Zhou, X., Zhang, Y., Sheng, Z.
, Manevski, K., Andersen, M. N., Han, S., Li, H. & Yang, Y. (2021).
Did water-saving irrigation protect water resources over the past 40 years? A global analysis based on water accounting framework.
Agricultural Water Management,
249, Article 106793.
https://doi.org/10.1016/j.agwat.2021.106793
Zhou, Y., Zhou, L., He, X., Jang, K. S., Yao, X., Hu, Y., Zhang, Y., Li, X., Spencer, R. G. M., Brookes, J. D.
& Jeppesen, E. (2019).
Variability in dissolved organic matter composition and biolability across gradients of glacial coverage and distance from glacial terminus on the Tibetan Plateau.
Environmental Science & Technology,
53(21), 12207-12217.
https://doi.org/10.1021/acs.est.9b03348
Zhou, L., Zhou, Y., Yao, X., Cai, J., Liu, X., Tang, X., Zhang, Y., Jang, K. S.
& Jeppesen, E. (2020).
Decreasing diversity of rare bacterial subcommunities relates to dissolved organic matter along permafrost thawing gradients.
Environment International,
134, Article 105330.
https://doi.org/10.1016/j.envint.2019.105330
Zhou, R., Yu, X., Li, X.
, Mendanha dos Santos, T., Rosenqvist, E. & Ottosen, C. O. (2020).
Combined high light and heat stress induced complex response in tomato with better leaf cooling after heat priming.
Plant Physiology and Biochemistry,
151, 1-9.
https://doi.org/10.1016/j.plaphy.2020.03.011
Zhou, R., Yu, X., Ottosen, C. O., Zhang, T., Wu, Z. & Zhao, T. (2020).
Unique miRNAs and their targets in tomato leaf responding to combined drought and heat stress.
BMC Plant Biology,
20, Article 107.
https://doi.org/10.1186/s12870-020-2313-x
Zhou, Y., Xiao, Q., Zhou, L., Jang, K. S., Zhang, Y., Zhang, M., Lee, X., Qin, B., Brookes, J. D.
, Davidson, T. A. & Jeppesen, E. (2020).
Are nitrous oxide emissions indirectly fueled by input of terrestrial dissolved organic nitrogen in a large eutrophic Lake Taihu, China? Science of the Total Environment,
722, Article 138005.
https://doi.org/10.1016/j.scitotenv.2020.138005
Zhou, K., Jensen, A. L., Bochtis, D., Nørremark, M., Kateris, D.
& Sørensen, C. G. (2020).
Metric map generation for autonomous field operations.
Agronomy,
10(1), Article 83.
https://doi.org/10.3390/agronomy10010083
Zhou, K., Bochtis, D., Jensen, A. L., Kateris, D.
& Sørensen, C. G. (2020).
Introduction of a new index of field operations efficiency.
Applied Sciences,
10(1), Article 329.
https://doi.org/10.3390/app10010329
Zhou, H.
, Chen, C., Wang, D.
, Arthur, E., Zhang, Z., Guo, Z., Peng, X. & Mooney, S. J. (2020).
Effect of long-term organic amendments on the full-range soil water retention characteristics of a Vertisol.
Soil and Tillage Research,
202, Article 104663.
https://doi.org/10.1016/j.still.2020.104663
Zhou, R., Yu, X., Wen, J.
, Jensen, N. B., Dos Santos, T. M., Wu, Z., Rosenqvist, E.
& Ottosen, C. O. (2020).
Interactive effects of elevated CO2 concentration and combined heat and drought stress on tomato photosynthesis.
BMC Plant Biology,
20, Article 260.
https://doi.org/10.1186/s12870-020-02457-6
Zhou, R., Yu, X., Huang, S., Song, X., Rosenqvist, E.
& Ottosen, C.-O. (2020).
Genotype-dependent responses of chickpea to high temperature and moderately increased light.
Plant Physiology and Biochemistry,
154, 353-359.
https://doi.org/10.1016/j.plaphy.2020.06.030
Zhou, R., Wan, H., Jiang, F., Li, X.
, Yu, X., Rosenqvist, E.
& Ottosen, C. O. (2020).
The Alleviation of Photosynthetic Damage in Tomato under Drought and Cold Stress by High CO2 and Melatonin.
International Journal of Molecular Sciences ,
21(15), 1-12. Article 5587.
https://doi.org/10.3390/ijms21155587
Zhou, Y., Liu, M., Zhou, L., Jang, K. S., Xu, H., Shi, K., Zhu, G., Liu, M., Deng, J., Zhang, Y., Spencer, R. G. M., Kothawala, D. N.
, Jeppesen, E. & Wu, F. (2020).
Rainstorm events shift the molecular composition and export of dissolved organic matter in a large drinking water reservoir in China: High frequency buoys and field observations.
Water Research,
187, Article 116471.
https://doi.org/10.1016/j.watres.2020.116471
Zhou, L., Zhou, Y., Tang, X., Zhang, Y., Jang, K. S., Székely, A. J.
& Jeppesen, E. (2021).
Resource aromaticity affects bacterial community successions in response to different sources of dissolved organic matter.
Water Research,
190, Article 116776.
https://doi.org/10.1016/j.watres.2020.116776
Zhou, L., Zhou, Y., Tang, X., Zhang, Y.
& Jeppesen, E. (2021).
Biodegradable dissolved organic carbon shapes bacterial community structures and co-occurrence patterns in large eutrophic Lake Taihu.
Journal of Environmental Sciences,
107, 205-217.
https://doi.org/10.1016/j.jes.2021.02.011
Zhou, Y., Yao, X., Zhou, L., Zhao, Z., Wang, X., Jang, K. S., Tian, W., Zhang, Y., Podgorski, D. C., Spencer, R. G. M., Kothawala, D. N.
, Jeppesen, E. & Wu, F. (2021).
How hydrology and anthropogenic activity influence the molecular composition and export of dissolved organic matter: Observations along a large river continuum.
Limnology and Oceanography,
66(5), 1730-1742.
https://doi.org/10.1002/lno.11716
Zhou, L., Zhou, Y., Tang, X., Zhang, Y., Zhu, G., Székely, A. J.
& Jeppesen, E. (2021).
Eutrophication alters bacterial co-occurrence networks and increases the importance of chromophoric dissolved organic matter composition.
Limnology and Oceanography,
66(6), 2319-2332.
https://doi.org/10.1002/lno.11756
Zhou, R., Mendanha dos Santos, T., Petersen, K. K., Ugilt Larsen, S., Smith, A. M. & Ottosen, C.-O. (2021).
Developing plant bioassays to evaluate the performance of sustainable growing media.
Acta Horticulturae,
1317, 351-358.
https://doi.org/10.17660/ActaHortic.2021.1317.41
Zhou, R., Cen, B., Jiang, F., Sun, M., Wen, J., Cao, X., Cui, S., Kong, L., Zhou, N., Wu, Z. & Wu, Z. (2022).
Reducing the halotolerance gap between sensitive and resistant tomato by spraying melatonin.
Agronomy,
12(1), Article 84.
https://doi.org/10.3390/agronomy12010084
Zhou, Y., Zhou, L., Zhang, Y., Zhu, G., Qin, B., Jang, K. S., Spencer, R. G. M., Kothawala, D. N.
, Jeppesen, E., Brookes, J. D. & Wu, F. (2022).
Unraveling the Role of Anthropogenic and Natural Drivers in Shaping the Molecular Composition and Biolability of Dissolved Organic Matter in Non-pristine Lakes.
Environmental Science & Technology,
56(7), 4655-4664.
https://doi.org/10.1021/acs.est.1c08003
Zhou, Q., Zhang, Y., Tao, J., Ye, L., Wang, H., Shan, K.
, Jeppesen, E. & Song, L. (2022).
Water depth and land-use intensity indirectly determine phytoplankton functional diversity and further regulate resource use efficiency at a multi-lake scale.
Science of the Total Environment,
834, Article 155303.
https://doi.org/10.1016/j.scitotenv.2022.155303
Zhou, Y., Zhang, Z., Bao, Z., Li, H., Lyu, Y., Zan, Y., Wu, Y., Cheng, L., Fang, Y., Wu, K., Zhang, J., Lyu, H., Lin, T., Gao, Q., Saha, S., Mueller, L., Fei, Z., Städler, T., Xu, S. ... Huang, S. (2022).
Graph pangenome captures missing heritability and empowers tomato breeding.
Nature,
606(7914), 527-534.
https://doi.org/10.1038/s41586-022-04808-9
Zhou, R., Yu, X., Song, X.
& Ottosen, C.-O. (2022).
Crop exposure to heat stress: responses in physiological, biochemical, and molecular levels. In F. Liu, X. Li, P. Hogy, D. Jiang, M. Brestic & B. Liu (Eds.),
Sustainable Crop Productivity and Quality under Climate Change: Responses of Crop Plants to Climate Change (pp. 43-57). Academic Press.
https://doi.org/10.1016/B978-0-323-85449-8.00001-4
Zhou, R., Yu, X., Song, X., Rosenqvist, E., Wan, H.
& Ottosen, C.-O. (2022).
Salinity, waterlogging, and elevated [CO2] interact to induce complex responses in cultivated and wild tomato.
Journal of Experimental Botany,
73(15), 5252-5263.
https://doi.org/10.1093/jxb/erac080
Zhou, Q., Le, Q. V., Meng, L., Yang, H., Gu, H., Yang, Y., Chen, X., Lam, S. S.
, Sonne, C. & Peng, W. (2022).
Environmental perspectives of textile waste, environmental pollution and recycling.
Environmental Technology Reviews,
11(1), 62-71.
https://doi.org/10.1080/21622515.2021.2017000
Zhou, Y., Pedersen, J. N., Pedersen, J. N., Jones, N. C., Hoffmann, S. V., Petersen, S. V., Pedersen, J. S., Perriman, A., Gao, R.
& Guo, Z. (2022).
Superanionic Solvent-Free Liquid Enzymes Exhibit Enhanced Structures and Activities.
Advanced Science,
9(32), Article 2202359.
https://doi.org/10.1002/advs.202202359
Zhou, R., Jiang, F., Niu, L., Song, X., Yu, L., Yang, Y. & Wu, Z. (2022).
Increase Crop Resilience to Heat Stress Using Omic Strategies.
Frontiers in Plant Science,
13, Article 891861.
https://doi.org/10.3389/fpls.2022.891861
Zhou, J., Guillaume, T., Wen, Y., Blagodatskaya, E., Shahbaz, M., Zeng, Z.
, Peixoto, L., Zang, H. & Kuzyakov, Y. (2022).
Frequent carbon input primes decomposition of decadal soil organic matter.
Soil Biology and Biochemistry,
175, Article 108850.
https://doi.org/10.1016/j.soilbio.2022.108850
Zhou, Q., Van Le, Q., Yang, H., Gu, H., Yang, Y.
, Sonne, C., Tabatabaei, M., Lam, S. S., Li, C., Chen, X. & Peng, W. (2022).
Sustainable Conversion of Agricultural Biomass into Renewable Energy Products: A Discussion.
BioResources,
17(2), 3489-3508.
https://doi.org/10.15376/biores.17.2.Zhou
Zhou, H.
, Peng-Li, D., Chen, J., Sun, D. & Wan, B. (2023).
Early life climate and adulthood mental health: how birth seasonality influences depressive symptoms in adults.
BMC Public Health,
23(1), Article 209.
https://doi.org/10.1186/s12889-023-15145-5
Zhou, Y., Chen, L.
, Zhou, L., Zhang, Y., Peng, K., Gong, Z., Jang, K. S., Spencer, R. G. M.
, Jeppesen, E., Brookes, J. D., Kothawala, D. N. & Wu, F. (2023).
Key factors driving dissolved organic matter composition and bioavailability in lakes situated along the Eastern Route of the South-to-North Water Diversion Project, China.
Water Research,
233, Article 119782.
https://doi.org/10.1016/j.watres.2023.119782
Zhou, J., Kong, Y., Wu, M., Shu, F., Wang, H., Ma, S., Li, Y.
& Jeppesen, E. (2023).
Effects of Nitrogen Input on Community Structure of the Denitrifying Bacteria with Nitrous Oxide Reductase Gene (nosZ I): a Long-Term Pond Experiment.
Microbial Ecology,
85(2), 454-464.
https://doi.org/10.1007/s00248-022-01971-4
Zhou, L., Zhou, Y., Zhang, Y., Wu, Y., Jang, K. S., Spencer, R. G. M., Brookes, J. D.
& Jeppesen, E. (2023).
Hydrological Controls on Dissolved Organic Matter Composition throughout the Aquatic Continuum of the Watershed of Selin Co, the Largest Lake on the Tibetan Plateau.
Environmental Science & Technology,
57(11), 4668-4678.
https://doi.org/10.1021/acs.est.2c08257
Zhou, R., Niu, L., Yin, J., Jiang, F., Wang, Y., Zhao, T., Wu, Z. & Zhu, W. (2023).
Differences in Physiological Responses of Two Tomato Genotypes to Combined Waterlogging and Cadmium Stresses.
Antioxidants,
12(6), Article 1205.
https://doi.org/10.3390/antiox12061205
Zhou, R., Jiang, F., Yu, X.
, Abdelhakim, L., Li, X., Rosenqvist, E.
, Ottosen, C. O. & Wu, Z. (2022).
Dominant and Priming Role of Waterlogging in Tomato at e[CO2] by Multivariate Analysis.
International Journal of Molecular Sciences ,
23(20), Article 12121.
https://doi.org/10.3390/ijms232012121
Zhou, R., Hyldgaard, B. N., Abdelhakim, L., Mendanha dos Santos, T., Driever, S.
, Cammarano, D., Rosenqvist, E.
& Ottosen, C.-O. (2024).
Interactive Effects of Temperature, Water Regime, and [CO2] on Wheats with Different Heat Susceptibilities.
Plants,
13 (6), Article 830.
https://doi.org/10.3390/plants13060830
Zhou, L., Wu, Y., Zhou, Y., Zhang, Y., Xu, H., Jang, K. S., Dolfing, J., Spencer, R. G. M.
& Jeppesen, E. (2024).
Terrestrial dissolved organic matter inputs drive the temporal dynamics of riverine bacterial ecological networks and assembly processes.
Water Research,
249, Article 120955.
https://doi.org/10.1016/j.watres.2023.120955
Zhou, R., Jiang, F., Liu, Y., Yu, X., Song, X., Wu, Z.
& Cammarano, D. (2024).
Environmental changes impact on vegetables physiology and nutrition – Gaps between vegetable and cereal crops.
Science of the Total Environment,
933, Article 173180.
https://doi.org/10.1016/j.scitotenv.2024.173180
Zhou, H., Clark, E., Guan, D., Lagarrigue, S.
, Fang, L., Cheng, H., Tuggle, C. K., Kapoor, M., Wang, Y., Giuffra, E. & Egidy, G. (2025).
Comparative Genomics and Epigenomics of Transcriptional Regulation.
Annual Review of Animal Biosciences,
13(1), 73-98.
https://doi.org/10.1146/annurev-animal-111523-102217
Zhou, N., Huang, J., Jiang, F., Hu, E., Song, X.
, Zhou, R. & Wu, Z. (2024).
SOS3-3 Enhances the Salt Tolerance of Tomato Plants by Regulating ROS Balance.
Agronomy,
14(12), Article 3044.
https://doi.org/10.3390/agronomy14123044
Zhou, R., Yu, X., Li, Y., Ji, Y., Song, X.
, Kristensen, H. L., Ottosen, C.-O., Jiang , F. & Wu, Z. (2025).
Elevated temperature has more pronounced effect on anthesis tomato plant than cadmium stress and reduced nitrogen supply.
Plant Physiology and Biochemistry,
220, Article 109498.
https://doi.org/10.1016/j.plaphy.2025.109498
Zhou, X., Sheng, Z.
, Manevski, K., Zhao, R., Zhang, Q., Yang, Y., Han, S., Liu, J. & Yang, Y. (2025).
Can system dynamics explain long-term hydrological behaviors? The role of endogenous linking structure.
Hydrology and Earth System Sciences,
29(1), 159-177.
https://doi.org/10.5194/hess-29-159-2025
Zhou, D., Mou, R., Wang, L., Liu, J., Tang, Y.
, Chen, J., Heděnec, P., Xu, Z., Tan, B., Cui, X., Li, H., Zhang, L., Xu, H., Xu, L., Wang, L., Liu, S., Li, J., Yuan, Y., You, C. & Kuzyakov, Y. (2025).
Fertilization effects on soil organic matter chemistry.
Soil and Tillage Research,
246, Article 106346.
https://doi.org/10.1016/j.still.2024.106346