Interspecific interactions affect N and P uptake rather than N:P ratios of plant species: evidence from intercropping
文献类型: 外文期刊
第一作者: Zhang, Wei-Ping
作者: Zhang, Wei-Ping;Liu, Guang-Cai;Zhang, Li-Zhen;Li, Long;Fornara, Dario;Penuelas, Josep;Sardans, Jordi;Penuelas, Josep;Sardans, Jordi;Sun, Jian-Hao;Liu, Guang-Cai
作者机构:
关键词: ecological stoichiometry; growth-rate hypothesis; intercropping system; interspecific competition; nitrogen addition; nutrient budget; plastic film mulch
期刊名称:JOURNAL OF PLANT ECOLOGY ( 影响因子:1.78; 五年影响因子:2.674 )
ISSN: 1752-9921
年卷期: 2022 年 15 卷 2 期
页码:
收录情况: SCI
摘要: Quantifying stoichiometry of crop N and P acquisition (i.e. removal from farmland) under different agronomic practices is essential for understanding nutrient budgets and optimizing N and P fertilizer application in agroecosystems. It is not clear how plant N and P uptake and N:P stoichiometry vary between monoculture and intercropping throughout an entire growing season under different N fertilization and mulching practices. Here, we addressed how plant interspecific competition for nutrients have affected the temporal dynamics of crop N and P uptake (and N:P ratios) in five cropping systems (wheat, maize and barley monocultures, and wheat/maize and barley/maize intercropping), under two N levels (0 and 225 kg N ha(-1)) and two maize mulching treatments (with and without). Wheat and barley had greater N and P competitive ability than maize, leading to an increase in N and P uptake of wheat and barley and a decrease in N and P uptake of maize during co-growth stages in intercropping. N:P ratios of three crop species decreased with plant growth. Crop-level N:P ratios were either not affected by intercropping or did not change consistently with N fertilization while film mulching decreased maize N:P ratios. Community-level N:P ratios of the two intercrops were different from those of the corresponding monoculture at maturity. Because (i) the proportion of N and P removal from intercropping differs from monocultures, and (ii) N and P uptake by crops is decoupled under N fertilization and mulching, these findings may have practical implications for the nutrient budget of intercropping systems.
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