◆发表论文
[1]Lei Du, Zicheng Zheng, Tingxuan Li, Yongdong Wang, Huagang Huang, Haiying Yu, Daihua Ye, Tao Liu, Xizhou Zhang. Aggregate-associated carbon compositions explain the variation of carbon sequestration in soils after long-term planting of different tea varieties[J]. Science of the Total Environment, 2023, 856: 159227.(责任作者)
[2]Lei Du, Zicheng Zheng, Tingxuan Li, Yongdong Wang, Huagang Huang, Haiying Yu, Daihua Ye, Tao Liu, Xizhou Zhang. The variation in organic carbon mineralization and its temperature sensitivity in soils after long-term planting of different tea varieties[J]. Scientia Horticulturae, 2023, 309: 111612.(责任作者)
[3]Jia Yang,Zicheng Zheng,Tingxuan Li,Daihua Ye,Yongdong Wang,Huagang Huang,Haiying Yu,Tao Liu,Xizhou Zhang.Variations in aluminum fractions within soils associated
with different tea (Camellia sinensis L.) varieties: Insights at the aggregate scale.Plant Soil(2022.6.23 on line)(责任作者)
[4]Lei Du,Zicheng Zheng,Tingxuan Li,Yongdong Wang,Huagang Huang,Haiying Yu,Daihua Ye,Tao Liu,Tongyan Yao,Xizhou Zhang.Variations of fungal communities within the soils of different tea varieties (Camellia sinensis L.) following long?term plantation.Plant Soil(2022.5.4 on line)(责任作者)
[5] Jingyi Guo, Guangdeng Chen, Xizhou Zhang, et al. Quantitative trait locus analysis of adventitious and lateral root morphology of barley grown at low and high P. Functional Plant Biology(2018,4,12 on line) (责任作者)
[6]Daihua Ye, Xizhou Zhang, Tingxuan Li, et al. Phosphorus-acquisition characteristics and rhizosphere properties of wild barley in relation to genotypic differences as dependent on soil phosphorus availability. plant soil, 2018( 423):503–516(责任作者)
[7]Jingyi Guo, Guangdeng Chen, Xizhou Zhang, et al.Mapping quantitative trait loci for tolerance to phosphorusde- ficiency. Euphytica, 2017,213(5):114-126. (责任作者)
[8]Zhang Hongjiang, Zhang Xizhou*, Li Tingxuan, Huang Fu. Variation of cadmium uptake,translocation among rice lines and detecting for potential cadmium-safe cultivars.Environmental Earth Sciences, 2014,71(1):277-286. (责任作者)
[9]Wu Jingtao,Zhang Xizhou*, Li Tingxuan. Differences in the efficiency of Potassium(K) uptake and use in barley varieties. Agricultural Sciences in China,2011,10(1):101-108. (责任作者)
[10]郭静怡,张曼,张锡洲,等.水稻镉安全材料的镉吸收动力学特征,应用生态学报,2018,29(1): 278-284. (责任作者)
[11]张曼,张锡洲,李廷轩,等.镉处理对水稻镉安全材料的镉积累及转移特性的影响.农业环境科学学报, 2017,36(2):223-229. (责任作者)
[12]王鹏飞,郑子成,张锡洲,等.玉米季横垄坡面细沟侵蚀特征及其影响因素.土壤学报,2016,53(4):869-880.(责任作者)
[13]刘涛,蔡秋燕,张锡洲,等.磷高效野生大麦根系形态和根系分泌物对低磷水平植酸态有机磷的响应特征.植物营养与肥料学报,2016,22(6):1538-1547. (责任作者)
[14]王鹏飞,郑子成,张锡洲.玉米苗期横垄坡面地表糙度的变化及其对细沟侵蚀的影响.水土保持学报,2015,29(2):30-34. (责任作者)
[15]蔡秋燕,张锡洲,李廷轩,等. 磷高效野生大麦拔节期对植酸态有机磷的利用.中国农业科学,2015,48(16):3146-3155. (责任作者)
[16]李静,张锡洲,李廷轩,等.钾肥运筹对烤烟钾吸收利用的影响. 植物营养与肥料学报, 2015,21(4):969-978.(责任作者)
[17]唐彪,张锡洲,阳显斌.烟蒜轮作与套作对烤烟产量及根际土壤磷组分的影响.应用生态学报,2015,26(7):1977-1984. (责任作者)
[18]徐静,张锡洲,李廷轩,等.野生大麦对土壤磷吸收及其酸性磷酸酶活性的基因型差异.草业学报,2015,24(1):88-98. (责任作者)
[19]张路,张锡洲,李廷轩,等. 水稻镉安全亲本材料对镉的吸收分配特性.中国农业科学,2015,48(1):174-184. (责任作者)
[20]张路,张锡洲,李廷轩,等.Cd胁迫对水稻亲本材料Cd吸收分配的影响.农业环境科学学报,2014,33(12):2288-2295. (责任作者)
[21]蔡秋燕,张锡洲,李廷轩,等.不同磷源对磷高效利用野生大麦根际土壤磷组分的影响.应用生态学报,2014,25(11):3207-3214. (责任作者)
[22]李莉,张锡洲,李廷轩,等.不同产量类型水稻基因型干物质积累与磷素吸收利用.植物营养与肥料学报,2014,20(3):588-597.(责任作者)
[23]李莉,张锡洲,李廷轩,等.高产磷高效水稻磷素吸收利用特性.应用生态学报,2014,25(7): 1963-1970.(责任作者)
[24]徐静,张锡洲,李廷轩,等.磷高效利用野生大麦基因型筛选及其根际土壤无机磷组分特征. 应用生态学报,2013,24(10): 2821-2830.(责任作者)
[25]张锡洲,阳显斌,李廷轩,等.不同磷效率小麦对磷的吸收及根际土壤磷组分特征差异.中国农业科学,2012,45(15):3083-3092.
[26]张锡洲,阳显斌,李廷轩,等.小麦氮素利用效率的基因型差异.应用生态学报,2011,22 (2): 369-375.
[27]张锡洲,吴金涛,李廷轩,等.不同基因型大麦对钾的吸收、积累及分配特性.核农学报, 2011, 25(5): 1029-1035.
[28]张锡洲,阳显斌,李廷轩,等.野生大麦氮素吸收利用的基因型差异.核农学报,2011,25 (6):1267-1267.
[29]阳显斌,张锡洲,李廷轩,等.磷素籽粒生产效率不同的小麦品种磷吸收利用差异.植物营养与肥料学报,2011,17(5):525-531. (责任作者)
[30]戢林,张锡洲,李廷轩.基于“3414”试验的川中丘陵区水稻测土配方施肥指标体系构建.中国农业科学,2011,43(1):84-92. (责任作者)
[31]阳显斌,张锡洲,李廷轩,等.不同产量水平小麦的氮吸收利用差异.核农学报,2011,24(5):1073- 1079. (责任作者)
[32]林代杰,郑子成,张锡洲,等.玉米植株对降雨再分配影响的试验研究.中国农业科学, 2011,44(12):2608-2615(责任作者)
[33]吴金涛,张锡洲,李廷轩,等.大麦钾高效基因型钾吸收和生理生化特性研究.植物营养与肥料学报,2010,16(4):906-912. (责任作者)
[34]张锡洲,王永东,余海英,等.不同形态氮肥对设施土壤盐分和离子组成的影响.水土保持学报, 2009,23(5):16-20,23.