其他教师
林钰涓 高级实验师
  1. 作者:环境学院
  2. 浏览:

 

Email:yujuan@glut.edu.cn


一、基本情况

林钰涓,博士,实验师。2015年6月毕业于湖北大学资源环境学院环境工程专业,获学士学位;2020年6月毕业于桂林理工大学环境科学与工程专业,获博士学位。2020年6月至今,在桂林理工大学环境科学与工程学院环境工程实验中心从事实验教学与科研工作。

研究方向

1植物逆境生理学 通过研究铬、硫氰化物(SCN)、氰酸钾、氰化物(CN)等污染下植物的生理响应机制和分子应答机制,为污染物的植物修复提供理论依据;

2环境毒理学 关注污染物对植物造成的毒性作用机制,并通过添加外源调控剂(气体信号分子、氨基酸、植物激素等)手段以期降低污染物对植物的毒害作用。

三、科研项目

1)国家自然科学基金青年基金项目脯氨酸驱动水稻细胞壁伸展蛋白-果胶交联降低毒性的机制研究(项目批准号:42207434,主持,结题

2)广西自然科学基金青年基金项目外源脯氨酸优化水稻细胞壁结构增加其对铬的阻控力和耐受性的分子机制(批准编号:2021GXNSFBA075041,主持,结题

3国家自然科学基金地区项目水稻降解外源氰化物(CN)生化反应热区定位及靶向调控CN降解途径的机理研究(批准编号:42277361,参与,在

4国家自然科学基金地区项目外源脯氨酸导根际-根内多界面Cr(VI)还原固定与区室解毒协同网络及跨尺度调控机制(批准编号:42567038,参与,在

5)国家自然科学基金面上项目外源氰化物(CN)作为植物生长辅助氮源对水稻幼苗脯氨酸合成和代谢的影响(批准编号:41877493,参与,结题

6)国家自然科学基金地区项目水稻幼苗对外源硫氰化物污染的吸收、转化和降解机理的研究(批准编号:41761094,参与,结题

7)广西自然科学基金重点项目铬胁迫水稻幼苗脯氨酸合成与代谢过程中电子传递关键基因的响应机制研究(批准编号:2018GXNSFDA281024,参与,结题

8)广西自然科学基金青年基金项目硫化氢与活性氧信号交叉对话提高水稻对硫氰化物(SCN)胁迫的抗性研究(批准编号:2022GXNSFBA035550,参与,结题

9广西自然科学基金面上项目生物负载氧化铁导水稻根表铁膜阻控砷的影响机制研究(批准编号:2025GXNSFAA069755,参与,在

四、主要成果

(一)科研论文

[1] Hui-Ling Chen, Yu-Xi Feng*, Yu-Juan Lin*, Meng-Hua Chen, Yan-Hong Li, Yan-Peng Liang. Exogenous hydrogen sulfide enhances photosynthesis under thiocyanate stress by regulating rubisco energy metabolism and activation in rice seedlings. Int. J. Mol. Sci. 2026, 27(4):1898.

[2] Yu-Xi Feng, Ben-Tao Yao, Qin Zhang, Cheng-Zhi Li, Peng Tian, Yan-Hong Li, Kun Dong, Yu-Juan Lin*. Proline drives cross-linking between extensins and pectin in the cell wall to combat hexavalent chromium stress in rice plants. Chem. Biol. Technol. Agric. 2025, 12: 121.

[3] Yu-Xi Feng*, Peng Tian, Cheng-Zhi Li, Xiao-Dong Hu, Yu-Juan Lin*. Elucidating the intricacies of the H2S signaling pathway in gasotransmitters: Highlighting the regulation of plant thiocyanate detoxification pathways. Ecotox. Environ. Safe., 2024, 276:116307.

[4] Yu-Juan Lin, Ben-Tao Yao, Qin Zhang, Yu-Xi Feng, Xiang Lei. Biochemical insights into proline metabolism and its contribution to the endurant cell wall structure under metal stress. Ecotox. Environ. Safe., 2024, 282:116725.

[5] Abid Ullah#, Yu-Juan Lin#, Peng Tian, Xiao-Zhang Yu. Exogenous proline regulates pectin demethylation by rescuing pectin methylesterase functioning of cell wall from Cr(VI) toxicity in rice plants. Chem. Biolo. Technol. Ag., 2024, 11: 80.

[6] Yuxi Feng#, Yujuan Lin#, Peng Tian, Xiao-Zhang Yu. Proline interacts with Ca2+-dependent signaling to enhance chromium tolerance in rice by manipulating nitrate reductase and sucrose phosphate synthase. Int. J. Biol. Macromol., 2023, 253: 126655.

[7] Yu-Juan Lin, Xing-Hui Feng, Yu-Xi Feng. Regulation of enzymatic and non-enzymatic antioxidants in rice seedlings against chromium stress through sodium hydrosulfide and sodium nitroprusside. Environ. Sci. Pollut. R., 2023, 30: 25851–25862.

[8] Yu-Juan Lin, Yu-Xi Feng, Qing Zhang, Xiao-Zhang Yu. Proline-mediated modulation on DNA repair pathway in rice seedlings under chromium stress by integrating gene chip and co-expression network analysis. Ecotoxicology, 2022, 31:1266–1275.

[9] Yu-Juan Lin#, Yu-Xi Feng#, Xiao-Zhang Yu. The importance of utilizing nitrate (NO3) over ammonium (NH4+) as nitrogen source during detoxification of exogenous thiocyanate (SCN-) in Oryza sativaEnviron. Sci. Pollut. R., 2022, 29:5622–5633.

[10] Yu-Juan Lin#, Yu-Xi Feng#, Yan-Hong Li, Guo Yu, Xiao-Zhang Yu. Fuzzy synthetic evaluation of the impact of plant growth regulators on the root phenotype traits of rice seedlings under thiocyanate stress. Plant Physiol. Bioch., 2021, 158:182–189.

[11] Yu-Xi Feng#, Yu-Juan Lin#, Cheng-Zhi Li, Peng Tian, Stefan Trapp, Xiao-Zhang Yu. Integration of RT-qPCR analysis and grey situation decision-making model for evaluating the effects of plant growth regulators on the gene expression in rice seedlings under thiocyanate exposure. Sci. Total Environ., 2021, 783:146805.

[12] Yu-Juan Lin, Xiao-Zhang Yu, Yan-Hong Li, Li Yang. Inhibition of the mitochondrial respiratory components (Complex I and Complex III) as stimuli to induce oxidative damage in Oryza sativa L. under thiocyanate exposure. Chemosphere, 2020, 243:125472.

[13] Yu-Juan Lin, Xiao-Zhang Yu, Qing Zhang. Transcriptome analysis of Oryza sativa in responses to different concentrations of thiocyanate. Environ. Sci. Pollut. R., 2019, 26:11696–11709.

(二)教改论文

[1]李艳红,林钰涓,宋晓红.环境工程微生物学实验课程思政建设的探索和实践[J]. 大学, 2022, (18): 109-112.

[2]林钰涓,于晓章,李艳红,梁延鹏,.“植物生理学实验课程创新教学模式探讨——适用于环境类专业硕士研究生 [J]. 教育教学论坛, 2022, (03): 61-64.

)专利

1张庆, 于晓章, 林钰涓, 楚云鹏, 雷生煜, 杨丽, 凌钦龙, 梁延鹏. 一种水稻幼苗组织中L-半胱氨酸的提取及其检测方法, 发明专利,授权号:CN109824561B

2于晓章, 林钰涓. 去除植物叶片中总叶绿素干扰H2S含量测定的方法,发明专利,授权号:CN 109916842B

3于晓章, 林钰涓. 去除水样氰化物含量测定过程中铵根离子对显色反应干扰的溶液及方法,发明专利,授权号:CN110261376B

4于晓章, 冯宇希, 林钰涓. 基于根系发育参数的污染暴露下化学调控剂的筛选方法,发明专利,授权号:CN 111418383B

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