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首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Soybean (Glycine max(L.) Merrill) intercropping with reduced nitrogen input influences rhizosphere phosphorus dynamics and phosphorus acquisition of sugarcane (Saccharum officinarum)
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Soybean (Glycine max(L.) Merrill) intercropping with reduced nitrogen input influences rhizosphere phosphorus dynamics and phosphorus acquisition of sugarcane (Saccharum officinarum)

机译:大豆(甘氨酸MAX(L.)Merrill)与氮气投入减少的间作会影响根际磷动力学和磷的甘蔗(Saccharum Officinarum)

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摘要

Reducing nitrogen (N) input can improve crop productivity in cereal-legume intercrops, but the impact on phosphorus (P) acquisition is unclear. A 10-year (2009-2018) field experiment was conducted to quantify how P acquisition by sugarcane (Saccharum officinarum) was affected by intercropping with soybean (Glycine max(L.) Merrill at 1:1 and 1:2) with two N inputs (300 kg ha(-1)[reduced], 525 kg ha(-1)[conventional]). Nitrogen was supplied only to the sugarcane crop, and soybean received no N. There was a significantly higher land-equivalent ratio of sugarcane-soybean intercropping than of the sole cropping, and the intercropping advantage was more pronounced under reduced N input which can be associated with high degree of complementary N use. Furthermore, soybean intercropping with reduced N input stimulated acid phosphomonoesterase activity and depleted organic P in the rhizosphere of sugarcane, resulting in increased sugarcane stem P concentration and system P-use efficiency. The interspecific facilitation of P acquisition could be associated with the increased symbiotic N(2)fixation in soybean, soil microbial biomass and activity under reduced N input. In conclusion, soybean intercropping with reduced N input to sugarcane enhanced rhizosphere enzymatic organic P transformation and sugarcane P acquisition, which may contribute to maintaining a sustainable sugarcane production under low N supply. The findings advance our understanding of interactions between N and P cycling and provide new evidence for the value of cereal-legume intercrops in reducing fertilizer input.
机译:减少氮气(n)输入可以提高谷物豆科植物中的作物生产力,但对磷(P)收购的影响尚不清楚。进行了10年(2009-2018)场实验,以量化甘蔗(SACCRARUM OfficinARUM)如何通过与大豆(甘氨酸MAX(L.)Merrill为1:1和1:2)的间作影响P如何受到影响输入(300kg ha(-1)[减少],525kg ha(-1)[常规])。仅向甘蔗作物供应氮,大豆接受NO N.甘蔗 - 大豆间作的甘蔗 - 大豆间作比例显着较高,并且在减少的N个输入下的间作优势更加明显,可以联系高度互补的n使用。此外,在甘蔗的根晶晶圈中,大豆间刺激刺激刺激磷酸磷酸酯酶活性和耗尽有机p,导致甘蔗杆P浓度增加和系统P使用效率。 P获取的三分之一的促进可以与大豆,土壤微生物生物量和减少的氮的活性增加的共生N(2)固定相关。总之,大豆间作与甘蔗增强无根晶酶有机P变换和甘蔗P采集的甘蔗增强的N型输入,这可能有助于在低N供应下维持可持续的甘蔗产量。调查结果推进了我们对N和P循环之间的相互作用的理解,并为减少肥料投入中的谷物肉豆蔻跨度的价值提供了新的证据。

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