目录
2013-2018 华南农业大学,资源环境学院,副研究员
2009-2011 美国Cornell大学,植物科学系,博士后
2007 美国Rutgers大学,生命与植物病理学院,访问学生
2006 香港大学,动物学系,访问学生
2003/09 -2006/07 华南农业大学,植物营养系,作物遗传育种专业,硕士,导师:严小龙教授
1999/09 -2003/07 华南农业大学,农学系,农学专业,学士
2. 国家自然科学基金(青年基金),磷、铝和低pH值对大豆苹果酸转运子GmALMT1的分子调控机理,主持
3. 教育部博士点青年教师基金,低磷和铝毒协同调控大豆苹果酸分泌的分子机制,主持
4. 国家重大基础研究项目(973项目),优良根构型建成与土壤养分活化的遗传与分子机制(子课题),主持
2. Lin, Y., Liu, G., Liu, P., Chen, Q., Guo, X., Lu, X., Cai, Z., Sun, L., Liu, J., Chen, K., Liu, G., Tian, J*., & Liang, C*. (2024). Border-like cell formation mediated by SgPG1 confers aluminum resistance in Stylosanthes guianensis. The Plant Journal, 120, 1605–1624.
3. Liu, G., Li, D., Mai, H., Lin, X., Lu, X., Chen, K., Wang, R., Riaz, M., Tian, J*., & Liang, C*. (2024). GmSTOP1-3 regulates flavonoid synthesis to reduce ROS accumulation and enhance aluminum tolerance in soybean. Journal of Hazardous Materials, 480, 136074.
4. Zhang, Z., Mo, X., Zhao, H., Lu, X., Fan, S., Huang, X., Mai, H., Liao, H., Zhang, Y., Liang, C*., & Tian, J*. (2024). Crystal structure and function of a phosphate starvation responsive protein phosphatase, GmHAD1-2 regulating soybean root development and flavonoid metabolism. New Phytologist, 244(6), 2396-2412.
5. Wang, T., Chen, Q., Liang, Q., Zhao, Q., Lu, X., Tian, J., Guan, Z., Liu, L., Li, J., Zhou, M., Tian, J*., & Liang, C*. (2024). Bacillus suppresses nitrogen efficiency of soybean-rhizobium symbiosis through regulation of nitrogen-related transcriptional and microbial patterns. Plant Cell & Environment.
6. Zhu, S., Guo, Q., Xue, Y., Lu, X., Lai, T., Liang, C*., & Tian, J*. (2023). Impaired glycosylation of GmPAP15a, a root-associated purple acid phosphatase, inhibits extracellular phytate-P utilization in soybean. Plant Cell & Environment.
7. Xie, B., Chen, Q., Lu, X., Chen, K., Yang, Y., Tian, J*., & Liang, C*. (2023). Proton exudation mediated by GmVP2 showed comprehensive impacts on plant growth, P-remobilization and rhizosphere microbial community. Journal of Experimental Botany, 74(3), 1140-1156.
8. Zhuang, Q., Xue, Y., Yao, Z., Zhu, S., Liang, C*., Liao, H., & Tian, J*. (2021). Phosphate starvation responsive GmSPX5 mediates nodule growth through interaction with GmNF-YC4 in soybean (Glycine max). The Plant Journal, 108(5), 1422-1438.
9. Wu, W., Lin, Y., Liu, P., Chen, Q., Wang, Y., Tian, J., Sun, L., & Liang, C.* (2018). Association of extracellular dNTP utilization with a GmPAP1-like protein identified in cell wall proteomic analysis of soybean roots. Journal of Experimental Botany, 69(3), 603-617.
10. Peng, W., Wu, W., Peng, J., Li, J., Lin, Y., Wang, Y., Tian, J., Sun, L., Liang, C.*, & Liao, H. (2018). Characterization of the soybean GmALMT family genes and the function of GmALMT5 in response to phosphate starvation. Journal of Integrative Plant Biology, 60(3), 216-231.
11. Sun#, L, Liang#, C, Chen, Z, Liu, P., Tian, J., Liu, G, & Liao, H. (2014). Superior Al tolerance of Stylosanthes is mainly achieved by malate synthesis through an Al-enhanced malic enzyme, SgME1. New Phytologist, 202(1), 209-219.
12. Liang, C, Wang, J. X., Zhao, J., Tian, J., & Liao, H. (2014). Control of phosphate homeostasis through gene regulation in crops. Current Opinion in Plant Biology, 21, 59-66.
13. Liang, C, Piñeros, M., Tian, J., Yao, Z. F., Sun, L, Liu, J, Shaff, J., Coluccio, A., Kochian, L., & Liao, H. (2013). Low pH, aluminum and phosphorus coordinately regulate malate exudation through GmALMT1 to improve soybean adaptation to acid soils. Plant Physiology, 161(3), 1347-1361.
14. Liang, C, Chen, Z., Yao, Z., Tian, J.*, & Liao, H. (2012). Characterization of two putative protein phosphatase genes and their involvement in phosphorus efficiency in Phaseolus vulgaris. Journal of Integrative Plant Biology, 54(6), 400-411.
15. Liang, C, Tian, J., Lam, H, Lim, B, Yan, X, & Liao, H. (2010). Biochemical and molecular characterization of PvPAP3, a novel purple acid phosphatase isolated from common bean enhancing extracellular ATP utilization. Plant Physiology, 152(2), 854-865.
2)一种柱花草多聚半乳糖醛酸酶基因SgPG1及其应用.梁翠月;林雁;郭雪琼;田江;陈康. ZL 2022 1 0061364.5.
3)GmBBE-like43基因在调控植物适应低磷和酸铝胁迫及促生长中的应用。梁翠月;陈倩倩;田江;李季肤;刘国选;陆星;陈康。专利号:ZL 2022 1 0609252.9。
4)一株高效固氮慢生根瘤菌菌株及其应用。发明人:梁翠月、管子迪、陆星。专利号:ZL202110502433.7。
5)一株耐盐碱地固氮大豆根瘤菌及其应用。发明人:梁翠月、陈倩倩、陆星、谢宝星、刘国选、管子迪、田江、田纪辉。专利号:ZL202210193179.1。
6)一种酸性磷酸酶蛋白基因GmPAP1-like及其应用。发明人:梁翠月、吴炜炜、林雁、陈倩倩。专利号:ZL201711107169.7。
7)一种用于研究植物根系与环境相互作用的无菌滤纸栽培方法。发明人:梁翠月、吴炜炜、田江、赵彤。专利号:ZL201810490155.6。
8)一种用于植物根系二维原位动态观察和测定的植物栽培装置。发明人: 梁翠月、陈倩倩、赵彤、吴炜炜、田江。专利号:ZL201820853744. 1。
9)GmAlMT1调控大豆耐酸铝毒害的功能及应用。发明人:梁翠月,田江,廖红。专利号:ZL 201210302082.6。