职称:校聘副教授
职务:
邮箱:jingzhang@njfu.edu.cn
电话:
张晶,理学博士,南京林业大学生命科学学院教师,主要研究方向为植物抗逆信号转导。
工作经历:
2025.03-至今 南京林业大学生命科学学院 校聘副教授
1. Ge Z, Wu T, Lin Z, Lai S, Chen G, Xiao L, Zhang J, Zhang K, Zhou H, Xie Y. The oxidation of ABI4 by RBOHD-derived reactive oxygen species integrates redox signaling into abscisic-acid and drought-stress responses. Abiotech, 2026, 100037.
2. Zhang J, Li H, Xie Y. Soybean nodulation: Persulfidation-mediated redox regulation by a rhizobial enzyme[J]. Molecular Plant, 2026, 19(2): 233-235.
3. Zhang J, Xie Y. Integrating Redox and Hormone Signalling: A Central Role for Hydrogen Sulfide in Watermelon Immunity Against FON2[J]. Plant, cell & environment, 2025, 48(10): 7621-7623.
4. Chen J†, Zhang J† , Liu Y, Zhang K, Zhu F, Xie Y. Advances in the biosynthetic regulation and functional mechanisms of glycine betaine for enhancing plant stress resilience[J]. International Journal of Molecular Sciences, 2025, 26(16): 7971.
5. Zhang J, Li H, Xie Y. A paradigm shift in stomatal regulation: H2S as a persulfidation-driven modulator of potassium channels[J]. Journal of integrative plant biology, 2025, 67(6): 1433-1434.
6. Zhang J, Zhou M, Xie Y. A microbiome-epigenome axis: SRB-derived H2S suppresses OsHDA710 to activate drought responses in rice[J]. Journal of Integrative Plant Biology, 2025.
7. Zhang J, Aroca A, Hervás M, et al. Analysis of sulfide signaling in rice highlights specific drought responses[J]. Journal of Experimental Botany, 2024, 75(16): 5130-5145.
8. Zhou M, Zhang J, Zhou H, et al. Hydrogen sulfide-linked persulfidation maintains protein stability of ABSCISIC ACID-INSENSITIVE 4 and delays seed germination[J]. International Journal of Molecular Sciences, 2022, 23(3): 1389.
9. Zhang J, Corpas F J, Li J, Xie Y. Hydrogen sulfide and reactive oxygen species, antioxidant defense, abiotic stress tolerance mechanisms in plants[J]. International Journal of Molecular Sciences, 2022, 23(16): 9463.
10. Zhou M†, Zhang J†, Shen J†,Zhou H† et al. Hydrogen sulfide-linked persulfidation of ABSCISIC INSENSITIVE 4 controls Arabidopsis ABA responses through the transactivation of mitogen-activated protein kinase kinase kinase 18[J]. Molecular Plant, 2021, 14: 921-936.
11. Zhang J†, Zhou M†, Zhou H†, et al. Hydrogen sulfide, a signaling molecule in plant stress responses[J]. Journal of Integrative Plant Biology, 2021, 63(1): 146-160.
12. Zhang J†, Zhou H†, Zhou M†, et al. The coordination of guard-cell autonomous ABA synthesis and DES1 function in situ regulates plant water deficit responses[J]. Journal of Advanced Research, 2021, 27: 191-197.
13. Aroca A, Zhang J, Xie Y, et al. Hydrogen sulfide signaling in plant adaptations to adverse conditions: molecular mechanisms[J]. Journal of Experimental Botany, 2021, 72(16): 5893-5904.
14. Shen J†, Zhang J†, Zhou M†, Zhou H†, et al. Persulfidation-based modification of cysteine desulfhydrase and the NADPH oxidase RBOHD controls guard cell abscisic acid signaling[J]. The Plant Cell, 2020, 32(4): 1000-1017.
15. Zhang J, Zhou M, Ge Z, et al. Abscisic acid-triggered guard cell l-cysteine desulfhydrase function and in situ hydrogen sulfide production contributes to heme oxygenase-modulated stomatal closure[J]. Plant, Cell & Environment. 2020;43:624–636.
16. Zhou H, Chen Y, Zhai F, Zhang J, Zhang F, Yuan X, Xie Y. (2020). Hydrogen sulfide promotes rice drought tolerance via reestablishing redox homeostasis and activation of ABA biosynthesis and signaling[J]. Plant Physiology and Biochemistry, 155, 213-220.
17. Zhao D†, Zhang J†, Zhou M, et al. Current approaches for detection of hydrogen sulfide and persulfidation in biological systems[J]. Plant Physiology and Biochemistry, 2020, 155: 367-373.
18. Zhou H, Zhang J, Shen J, et al. Redox-based protein persulfidation in guard cell ABA signaling[J]. Plant signaling & behavior, 2020, 15(5): 1741987.
19. Guo H, Zhou H, Zhang J, et al. l‐cysteine desulfhydrase‐related H2S production is involved in OsSE5‐promoted ammonium tolerance in roots of Oryza sativa[J]. Plant, Cell & Environment, 2017, 40(9): 1777-1790.
† : equal first author