◆发表论文
发表的部分论文:
【1】廖进秋, 杨瑞武, 周永红, 辻本壽. 波兰小麦和矮兰麦45S rDNA和5S rDNA基因位点FISH分析. 遗传, 2007, 29(4):449-454.
【2】廖进秋, 康厚杨, 杨瑞武, 汤加勇, 周永红. 中国春ph2b突变体×华山新麦草F1自交和回交一代细胞遗传学研究. 西北植物学报, 2007, 27(3):0442-0448.
【3】Liao JQ, Fan X, Zhang HQ, Sha LN, Kang HY, Wang XL, Liu J, Zhou YH. Molecular phylogeny of RNA polymerase II gene reveals the relationships of tetraploid species with St genome (Triticeae: Poaceae). Biochemical Systematics and Ecology, 2011, 39: 609-618.
【4】Hossain MS, Liao JQ, James E, Sato S, Tabata S, Malolepszy A, Stougaard J, Ross L, Szczyglowski K. Lotus japonicus ARPC1 is required for rhizobial infection. Plant physiology, 2012. 160(2), 917-928.
【5】Liao JQ, Singh S, Hossain MS, Andersen SU, Ross L, Bonetta D, Zhou YH, Sato S, Tabata S, Stougaard J, Szczyglowski K, Parniske M. Negative regulation of CCaMK is essential for symbiotic infection. The Plant Journal, 2012, 72(4): 572-584.
【6】Liao JQ, Ross L, Fan X, Sha LN, Kang HY, Zhang HQ, Wang Y, Liu J, Wang XL, Yu XF, Yang RW, Ding CB, Zhang L, Zhou YH. Phylogeny and maternal donors of the tetraploid species with St genome (Poaceae: Triticeae) inferred from CoxII and ITS sequences. Biochemical Systematics and Ecology, 2013, 50:277-285.
【7】Liao JQ, Deng JB, Qin ZZ, Tang JY, Shu MR, Ding CB, Liu J, Hu C, Yuan M, Huang Y, Yang RW, Zhou YH. Genome-wide identification and analyses of calmodulins and calmodulin-like proteins in Lotus japonicas. Frontiers in Plant Science, 2017, 8:1-12.
【8】舒茂荣, 秦宗志, 陈杨晗, 汤加勇, 廖进秋. 百脉根钙调素基因LjCaM4的3’-RACE克隆及其表达量分析. 基因组学与应用生物学, 2017, 36(8): 3057-3064. (通讯作者)
【9】秦宗志, 刘鲡, 舒茂荣, 陈杨晗, 蒋芩, 周莉君, 刘静, 廖进秋. 百脉根钙调素蛋白(LjCaM3)基因的克隆及表达分析. 分子植物育种. 2018, 16(2):415-422.(通讯作者)
【10】刘鲡, 陈杨晗, 周莉君, 刘静, 林立金, 廖明安, 廖进秋. 无瓣蔊菜对镉的积累特性研究. 核农学报. 2018, 32(5):1009-1015.(通讯作者)
【11】Liu L, Shang YK, Li L, Chen YH, Qin ZZ, Zhou LJ, Yuan M, Ding CB, Liu J, Huang Y, Yang RW, Zhou YH, Liao JQ. Cadmium stress in Dongying wild soybean seedlings: growth, Cd accumulation and photosynthesis. Photosynthetica, 2018, 56(4): 1346-1352. (通讯作者)
【12】唐学博, 王亚楠, 尚玉坤, 秦宗志, 陈杨晗, 刘鲡, 廖进秋. 百脉根LjCaM4启动子的克隆与功能分析. 分子植物育种. 2021, 6(19):1-9. (通讯作者)
【13】Liao JQ, Huang XH, Jiang YY, Pu X, Zhang YS, Deng XX, Yang RW, Zhang L. Identification of Salvia miltiorrhiza Bunge with high and low cadmium accumulation and insight into the mechanisms of cadmium accumulation. Chemosphere, 2022, 307: 135978.
【14】Yu HM, Zhong MZ, Li KX, Jiang YY, Liao JQ, Yang RW, Wang L, Lin L, Yin JJ, Zeng J, Chai SY, Zhou YH, Zhang L. Tanshinone IIA alleviates the mitochondrial toxicity of Salvia miltiorrhiza Bunge seedlings by regulating the transport capacity of ATP-binding cassette transporter to doxycycline. Environmental and Experimental Botany, 2022, 204: 105091.
【15】Liao JQ, Zhang ZZ, Shang YK, Jiang YY, Su ZX, Deng XX, Pu X, Yang RW, Zhang L. Anatomy and comparative transcriptome reveal the mechanism of male sterility in Salvia miltiorrhiza. International Journal of Molecular Sciences, 2023, 24: 10259.
【16】Yu HM, Zhang L, Yang RW, Jiang YY, Liao JQ, Chai SY, Deng XX, Wang L, Pu X, Zhang YS, Zhang SL, Li QM, Zhang Li. Integrated multiomics and synergistic functional network revealed the mechanism in the tolerance of different ecotypes of Salvia miltiorrhiza Bge. to doxycycline pollution. Environmental Science & Technology, 2023, 57, 9603-9614.
【17】Chai SY, Li KX, Deng XX, Wang L, Jiang YY, Liao JQ, Yang RW, Zhang L. Genome-wide analysis of the MADS-box gene family and expression analysis during anther development in Salvia miltiorrhiza. International Journal of Molecular Sciences, 2023, 24: 10937.
【18】Huang Y, Li JH, Huang TT, Bai X, Li Q, Gong YH, Hoy R, He ZQ, Liu J, Liao JQ, Yuan M, Ding CB, Li X, Cai Y. Homeostasis of Arabidopsis R protein RPS2 is negatively regulated by the RING-type E3 ligase MUSE16. Journal of Experimental Botany, 2023, 74(6): 2160-2172.
【19】Zhong MZ, Zhang L, Yu HM, Liao JQ, Jiang YY, Chai SY, Yang RW, Wang L, Deng XX, Zhang SL, Li QM, Zhang L. Identification and characterization of a novel tyrosine aminotransferase gene (SmTAT3-2) promotes the biosynthesis of phenolic acids in Salvia miltiorrhiza Bunge. International Journal of Biological Macromolecules, 2024, 254: 127858.
【20】Zhong MZ, Yu HM, Jiang YY, Liao JQ, Chai SY, Wang L, Yang RW, Zhou YH, Wang Y, Zeng J, Kang HY, Zhang L. A novel mutidrug and toxic compound extrusion (MATE) gene SmMATE1 from Salvia miltiorrhiza Bunge, is involved in tetracycline induced mitochondrial toxicity adaptation synergically with salvianolic acid B. Industrial Crops & Products, 2024, 209: 117939.
【21】Chai SY, Yang ZY, Deng XX, Wang L, Jiang YY, Liao JQ, Yang RW, Wang XX, Zhang L. ZnO quantum dots alleviate salt stress in Salvia miltiorrhiza by enhancing growth, scavenging reactive oxygen species, and modulating stress-responsive genes. Environmental Pollution, 2024, 344: 123363.
【22】Pu X, Zhang JH, He JW, Ai ZH, He XX, Zhou XJ, Tong SY, Dai XY, Wu QQ, Hu JY, He JS, Wang HG, Wang W, Liao JQ, Zhang L. Discovery of a novel flavonol O-methyltransferase possessing sequential 4′- and 7-O-methyltransferase activity from Camptotheca acuminata Decne. International Journal of Biological Macromolecules, 2024, 266: 131381.
【23】Chai SY, Deng WH, Yang JP, Guo LF, Wang L, Jiang YY, Liao JQ, Deng XX, Yang RW, Zhang YS, Lu ZW, Wang XX, Zhang L. Physiological and molecular mechanisms of ZnO quantum dots mitigating cadmium stress in Salvia miltiorrhiza. Journal of Hazardous Materials 2024, 470: 134245.