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在不同水分和施肥条件下,豆科植物与禾本科植物的受控混合物中氮和磷的积累情况。

Accumulation of N and P in the Legume in Controlled Mixtures with the Grass under Varying Water and Fertilization Conditions.

作者信息

Xu Bingcheng, Xu Weizhou, Wang Zhi, Chen Zhifei, Palta Jairo A, Chen Yinglong

机构信息

State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau, Northwest A&F University, Yangling, China.

Institute of Soil and Water Conservation, Chinese Academy of Sciences and Ministry of Water Resources, Yangling, China.

出版信息

Front Plant Sci. 2018 Feb 13;9:165. doi: 10.3389/fpls.2018.00165. eCollection 2018.

Abstract

Water and fertilizers affect the nitrogen (N) and phosphorus (P) acquisition and allocation among organs in dominant species in natural vegetation on the semiarid Loess Plateau. This study aimed to clarify the N and P accumulation and N:P ratio at organ and plant level of a local legume species mixed with a grass species under varying water and fertilizer supplies, and thus to fully understand the requirements and balance of nutrient elements in response to growth conditions change of native species. The N and P concentration in the organ (leaf, stem, and root) and plant level of (C legume), were examined when intercropped with (C grass). The two species were grown outdoors in pots under 80, 60, and 40% of soil water field capacity (FC), -NP, +N, +P, and +NP supply and the grass:legume mixture ratios of 2:10, 4:8, 6:6, 8:4, 10:2, and 12:0. The three set of treatments were under a randomized complete block design. Intercropping with did not affect N concentrations in leaf, stem and root of , but reduced P concentration in each organ under P fertilization. Only leaf N concentration in showed decreasing trend as soil water content decreased under all fertilization and mixture proportion treatments. Stems had the lowest, while roots had the highest N and P concentration. As the mixture proportion of decreased under P fertilization, P concentration in leaf and root also decreased. The N concentration in at the whole plant level was 11.1-17.2%. P fertilization improved P concentration, while decreased N:P ratio in . The N:P ratios were less than 14.0 under +P and +NP treatments. Our results implied that exogenous N and P fertilizer application may change the N:P stoichiometry and influence the balance between nutrients and organs of native dominant species in natural grassland, and P element should be paid more attention when considering rehabilitating degraded grassland via fertilization application in semiarid Loess Plateau region.

摘要

水分和肥料会影响半干旱黄土高原天然植被中优势物种各器官间氮(N)和磷(P)的获取与分配。本研究旨在阐明在不同水分和肥料供应条件下,一种当地豆科植物与一种禾本科植物混播时,其各器官及植株水平上的氮磷积累及氮磷比,从而全面了解本土物种在生长条件变化时对营养元素的需求及平衡情况。在与(C禾本科植物)混播时,检测了(C豆科植物)各器官(叶、茎和根)及植株水平上的氮和磷浓度。这两个物种在室外花盆中生长,土壤水分田间持水量(FC)分别为80%、60%和40%,设置了不施氮磷(-NP)、单施氮(+N)、单施磷(+P)和氮磷都施(+NP)处理,以及禾本科植物与豆科植物的混合比例为2:10、4:8、6:6、8:4、10:2和12:0。这三组处理采用随机完全区组设计。与混播并未影响的叶、茎和根中的氮浓度,但在施磷条件下降低了各器官中的磷浓度。在所有施肥和混合比例处理下,随着土壤含水量降低,中只有叶氮浓度呈下降趋势。茎中的氮磷浓度最低,而根中的氮磷浓度最高。在施磷条件下,随着混合比例的降低,叶和根中的磷浓度也降低。植株水平上的氮浓度为11.1 - 17.2%。施磷提高了中的磷浓度,但降低了其氮磷比。在+P和+NP处理下,氮磷比小于14.0。我们的结果表明,外源氮磷肥的施用可能会改变氮磷化学计量比,并影响天然草地中本土优势物种营养元素与各器官之间的平衡,在半干旱黄土高原地区通过施肥来恢复退化草地时,应更多关注磷元素。

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