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施氮量和种植密度互作对海岛棉冠层光分布、产量及氮素利用的影响

王丽 张巨松 宁丽云 吴一帆 郭璇 左朝阳 郭仁松 汤秋香

植物营养与肥料学报2025,Vol.31Issue(10):1998-2014,17.
植物营养与肥料学报2025,Vol.31Issue(10):1998-2014,17.DOI:10.11674/zwyf.2025020

施氮量和种植密度互作对海岛棉冠层光分布、产量及氮素利用的影响

Interactive effects of planting density and nitrogen application rate on canopy light distribution,yield and nitrogen use of sea island cotton

王丽 1张巨松 1宁丽云 1吴一帆 1郭璇 1左朝阳 1郭仁松 2汤秋香1

作者信息

  • 1. 新疆农业大学农学院/教育部棉花工程研究中心,新疆 乌鲁木齐 830052
  • 2. 新疆农业科学院经济作物研究所,新疆 乌鲁木齐 830091
  • 折叠

摘要

Abstract

[Objectives]We investigated the light distribution across the canopy,and the dry matter and nitrogen uptake and distribution in vegetative and productive organs of mechanized sea island cotton under different nitrogen application rates and planting densities,to propose an optimum combination of N application rate and planting density for efficient sea island cotton production.[Methods]The two-factor split field experiments were conducted in Awati County,Xinjiang,in 2023 and 2024,the local main cultivar,sea island cotton Xin 78,was selected as the research object.The main plots were three planting densities,20×104(D1),24×104(D2),and 28×104 plants/hm2(D3);and the subplots were four N application rates,0(N0),160(N1),320(N2),and 480 kg/hm2(N3).The interception rates of photosynthetically active radiation(PAR)in top 90-110 cm,middle 50-70 cm,and lower 10-30 cm layers of the canopy were measured at the key growing stages,and the dry matter and nitrogen content in vegetative and reproductive organs were analyzed at the same stages.At harvest,the yield and yield components of sea island cotton were investigated.[Results]Increasing N application rate and planting density enhanced PAR of cotton canopy,as well as the maximum accumulation of dry matter and nitrogen per plant,along with nitrogen use efficiency.In 2023 and 2024,as N application rate increased,the PAR interception rates in the lower and middle canopy layers during the boll-opening stage exhibited a parabolic response,reaching their maximum values at the N2 level.These maximum values represented increases of 18.97%to 31.74%and 35.07%to 108.24%compared to the N0 level,respectively.The trends in dry matter and N accumulation of whole plants,as well as N accumulation in vegetative organs,were consistent;all increasing with higher N application rates and reaching their maximum accumulation at the N3 level.N accumulation in reproductive organs showed an initial increase followed by a decrease,peaking at the N2 level,with the N2 level being 11.6%(in 2023)and 4.53%(in 2024)higher than the N3 level.The agronomic nitrogen use efficiency,nitrogen recovery rate,and partial factor productivity of nitrogen fertilizer(PFPN)all exhibited a linear decreasing trend with increasing N application rates.In 2024,the PFPN increased by 8.08%compared to 2023.Compared to the D2N3 treatment,the PFPN in D2N2 treatment increased by 67.39%in 2023 and 60.51%in 2024,with an average increase of 63.84%over the two years.Over the two years,as planting density increased,the PAR and N accumulation in the lower and middle canopy layers during the boll-opening stage,the N accumulation in reproductive organs,and yields of seed cotton and lint cotton all initially increased and then decreased,with peaks observed at the D2 density.The total N accumulation at the D2 density increased by 5.77%in 2023 and 6.57%in 2024 compared to the D1 density,and by 2.15%in 2023 and 2.50%in 2024 compared to the D3 density.The dry matter accumulation amount per plant and the maximum dry matter accumulation rate(Vm)decreased with the increasing densities.The N recovery rate and PFPN also exhibited an"increase-decrease"trend.Compared to the D2N3 treatment,the N recovery rate in the D2N2 treatment increased by 58.85%in 2023 and 68.63%in 2024,with an average increase of 62.46%over the two years.[Conclusions]Planting density and nitrogen application rate influence the absorption,accumulation,and distribution of dry matter and nitrogen during cotton's growth stages.A reasonable combination of these factors can optimize the canopy structure of sea-island cotton,enabling the lower and middle canopy layers to intercept light energy and carry out photosynthesis more efficiently,thereby providing the energy and material basis for high crop yields.Comprehensive consideration of the accumulation and distribution of dry matter and nitrogen,yield,and nitrogen use efficiency across different growth stages,the suitable combination for the mechanically harvested sea island cotton is plant density 24×104 plants/hm2 and N application rate 320 kg/hm2.

关键词

海岛棉/施氮量/种植密度/光截获率/干物质积累和分配/产量/氮素利用率

Key words

sea island cotton/planting density/nitrogen application rate/light interception rate/dry matter accumulation and distribution/yield/nitrogen use efficiency

引用本文复制引用

王丽,张巨松,宁丽云,吴一帆,郭璇,左朝阳,郭仁松,汤秋香..施氮量和种植密度互作对海岛棉冠层光分布、产量及氮素利用的影响[J].植物营养与肥料学报,2025,31(10):1998-2014,17.

基金项目

丝绸之路经济带创新驱动发展试验区、乌昌石国家自主创新示范区科技发展计划(2023LQJ03) (2023LQJ03)

新疆维吾尔自治区重大科技专项(2020A01002-4). (2020A01002-4)

植物营养与肥料学报

OA北大核心

1008-505X

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