Zhongxiong Lai*, Lixia Lin, Ruilian Lai, Qilin Tian, Wei Ye, Dongmin Zhang, Manman Yang, Yukun Chen, Zihao Zhang(2015). Endogenous target mimics, microRNA167, and its targets ARF6 and ARF8 during somatic embryo development in Dimocarpus longan Lour.Mol Breeding 35:227 DOI 10.1007/s11032-015-0420-4. (龙眼)
36. Lin Y, Lai Z*, Tian Q, Lin L, Lai R, Yang M, Zhang D, Chen Y and Zhang Z (2015) Endogenous target mimics down-regulate miR160 mediation of ARF10,-16,and-17 cleavage during somatic embryogenesis in Dimocarpus longan Lour. Front Plant Sci. doi: 10.3389/fpls.2015.00956
(龙眼)
37.Lin Y, Lin L, Lai R, Liu W, Chen Y, Zhang Z, Xu X and Lai Z*.(2015) MicroRNA390- directed TAS3 cleavage leads to the production of tasiRNA-ARF3/4 during somatic embryogenesis in Dimocarpus longan Lour.Front. Plant Sci. 6:1119. doi:10.3389/fpls.2015.01119(龙眼)
38.Xin Feng, Zhongxiong Lai*, Yuling Lin, Gongti Lai and Conglong Lian. Genome-wide identification and characterization of the superoxide dismutase gene family in Musa acuminata cv. Ti anbaojiao (AAA group).BMC Genomics, ISSN:1471-2164, doi:10.1186/s12864-015-2046-7
(香蕉)
39. Shan Shan Xu, Si Zu Lin* & Zhongxiong Lai*. Cadmium impairs iron homeostasis in Arabidopsis thaliana by increasing the polysaccharide contents and the iron-binding capacity of root cell walls. Plant and Soil. (2015) 392:71–85 DOI 10.1007/s11104-015-2443-3.(拟南芥)
40. Lai Z* and Lin Y: Analysis of the global transcriptome of longan (Dimocarpus longan Lour.) embryogenic callus using Illumina paired-end sequencing. BMC Genomics2013 14:561. doi:10.1186/1471-2164-14-561.(龙眼)
41.Yu-Ling Lin, Zhong-Xiong Lai*. Superoxide dismutase multigene family in longan somatic embryos: a comparison of CuZn-SOD, Fe-SOD, and Mn-SOD gene structure, splicing, phylogeny, and expression.Mol Breeding. 2013. DOI 10.1007/s11032-13-9892-2(龙眼)
42.Y.L. Lin, Z.X. Lai*. Reference gene selection for qPCR analysis during somatic embryogenesis in longan tree.Plant Science 178 (2010) 359–365(龙眼)
43.Lin Y, Lai Z*. Comparative Analysis Reveals Dynamic Changes in miRNAs and Their Targets and Expression during Somatic Embryogenesis in Longan (Dimocarpus longan Lour.). PLoS ONE 2013 8(4): e60337. Doi: 10.1371/journal. pone.0060337(龙眼)
44. Liu, S., Kuang, H., & Lai, Z*.Transcriptome Analysis by Illumina High-Throughout Paired-End Sequencing Reveals the Complexity of Differential Gene Expression during In Vitro Plantlet Growth and Flowering in Amaranthus tricolor L. PLoS ONE(2014).9(6): e100919. doi:10.1371/journal.pone.0100919(苋菜)
45. Ye, W., Shen, C. H., Lin, Y., Chen, P. J., Xu, X., Oelmuller, R., Yeh, K. W., & Lai, Z*. 2014. Growth promotion-related miRNAs in Oncidium orchid roots colonized by the endophytic fungus Piriformospora indica, PLoS One (2014) 9(1): e84920.(文心兰)
46 .Yu Ling Lin, Zhongxiong Lai*. Evaluation of suitable reference genes for normalization of microRNA expression by real-time reverse transcription PCR analysis during longan somatic embryogenesis. Plant Physiology and Biochemistry 66 (2013) 20-25(龙眼)
47. Qilin Tian, Yuling Lin, Manman Yang, Dongmin Zhang, Ruilian Lai, Zhongxiong Lai*. DlRan3A is involved in hormone, light and abiotic stress responses in embryogenic callus of Dimocarpus longan Lour. (2015),GENE. http://dx.doi.org/ 10.1016/ j.gene.2015.06.013(龙眼)
48. Fang, Zhi-Zhen, Lai, Cheng-Chun, Zhang, Ya-Ling, Lin, Yu-Ling, Lai, Zhong-Xiong*. Identification of a PTC-containing DlRan transcript and its differential expression during somatic embryogenesis in Dimocarpus longan, Gene (2013), doi: 10.1016/j.gene. 2013. 07.091(龙眼)
49.Xueli Zheng, Shengcai Liu, Chunzhen Cheng, Rongfang Guo, Yukun Chen, Liyang Xie, Yuyuan Mao, Yuling Lin, Zihao Zhang, Zhongxiong Lai*. Cloning and expression analysis of betalain biosynthesis genes in Amaranthus tricolor. Biotechnol Lett(2015). DOI 10.1007/s10529-015-2021-z(苋菜)
50.Fang, Z. Z., Zhang, Y. L., Lai, C. C., &untranslated region Lai, Z. X*. Developmental regulation of Ran 3 during somatic embryogenesis in Dimocarpus longan Lour. Scientia Horticulturae, (2014).176, 297-302.https://doi.org/10.1016/j.scienta.2014.07.023(龙眼)
51. Weihua Liu, Chunzhen Cheng, Gongti Lai, Yuling Lin and Zhongxiong Lai*.Molecular cloning and expression analysis of KIN10 and cold-acclimation related genes in wild banana ‘Huanxi’ (Musa itinerans).SpringerPlus (2015) 4:829 DOI 10.1186/s40064-015-1617-z
(野生蕉)
52. Fang, Z., Lai, C., Zhang, Y., & Lai, Z*. (2016). Molecular cloning, structural and expression profiling of DlRan genes during somatic embryogenesis in Dimocarpus longan Lour. SpringerPlus.DOI:10.1186/s40064-016-1887-0(龙眼)
53. L.Y. Zhang, Z.Z.Fang, . Z.Xi. Lai*(2016). Identification of alternatively spliced MsRan transcripts involved in low temperature response in Musa spp. Biologia Plantarum 61(3) : DOI: 10.1007/s10535-016-0682-7(香蕉)
54.Qilin Tian,Yuling Lin, Dongmin Zhang,Ruilian Lai and Zhongxiong Lai *(2016). Ras-Related Nuclear Protein Ran3B Gene Is Involved in Hormone Responses in the Embryogenic Callus of Dimocarpus longan Lour. Int. J. Mol. Sci. 2016, 17(6), 873; https:// doi.org/10.3390/ijms17060873(龙眼)
55. Xin Feng,Fanglan Chen,Weihua Liu,Min Kyaw Thu,Zihao Zhang,Yukun Chen,Chunzhen Cheng,Yuling Lin,Tianchi Wang and Zhongxiong Lai*(2016). Molecular Characterization of MaCCS, a Novel Copper Chaperone Gene Involved in Abiotic and Hormonal Stress Responses in Musa acuminata cv. Tianbaojiao. Int. J. Mol. Sci. 2016, 17(4), 441; https://doi.org/10.3390/ ijms17040441(香蕉)
56. Chen Zhu, Shuting Zhang, Chengzhe Zhou,Lan Chen, Haifeng Fu, Xiaozhen Li, Yuling Lin, Zhongxiong Lai* and Yuqiong Guo*,Genome-wide investigation and transcriptional analysis of cytosine-5 DNA methyltransferase and DNA demethylase gene families in tea plant (Camellia sinensis) under abiotic stress and withering processing. Peer J,8:e8432. doi: 10.7717/peerj.8432. eCollection 2020.(茶树)
57. Zhang, Q. L., L. Y. Su, S. T. Zhang, X. P. Xu, X. H. Chen, X. Li, M. Q. Jiang, S. Q. Huang, Y. K. Chen, Z. H. Zhang, Z. X. Lai and Y. L. Lin* (2020). Analyses of microRNA166 gene structure, expression, and function during the early stage of somatic embryogenesis in Dimocarpus longan Lour. Plant Physiology and Biochemistry 147: 205-214.(龙眼)
58.Zhou C, Zhu C, Fu H, Chen L, Lin Y., Lai Z*,Guo Y*.Genome-wide investigation of superoxide dismutase (SOD) gene family and their regulatory miRNAs reveal the involvement in abiotic stress and hormone response in tea plant (Camellia sinensis).PLoS One. 2019 Oct 10;14(10):e0223609. doi: 10.1371/journal.pone.0223609. eCollection 2019(茶树)
59. Zhou ZW, Wu QY, Deng HL, Liu BB, Yue C, Deng TT, Lai ZX, Sun Y. Dynamics of ADH and related genes responsible for the transformation of C6-aldehydes to C6-alcohols during the postharvest process of oolong tea. Food Sci Nutr. 2019 Nov 25;8(1):104-113. doi: 10.1002/fsn3.1272. eCollection 2020 Jan.(茶树)
60. Zhou, Q., Sun, W*., & Lai, Z. (2016). Differential expression of genes in purple‐shoot tea tender leaves and mature leaves during leaf growth. Journal of the science of food and agriculture, 96, 1982-1989. doi: 10.1002/jsfa.7308(茶树)
61.MENSAH Raphael Anue, LI Dan, SUN Xue-li, HAO Xiang-yang, LAI Zhong-xiong*, CHENG Chun-zhen*(2020). The Versatile Piriformospora indica and Its Potential Application in the Horticulture Industry. HorticulturalJournal,(accepted).
(综述)
62.Wei Ye, Jinlan Jiang, Yuling Lin, Kai-Wun Yeh, Zhongxiong Lai, Xuming Xu & Ralf Oelmüller*(2019). Colonisation of Oncidium orchid roots by the endophyte Piriformospora indica restricts Erwinia chrysanthemi infection, stimulates accumulation of NBS-LRR resistance gene transcripts and represses their targeting micro-RNAs in leaves.BMC Plant Biology 19: 601 (2019) (文心兰)
63. Z.X. Lai, Y. He, Y.T. Chen, Y.Q. Cai, C.C. Lai, Y.L. Lin, X.L. Lin, Z.Z. Fang. Molecular biology and proteomics during somatic embryogenesis in Dimocarpus longan lour. Acta Horticulturae2010, 863:95-10119 (ISTP).
64. Y.L.Lin, Z.X.Lai*. Analyses on activites and isozymatic patterns of SOD during early somatc embyogenesis in longan. Acta Horticulturae 2010,863:169-1741 (ISTP).
65. W Shao, Z.X.Lai*. Changs of APX isozymes under high temperature stress and cloning of an APX functional fragment in embryogenic callus of litchi. Acta Horticulturae 2010, 863: 183-188 (ISTP).
66. X.L.Lin,Z.X.Lai*, Q.F.Xu. High frequency plant regeneration via in via in vitro somatic embryogenesis in fifteen cultivars of Dimocarpus longan lour.Acta Horticulturae2010, 863: 155-160 (ISTP).
67. C.C. Lai, Z.X. Lai*, Q.L. Sang, Z.Y. Huang, Q. Huang. Long-term subculture and maintenace of transgenic resistant embryogenic callus in litchi(Ltchi chinensis Sonn.). Acta Horticulturae2010,863:135-140. (ISTP).
68.方智振,赖钟雄*等.龙眼体胚发生中期的蛋白质组学研究. 中国农业科学,2011,44(14):2966-2979
69.赖呈纯,赖钟雄*等.龙眼体胚发生早期的蛋白组学研究. 中国农业科学,2012, 45(9):1775-1790;
70. 赖呈纯,赖钟雄*等.龙眼胚性愈伤组织线粒体ATP合酶β亚基基因克隆及其在体胚发生过程中的表达分析. 中国农业科学,2010,43(16): 3392-3401;
71.李惠华,赖钟雄*等.龙眼胚性愈伤组织ACC氧化酶基因克隆及其在体胚发生过程中的表达分析.中国农业科学,2010,43(18): 3798-3808;
72.赖呈纯,赖钟雄*等.龙眼TPI基因的克隆及其在体胚发生过程中的表达分析. 园艺学报,2012,39(3):443-452;
73李惠华,赖钟雄*等.龙眼TIR1 和ABP1 基因的克隆及其在体胚发生过程中的表达分析. 园艺学报,2012,39(2):253–264;
74. 陈裕坤,徐洋,屈莹,林玉玲,姚文,赖钟雄*.龙眼胚性愈伤组织remorin家族成员的克隆及其在体胚发生过程中的表达分析. 园艺学报,2014,(11):陈裕坤, 徐洋, 屈莹, 林玉玲, 姚文, & 赖钟雄. (2014). 龙眼胚性愈伤组织remorin家族成员的克隆及其在体胚发生过程中的表达分析. 园艺学报,41(11), 2299-2312.
75. 彭丽云,王云,孙雪丽,王晓,赵春丽,王丛巧,项蕾蕾,陈家兰,赖钟雄*,刘生财*.苋菜中甜菜红素代谢相关基因AmMYB2的表达与功能分析[J].园艺学报,2019,46(03):473-485.
76.孙雪丽, 刘范, 田娜, 项蕾蕾, 郝向阳, & 王云, 彭丽云王天池程春振赖钟雄*. (2019). 香蕉aux/iaa基因家族的全基因组鉴定及表达分析. 园艺学报(10), 1919-1935.
77. 林玉玲,张清林,曾友竞,陈晓慧,Min Kyaw Thu,张梓浩, 陈裕坤,赖钟雄*.龙眼miR166 家族的分子进化特性及时空表达分析[J]. 园艺学报,2017(12):2285-2295
78.张清林, 苏立遥, 厉雪, 张舒婷, 徐小萍, & 陈晓慧, 王培育李蓉张梓浩陈裕坤赖钟雄*, 林玉玲* . (2018). 龙眼体胚发生早期mir166初级体的克隆与表达分析. 园艺学报,v.45(08), 78-89.
79.赖瑞联, 林玉玲, 钟春水, & 赖钟雄*. (2016). 龙眼生长素受体基因tir1密码子偏好性分析. 园艺学报,v.43(04), 165-174.
80.王杏茹, 李文静, 陈冰星, 刘涛, 尚维, & 赖钟雄*, 郭容芳*. (2019). 蕹菜耐受长时间高温后的mirna分析. 园艺学报,46(3), 486-498.
81.李蓉, 吴晓佩, 王雪晶, 陈裕坤, 郭容芳, & 林玉玲, 赖钟雄*,徐涵* (2018). 文心兰rfnr的克隆、亚细胞定位及其与lfnr不同的胁迫响应机制研究. 园艺学报,45(11), 97-109.
82. 程春振,陈登云,刘炜婳,林玉玲,卓春宣,刘生财,陈裕坤,张梓浩,赖钟雄*(2017).早熟金柑新品种‘金秋早’.园艺学报2017, 44 (4): 803-804
83.张雅玲, 方智振, and 赖钟雄. 三明野生蕉Ran基因克隆及其组织特异性与低温胁迫表达分析. 果树学报32.1(2015):26-36.
84.张舒婷,朱晨,王培育,陈旭,陈晓慧,白玉,张梓浩,陈裕坤,赖钟雄*,林玉玲* . 龙眼mir172家族成员进化特性及其时空表达分析. 果树学报(11), 23-31.
85.孙雪丽, 郝向阳, 王天池, 赖钟雄*, & 程春振.* (2018). 香蕉枯萎病防控和抗病育种研究进展. 果树学报(7), 870-879.
86.李珊珊, 徐小萍, 陈旭, 陈晓慧, 李汉生, & 林玉玲,赖钟雄* (2019). 龙眼胚性愈伤组织dlck2-α基因克隆、亚细胞定位及其表达特性分析. 果树学报(12).
87.苏立遥, 蒋梦琦, 黄倏祺, 徐小萍, 厉雪, & 陈旭, 赖钟雄*,林玉玲*. (2019). Mir403分子进化特性及其在龙眼体胚发生早期的表达模式分析. 果树学报(7), 846-856.
88.苏立遥, 张帅, 陈旭, 徐小萍, 赖钟雄, & 林玉玲*. . Mir171家族成员分子特性及mir171b调控靶标在龙眼体胚发生早期的表达分析. 果树学报,35(11), 18-28.
89.徐小萍, 廖琪, 陈旭, 陈晓慧, 林玉玲*, & 赖钟雄*. (2019). 龙眼mir397家族成员分子特性及其在体胚发生早期的表达分析. 果树学报,36(05), 33-43.
90.李丹, 黄玉吉, 朱宁, 刘范, 田娜, & 徐涵,程春振*,赖钟雄*. (2019). 三明野生蕉抗寒特性的形态学与生理生化研究. 果树学报,36(01), 78-87.
91.陈荣珠;刘转霞;陈晓慧;徐小萍;林玉玲;赖钟雄*(2019).龙眼胚性愈伤组织AGO10基因克隆及其表达分析.果树学报,2019(3):286-295
92.田奇琳, 林玉玲, 郑庆游, & 苏荣峰,赖钟雄*. (2016). 龙眼dllac7的克隆及其表达调控分析. 果树学报(33), 1193.
93.焦楠朱宁程春振林玉玲李汉生陈发兴赖钟雄 *(2019).西番莲TeMV和CMV双重RT-PCR检测体系的建立及应用.果树学报.2019(7): 947-953。
94.刘彦英,倪珊珊,项蕾蕾,孙雪丽,陈裕坤,赖钟雄*(2020).香蕉miR408b靶基因Chemocyanin的克隆及其低温胁迫下的表达分析. 果树学报,(1):29-39.
95. 彭丽云,王云,孙雪丽,赵春丽,王晓,赖钟雄*,刘生财*. 苋菜AmMYB2基因密码子偏好性与进化分析[J/OL].应用与环境生物学报:1-12[2019-06-25].http: //kns.cnki.net/ kcms/detail/ 51.1482.q.20190524.0852.002.html.
96. 黄玉吉,赖钟雄*.香蕉几丁质酶基因ChiI2超表达载体和干涉表达载体的构建[J/OL].应用与环境生物学报:1-10[2019-06-25].https://doi.org/10.19675/j.cnki.1006-687x.2018.09019.
97. 刘生财,潘君飞,王晓,赵春丽,赖钟雄*,张梓浩.MeJA对苋菜悬浮细胞类黄酮和类胡萝卜素累积及其代谢相关基因表达的影响[J/OL].应用与环境生物学报:1-11[2019-06-25]. https://doi.org/10.19675/j.cnki.1006-687x.2018.12039.
98. 潘红,赖呈纯*,张静,黄贤贵,林玉玲,赖钟雄*.不同光质条件下刺葡萄红色愈伤组织的RT-qPCR内参基因筛选[J/OL].应用与环境生物学报:1-10[2019-06-25].https://doi.org/ 10.19675 /j.cnki.1006-687x.2019.01038.
99.刘生财,潘君飞,王晓,等.MeJA对苋菜悬浮细胞类黄酮和类胡萝卜素累积及其代谢相关基因表达的影响[J].应用与环境生物学报,2019,25(05):1168-1175.[doi:10.19675/j.cnki.1006-687 x.2018.12039]
100. 王云,彭丽云,孙雪丽,高玉莹,陈晓慧,陈裕坤,林玉玲,赖钟雄*.龙眼Hsf基因家族全基因组鉴定及体胚发生过程中的表达分析[J].应用与环境生物学报,2019,25(02):420-431.
101.高玉莹,白玉,时欢,陈晓慧,郝向阳,林玉玲,叶开温*,赖钟雄*.文心兰‘南茜’谷氧还蛋白基因克隆定位及表达[J].应用与环境生物学报,2018,24(03):533-540.
102.刘炜婳,林争春,刘彦英,李汉生,倪珊珊,林玉玲,赖钟雄*.野生蕉miR395a前体克隆与进化特性及启动子分析[J].应用与环境生物学报,2018,24(01):89-96.
103. 徐小萍,陈晓慧,吕科良,陈旭,陈裕坤林玉玲赖钟雄**.龙眼漆酶家族成员全基因组结构与功能分析*[J].应用与环境生物学报,2018, 24(04): 1-16. [doi:10.3724/SP.J.1145. 2017. 09047]
104. 时欢,林玉玲,赖钟雄,杜宜殷,黄鹏林*.CRISPR/Cas9介导的植物基因编辑技术研究进展[J].应用与环境生物学报,2018,24(03):640-650
105. 孙平,章国营,向萍,林金科*,赖钟雄*.茶树中莽草酸途径DHD/SDH基因的表达调控[J].应用与环境生物学报,2018,24(02):322-327.
106. 刘炜婳, 林玉玲, 赖钟雄*. 福州宦溪野生蕉CBF7的cDNA与启动子克隆及在不同温度下的表达特性[J]. 应用与环境生物学报,2017,(02):200-208.
107. 陈旭,曾友竞,王嘉毅,陈晓慧,徐小萍,李汉生,张梓浩,陈裕坤,赖钟雄,王天池*,林玉玲*.龙眼miR159家族成员进化特性比较及时空表达分析*[J]. 应用与环境生物学报,2017(4):602-608
108.林玉玲,赖钟雄*.龙眼胚性愈伤组织Cu/Zn-SOD分子伴侣基因CCS的克隆及其在体胚发生过程中的表达分析。应用与环境生物学报, 2012,18 ( 3 ) : 351~358;
109. 赖瑞联,林玉玲,赖钟雄*.龙眼生长素受体基因TIR1的克隆及其与miR393互作关系分析。应用与环境生物学报, 2015,21(06):1-11. [doi:10.3724/SP.J. 1145.2015. 05051];
110.王凤华, 赖钟雄*, 郑金贵, & 吕柳新. (2005). 龙眼胚性愈伤组织维生素c过氧化物酶基因(apx)及nadh脱氢酶基因(nad2)部分序列的克隆. 应用与环境生物学报,11(1), 45-48
111.刘炜婳, 林玉玲, & 赖钟雄* . 福州宦溪野生蕉CBF7的cDNA与启动子克隆及在不同温度下的表达特性. 应用与环境生物学报(2), 20-28.
112. 郭玉琼, 黄道斌, 常笑君, 朱晨, 李小桢, & 赖钟雄*. (2018). 铁观音茶树体胚发生及其内源激素变化. 应用与环境生物学报.10.19675/j.cnki.1006-687x.2017.12027
113. 赖钟雄*,陈振光(2004). 龙眼胚性细胞悬浮培养再生植株[J]. 应用与环境生物学报(5):485-491.DOI:10.3321/j.issn:1006-687X.2002.05.008
114.赖瑞联,林玉玲,赖钟雄*(2016).龙眼生长素受体基因TIR1的克隆及其与miR393互作关系[J]. 应用与环境生物学报(1):95-102.
115. 赖钟雄*,桑庆亮. 荔枝胚性愈伤组织体胚发生系统的优化及转化抗性愈伤组织培养再生植株[J]. 应用与环境生物学报(2):131-136.
116.刘炜婳, 林争春, 刘彦英, 刘炜婳, 林争春, 刘彦英, 李汉生, 倪珊珊, & 林玉玲,赖钟雄*(2018) . 野生蕉miR395a前体克隆与进化特性及启动子分析[J]. 应用与环境生物学报.(1):89-96.
117.王培育, 林争春, 王丛巧, 高玉莹, 陈裕坤, & 叶炜,赖钟雄*,林玉玲*. (2019). 文心兰15个mirnas及其候选靶标的表达特性. 应用与环境生物学报,25(01), 108-106.
118.郭玉琼, 王仲, 朱晨, 赵姗姗, 张舒婷, & 常笑君,赖钟雄*. (2018). 茶树csd1基因及其启动子克隆与低温胁迫下的表达. 应用与环境生物学报,24(05), 1122-1131.
119.刘彦英; 倪珊珊; 王晓; 付帅; 吴昊;赖钟雄*.香蕉MaPFK基因家族鉴定、MaPFK3克隆和表达分析[J].应用与环境生物学报,2020,26(05):1-13.[doi:10.19675/j.cnki.1006-687x.2019. 12042]
120. 郑世仲,江胜滔,陈美霞,林玉玲,赖钟雄*,林金科*.茶树Ankyrin基因启动子的克隆及其5′UTR内含子功能[J].应用与环境生物学报,2019,25(06):1381-1387. [doi:10.19675/j.cnki.1006-687x.2019.05011]
121.陈裕坤程春振张梓浩赖钟雄**.一种龙眼快速遗传转化方法的建立[J].应用与环境生物学报,2020,26(04):1-9.[doi:10.19675/j.cnki.1006-687x.2019.11008] .
122.廖斌,徐小萍,李珊珊,梁梓豪,李汉生,林玉玲,赖钟雄*.苯丙氨酸和茉莉酸甲酯对龙眼胚性悬浮细胞柯里拉京积累的影响[J/OL].应用与环境生物学报:1-10[2020-02-28]. https://doi.org/ 10.19675/j.cnki.1006-687x.2019.06001.
123.刘蒲东张舒婷陈晓慧苏立遥姚德恒李汉生张梓浩,陈裕坤,林玉玲赖钟雄** .龙眼GRF家族全基因组鉴定及表达模式*[J].应用与环境生物学报,2020,26(02):1-15. [doi:10.19675/j.cnki.1006-687x.2019.06028].
124.陈旭, 王嘉毅, 张梓浩, 王天池, 赖钟雄, 林玉玲*.植物miR159家族成员分子特性及其进化规律研究[J]. 西北植物学报,2017(7):1286-1295
125.吴晓佩,谢礼洋,白玉,叶炜,林争春,张梓浩,陈裕坤,林玉玲,程春振,赖钟雄*. 文心兰铁氧还蛋白基因克隆定位及表达分析[J]. 西北植物学报, 2017, (01):48-58.
126曾友竞,林玉玲,崔彤彤,陈晓慧,徐小萍,张梓浩,程春振,陈裕坤,赖钟雄*. 龙眼miR171家族进化特性及其表达分析[J]. 西北植物学报,2017,(02):258-265.
127.徐小萍,赖瑞联,林玉玲,钟春水,田奇琳,赖钟雄*. 龙眼UGD6基因克隆及其表达特性分析[J].西北植物学报,2017,(04):636-645.
128.陈晓慧,白玉,李汉生,陈旭,林玉玲,赖钟雄*. 龙眼体胚发生过程中DCL家族启动子分析及时空表达[J]. 西北植物学报,2017,(37)10:1926-1933.
129.陈晓慧,白玉,Min Kyaw Thu,陈旭,李汉生,曾友竞,林玉玲*,赖钟雄*. 龙眼体胚发生过程中DCL家族成员分子特性、进化规律及表达分析[J]. 西北植物学报,2017(11)
130.李惠华,赖钟雄*,苏明华,林玉玲.龙眼生长素应答因子基因克隆及其在体胚中的表达分析. 西北植物学报,2012,(12)
131.冯莹,赖钟雄*.石斛兰转ACS反义基因抗性原球茎及转化植株的筛选与鉴定.西北植物学报,2013,(2)
132. 赖呈纯,赖钟雄*,林玉玲.龙眼体胚发生相关未知蛋白DIUP-3基因的克隆与表达分析. 西北植物学报,2014,34(2):0237-0242
133. 陈裕坤,林玉玲,田奇琳,林丽霞,赖瑞联,赖钟雄*.龙眼胚性愈伤组织DlGRAS4与DlGRAS54基因的克隆及表达分析. 西北植物学报,2014, 34(2):0215-0224;
134. 冯新,徐蕾,赖恭梯,谢晓清,林玉玲,赖钟雄*. 福州野生蕉FeSOD家族基因的克隆及在低温胁迫下的表达分析. 西北植物学报,2015,35(5):853-864;
135. 练从龙, 卢秉国, 赖钟雄*, 冯新, 林玉玲, 陈裕坤, 张梓浩. 荔枝古树胚性愈伤组织LcCu/Zn-SOD3基因启动子的克隆及功能验证.西北植物学报, 2015, 35(1):16~22;
136. 李然, 赖钟雄*, 赖呈纯, 方智振, 林玉玲, 刘生财, 陈裕坤, 张梓浩.龙眼松散型胚性愈伤组织发生过程中相关蛋白的表达分析.西北植物学报, 2015, 35(1):107~117;
137 张冬敏,田奇琳,杨曼曼,林玉玲,赖钟雄*.龙眼体细胞胚胎发生过程中DlWUS的克隆与表达分析. 西北植物学报, 2015,35(5):890~897;
138. 陈芳兰,林玉玲,陈裕坤,冯新,张梓浩,赖钟雄*. 三明野生蕉1,3-B葡聚糖酶基因克隆及其低温下处理后的表达分析。西北植物学报, 2015,35(9): 1709~1921;
139. 郝向阳,孙雪丽,刘范,项蕾蕾,王天池,赖钟雄,程春振.非洲菊4个POD基因的克隆及表达分析[J].西北植物学报, 2018, 38(10):1777-1786.
140 .赵春丽,王晓,潘君飞,彭丽云,赖钟雄,刘生财*.苋菜AtGAI基因克隆及表达分析[J].西北植物学报,2019, 39(02):199-209.
141.邓素芳,杨旸,赖钟雄*.朱砂根愈伤组织培养及悬浮细胞系建立.热带亚热带植物学报, 2012, 20(1)33-38.
142.吴洪明, 林宝明, 赖钟雄, 吕柳新, 林桂芳, & 潘东明, et al. (2004). 一个芸香科属间嫁接嵌合体的拉丁名称:+citroponcirus'hormish'. 热带亚热带植物学报,12(2), 177-181.
143.赖恭梯, 林玉玲, 赖钟雄*,等. 不同培养条件对勺叶茅膏菜试管苗矶松素含量的影响[J]. 热带亚热带植物学报, 2014(3):250-256.
144.陈义挺, 赖钟雄, 方智振, 蔡英卿, 林玉玲, & 李焕苓,赖钟雄*. (2014). 龙眼体胚cdc48基因的克隆、原核表达及其在体胚发生过程中的表达分析. 热带亚热带植物学报(3).
145.赖瑞联, 薛辉康, 钟春水, ;毛宇源;谢析颖;吕凯强;张梓浩;陈裕坤;林玉玲;赖钟雄*(2016). 闽江流域野生蕉(Musa itinerans)遗传多样性和遗传结构的ISSR分析[J]. 植物遗传资源学报,(2):217-225.10.13430/j.cnki.jpgr.2016.02.004
146.另有中文核心约200篇(略)。