姚致远,男,西北农林科技大学与加拿大University of Saskatchewan联合培养博士。现为中国科学院成都山地灾害与环境研究所副研究员,长期从事农田生态系统碳氮循环机制及土壤健康保育方面的科研工作。主要研究方向包括但不限于:(1)土壤微食物网与碳氮循环机制;(2)土壤健康演变的生物学基础;(3)气候变化条件下的土壤固碳潜力。相关研究成果在Agriculture Ecosystems & Environment, Soil & Tillage Research, Geoderma, Catena和Journal of Environmental Management等国际高水平期刊发表论文20余篇。主持国家自然科学基青年项目(C类)、四川省自然科学基金面上项目、中国科学院特别研究助理资助以及四川省博士后基金等项目,并担任国际学术期刊 Nitrogen Cycling 的青年编委。
1.土壤微食物网与碳氮循环机制
2.土壤健康演变的生物学基础
3.气候变化条件下的土壤固碳潜力
国际植物营养研究所学者奖(2018年,排名第一)
1. Yao, Z., Hu, H., Wang, T., Wang, X., Li, Y., Sun, X., Adl, S., Yan, F., Zhang, Y., Zhu, B., 2025. Key functional guilds with high trophic level organisms in soil are vital contributors to greenhouse gas emissions from cropland. Agriculture, Ecosystems & Environment, 381, p.109441. (中国科学院农林科学一区TOP,IF=6.4,第一作者)
2. Yao, Z., Xu, Q., Cao, W., Li Liu, D., Fu, L., Zhang, D., Adl, S., Gao, Y., 2025. Capacity and key drivers for reducing the environmental costs of crop production under future climate scenarios by using green manure. Journal of Environmental Sciences, https://doi.org/10.1016/j.jes.2025.06.046. (中国科学院环境科学与生态学二区,IF=6.3,第一作者)
3. Yao, Z., Hu, H., Li, Y., Sun, X., Adl, S., Wang, X., Zhang, Y., Zhu, B., 2024. Soil micro-food webs at aggregate scale are associated with soil nitrogen supply and crop yield. Geoderma, 442, p.116801. (中国科学院农林科学一区TOP,IF=6.6,第一作者)
4. Yao, Z., Huang, C., Hu, H., Wang, T., Li, Y., Sun, X., Adl, S., Zhu, B., 2024. High trophic level organisms and the complexity of soil micro-food webs at aggregate scale regulate carbon accumulation in cropland soils. Agriculture, Ecosystems & Environment, 360, p.108768. (中国科学院农林科学一区TOP,IF=6.4,第一作者)
5. Yao, Z., Xu, Q., Chen, Y., Liu, N., Li, Y., Zhang, S., Cao, W., Zhai, B., Wang, Z., Zhang, D., Adl, S., 2021. Leguminous green manure enhances the soil organic nitrogen pool of cropland via disproportionate increase of nitrogen in particulate organic matter fractions. Catena, 207, p.105574. (中国科学院农林科学一区TOP,IF=5.7,第一作者)
6. Xu, Q., Yao, Z., Chen, Y., Liu, N., Teng, Z., Huang, D., Cao, W., Kuzyakov, Y., Shah, T., Zhao, N., Wang, Z., 2024. Priming and balance of soil organic carbon differ with additive C: N ratios and long-term green manuring. Applied Soil Ecology, 201, p.105495. (中国科学院农林科学二区TOP,IF=5.0,共同第一作者)
7. Iqbal, J., Yao, Z*., Görres, C.M., Zhu, B., 2026. Integrated crop residue management reduces nitrogen losses by stage-specific restructuring of the soil micro-food web in dryland maize production. Agriculture, Ecosystems & Environment, 397, p.110082. (中国科学院农林科学一区TOP,IF=6.4,通讯作者)
8. Iqbal, J., Yao, Z*., Görres, C.M., Khan, S.U., Zhu, B., 2025. Long-term integrated organic-inorganic fertilization balances greenhouse gas emissions and soil properties enhancement in subtropical wheat-maize system. Journal of Environmental Management, 394, p.127238. (中国科学院环境科学与生态学二区TOP,IF=8.4,通讯作者)
9. Iqbal, J., Yao, Z*., Raza, S.T., Iqbal, H., Zhu, B., 2025. Long-Term Nitrogen Fertilization Increases Soil Organic Carbon and Wheat Yields on Purple Soil in China. Plants, 14(18), p.2866. (中国科学院生物学二区,IF=4.1,通讯作者)
10. Luo, B., Hu, H., Zheng, H., An, N., Guo, J., Nie, Z., Ma, P., Zhang, X., Liu, D., Wu, L., Gao, D., Yao, Z*., 2025. Fertilization regulates maize nutrient use efficiency through soil rhizosphere biological network and root transcriptome. Applied Soil Ecology, 207, p.105912. (中国科学院农林科学二区,IF=5.0,通讯作者)
1. 有机无机肥配施通过紫色土微食物网提升土壤有机碳储量的机制(国家自然科学基金青年项目),项目执行期:2021.01-2023.12,主持人
2. 线虫调控紫色土有机碳周转的机制(中国科学院特别研究助理资助),项目执行期:2021.01-2022.12,主持人
3. 施用有机肥对紫色土微食物网的影响及其调控土壤有机碳的主要途径(四川省博士后基金),项目执行期:2021.01-2022.12,主持人
4. 团聚体内部微食物网调控紫色土氮周转的机制(山地所青年基金-重点资助),项目执行期:2021.01-2022.12,主持人
5. 川中丘陵区秸秆与猪粪还田的碳周转及微食物网调控机制(四川省自然科学基金面上项目),项目执行期:2026.01-2027.12,主持人