论文专著
(1)Lingyu Yang#, Shen Ding#, Peiqi Shu , Yao Cheng, Xin Chen, Jiangting Wu, Chaofeng Ma, Wenxu Ma, Jing Zhou, Shurong Deng, Zhi-Bin Luo*, Wenguang Shi*. Inoculation with Paxillus involutus enhances lead translocation from the roots to the aerial tissues by promoting pectin degradation in the roots of Populus × canescens. Industrial Crops & Products, 2026, 242: 122947.
(2)Lingyu Yang#, Shen Ding#, Xin Chen, Yao Cheng, Peiqi Shu, Jiangting Wu, Chaofeng Ma, Payam Fayyaz, Jing Zhou, Shurong Deng, Zhi-Bin Luo*, Wenguang Shi*. High iron supply enhances cadmium accumulation in the aerial tissues by remodeling the root cell walls in Populus cathayana. Industrial Crops & Products, 2025, 228: 120875.
(3)Jiangting Wu1#, Shurong Deng#, Yang Wang, Chenlin Jia, Jia Wei, Mengyan Zhou, Dongyue Zhu, Zhuorong Li, Payam Fayyaz, Zhi‐Bin Luo*, Jing Zhou*, Wenguang Shi1*. The PtobZIP55–PtoMYB170 module regulates the wood anatomical and chemical properties of Populus tomentosa in acclimation to low nitrogen availability. Journal of Integrative Plant Biology, 2025, 67: 117-134.
(4)Xin Chen#, Yuhong Zhang#, Yao Cheng#, Wenjian Yu, Lingyu Yang, Peiqi Shu, Jing Zhou, Payam Fayyaz, Zhi-Bin Luo*, Shurong Deng*, Wenguang Shi*. PcWRKY1 Represses Transcription of Yellow Stripe-Like 3 (PcYSL3) to Negatively Regulate Radial Cadmium Transport in Poplar Stems. Advanced Science, 2025, 12: 2405492.
(5)杨玲玉, 石文广*, 罗志斌. 外生菌根真菌卷边桩菇促进宿主灰杨氮吸收利用特征. 林业科学, 60(9): 69-79.
(6)Yao Cheng#, Xin Chen#, Wenzhe Liu, Lingyu Yang, Jiangting Wu, Yang Wang, Wenjian Yu, Jing Zhou, Payam Fayyaz, Zhi-Bin Luo*, Shurong Deng*, Wenguang Shi*. Homolog of Human placenta-specific gene 8, PcPLAC8-10, enhances cadmium uptake by Populus roots. Journal of Hazardous Materials, 2023, 460: 132349.
(7)Wenjian Yu#, Shurong Deng#, Xin Chen, Yao Cheng, Zhuorong Li, Jiangting Wu, Dongyue Zhu, Jing Zhou, Yuan Cao, Payam Fayyaz, Wenguang Shi*, Zhibin Luo*. PcNRAMP1 Enhances Cadmium Uptake and Accumulation in Populus × canescens. International Journal of Molecular Science, 2022, 23: 7593.
(8)Wenguang Shi*, Jing Li, Donxu Kan, Wenjian Yu, Xin Chen, Yuhong Zhang, Chaofeng Ma, Shurong Deng, Jing Zhou, Payam Fayyaz, Zhi-Bin Luo. Sulfur metabolism, organic acid accumulation and phytohormone regulation are crucial physiological processes modulating the different tolerance to Pb stress of two contrasting poplars. Tree Physiology, 2022, 42(9): 1799-1811.
(9)Wenguang Shi, Jing Zhou, Jing Li, Chaofeng Ma, Yuhong Zhang, Shurong Deng, Wenjian Yu, Zhi-Bin Luo*. Lead exposure-induced defense responses result in low lead
translocation from the roots to aerial tissues of two contrasting poplar species. Environmental Pollution, 2021, 271: 116346.
(10)石文广, 李靖, 张玉红, 雷静品, 罗志斌*. 7 种杨树铅抗性和积累能力的比较研究. 南京林业大学学报(自然科学版), 2021, 45(3): 61-70.
(11)Wenguang Shi#, Wenzhe Liu#, Chaofeng Ma#, Yuhong Zhang#, Shen Ding, Wenjian Yu, Shurong Deng, Jing Zhou, Hong Li, Zhi-Bin Luo*. Dissecting MicroRNA–mRNA Regulatory Networks Underlying Sulfur Assimilation and Cadmium Accumulation in Poplar Leaves. Plant and Cell Physiology, 2020, 61(9): 1614-1630.
(12)Wenguang Shi, Wenzhe Liu, Wenjian Yu, Yuhong Zhang, Shen Ding, Hong Li, Tanja Mrak, Hojka Kraigher, Zhi-Bin Luo*. Abscisic acid enhances lead translocation from the roots to the leaves and alleviates its toxicity in Populus × canescens. Journal of Hazardous Materials, 2019, 362: 275-285.
(13)Wenguang Shi, Yuhong Zhang, Shaoliang Chen, Andrea Polle, Heinz Rennenberg, Zhi‐Bin Luo*. Physiological and molecular mechanisms of heavy metal
accumulation in nonmycorrhizal versus mycorrhizal plants. Plant, Cell & Environment, 2019, 42: 1087-1103.
(14)Jingbo Jia#, Jing Zhou#, Wenguang Shi#, Xu Cao, Jie Luo, Andrea Polle, Zhi-Bin Luo*. Comparative transcriptomic analysis reveals the roles of overlapping heat-/drought-responsive genes in poplars exposed to high temperature and drought. Scientific Reports, 2017, 7: 43215.
(15)Wenguang Shi, Hong Li, Tong-Xian Liu, Andrea Polle, Chang-Hui Peng, Zhi-Bin Luo*. Exogenous abscisic acid alleviates zinc uptake and accumulation in Populus × canescens exposed to excess zinc. Plant, Cell & Environment, 2015, 38: 207-223.