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Research Article

Seasonal dynamics of soil aggregates and associated C and N stocks in different fertilizer managements

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Pages 1305-1321 | Received 02 Aug 2020, Accepted 16 Feb 2021, Published online: 18 Mar 2021

References

  • AmundsonR. 2001. The carbon budget in soils. Annual Review of Earth and Planetary Sciences. 29(1):535–562. doi:https://doi.org/10.1146/annurev.earth.29.1.535.
  • BeareMH, HendrixPF, CabreraML, ColemanDC. 1994. Aggregate-protected and unprotected organic matter pools in conventional- and no-tillage soils. Soil Sci Soc Am J. 58(3):787.
  • BidishaaM, YakovK. 2010. Effects of aggregation processes on distribution of aggregate size fractions and organic Ccontent of a long-term fertilized soil. Eur JSoil Biol. 46:365–370.
  • BrookesPC, LandmanA, PrudenG, JenkinsonDS. 1985. Chloroform fumigation and the release of soil nitrogen: arapid direct extraction method to measure microbial biomass nitrogen in soil. Soil Biol Biochem. 17:837–842.
  • CambardellaCA, ElliottET. 1993. Methods for physical separation and characterization of soil organic matter fractions. Geoderma 56:449–457.
  • CookBD, AllanDL. 1992. Dissolved organic carbon in old field soils: total amounts as ameasure of available resources for soil mineralization. Soil Biol Biochem. 24:585–594.
  • FranzluebbersAJ. 2002. Water infiltration and soil structure related to organic matter and its stratification with depth. Soil Till Res. 66:197–205.
  • FranzluebbersAJ, HonsFM, ZubererDA. 1994. Seasonal changes in soil microbial biomass and mineralizable Cand Nin wheat management systems. Soil Biol Biochem. 26:1469–1475.
  • FonteSJ, YeboahE, OforiP, QuansahGW, VanlauweB, SixJ. 2009. Fertilizer and residue quality effects on organic matter stabilization in soil aggregates. Soil Sci Soc Am J. 73(3):961–966.
  • GerritHDR. 2004. Methods of soil analysis: part 4. physical methods. Vadose Zone J. 3(2):722–723.
  • GoviM, FranciosoO, CiavattaC, SequiP. 1992. Influence of long-term residue and fertilizer application on soil humic substances: astudy by electrofocusing. Soil Sci. 154(1):8–13.
  • GryzeSD, SixJ, BritsC, MerckxR. 2005. Aquantification of short-term macroaggregate dynamics: influences of wheat residue input and texture. Soil Biol Biochem. 37(1):55–66.
  • GuoS, YuH, ZhuX, GaoY, DingW. 2013. Effect of long-term fertilization on molecular structure of organic carbon in soil aggregates in fluvo-aquic soil. Acta Pedol Sin. 50:922–930.
  • HalvorsonAD, JantaliaCP. 2011. Nitrogen fertilization effects on irrigated no-till corn production and soil carbon and nitrogen. Agron J. 103:1423–1431.
  • HaynesRJ, NaiduR. 1998. Influence of lime, fertilizer and manure applications on soil organic matter content and soil physical conditions: a review. Nutr Cycl Agroecosys. 51:123–137.
  • HelgasonBL, WalleyFL, GermidaJJ. 2009. Fungal and bacterial abundance in long-term no-till and intensive-till soils of the Northern Great Plains. Soil Sci Soc Am J. 73:120–127.
  • Kemper W, Rosenau R. 1986. Aggregate stability and size distribution. In: Klute, editors. Methods of soil analysis, Part 1. Physical and mineralogical methods, agronomy monograph. Madison: American Society of Agronomy and Soil Science Society of America; pp. 425–442.
  • KhanSA, MulvaneyRL, EllsworthTR, BoastCW. 2007. The myth of nitrogen fertilization for soil carbon sequestration. JEnviron Qual. 36:1821–1832.
  • KuzyakovY, SubbotinaI, ChenH, BogomolovaI, XuX. 2009. Black carbon decomposition and incorporation into soil microbial biomass estimated by 14C labeling. Soil Biol Biochem. 41:210–219.
  • Kögel-KnabnerI. 2002. The macromolecular organic composition of plant and microbial residues as inputs to soil organic matter. Soil Biol Biochem. 34:139–162.
  • LiuSP, ZhuangHY, LuJF, ShenXP, ChenHQ, HuangXX. 1998. Influence of no-tillage on soil structure. Acta Pedol Sin. 35:33–37.
  • Mackie-DawsonLA, MullinsCE, FitzpatrickEA, CourtMN. 2010. Seasonal changes in the structure of clay soils in relation to soil management and crop type. I.Effects of crop rotation at Cruden Bay, NE Scotland. Eur JSoil Sci. 40:269–281.
  • MaharjanGR, PrescherAK, NendelC, EwertF, MbohCM, GaiserT, SeidelSJ. 2018. Approaches to model the impact of tillage implements on soil physical and nutrient properties in different agro-ecosystem models. Soil Till Res. 180:210–221.
  • Mehlich A.1984. Mehlich 3 soil test extractant: a modification of Mehlich 2 extractant. Commun Soil Sci Plant Anal. 15: 1409-1416.
  • MikhaMM, RiceCW. 2004. Tillage and manure effects on soil and aggregate-associated carbon and nitrogen. Soil Sci Soc Am J. 68:809–816.
  • MulvaneyRL, KhanSA, EllsworthTR. 2009. Synthetic nitrogen fertilizers deplete soil nitrogen: aglobal dilemma for sustainable cereal production. JEnviron Qual. 38:2295–2314.
  • OgunwoleJO. 2010. Changes in an Alfisol under long-term application of manure and inorganic fertilizer. Soil Use Manage. 21:260–261.
  • PlanteAF, McGillWB. 2002. Soil aggregate dynamics and the retention of organic matter in laboratory-incubated soil with differing simulated tillage frequencies. Soil Till Res. 66:79–92.
  • PostWM, KwonKC. 2000. Soil carbon sequestration and land‐use change: processes and potential. Global Change Biol. 6:317–327.
  • QuanQ, WangCH, HeNP, ZhangZ, WenXF, SuHX, WangQ, XueJY. 2014. Forest type affects the coupled relationships of soil Cand Nmineralization in the temperate forests of northern China. JSci Rep. 4:6584.
  • SchultenHR, SchnitzerM. 1997. The chemistry of soil organic nitrogen: a review. Biol Fert Soils. 26(1):1–15.
  • SheehyJE, MnzavaM, CassmanKG, MitchellPL, PablicoP, RoblesRP, SamonteHP, LalesJS, FerrerAB. 2004. Temporal origin of nitrogen in the grain of irrigated rice in the dry season: the outcome of uptake, cycling, senescence and competition studied using a ja:math-point placement technique. Field Crops Res. 89:337–348.
  • SixJ, ElliottET, PaustianK. 2000. Soil macroaggregate turnover and microaggregate formation: amechanism for Csequestration under no-tillage agriculture. Soil Biol Biochem. 32:099–2103.
  • SixJ, BossuytH, DegryzeS, DenefK. 2004. Ahistory of research on the link between (micro) aggregates, soil biota, and soil organic matter dynamics. Soil Till Res. 79:7–31.
  • SixJ, ConantRT, PaulEA, PaustianK. 2002. Stabilization mechanisms of soil organic matter: implications for C-saturation of soils. Plant Soil. 241:155–176.
  • StefansonRC. 1971. Effect of periodate and pyrophosphate on the seasonal changes in aggregate stabilization. Soil Res. 9:33–41.
  • TilmanD, CassmanKG, MatsonPA, NaylorR, PolaskyS. 2002. Agricultural sustainability and intensive production practices. Nature 418:671–677.
  • ToyakawaH, TriplettGB, DickWA. 2008. No-tillage crop production: arevolution in agriculture. Agron J. 100:153–165.
  • VanlauweB, WendtJ, GillerKE, CorbeelsM, GerardB, NolteC. 2014. Afourth principle is required to define conservation agriculture in sub-Saharan Africa: the appropriate use of fertilizer to enhance crop productivity. Field Crops Res. 155:10–13.
  • WhalenJK, ParmeleeRW, EdwardsCA. 1998. Population dynamics of earthworm communities in corn agroeco systems receiving organic or inorganic fertilizer amendments. Biol Fert Soils. 27:400–407.
  • WuK, YuanSF, XunGH, ShiW, PanB, GuanHL, ShenB, ShenQ. 2015. Root exudates from two tobacco cultivars affect colonization of Ralstonia solanacearum and the disease index. Eur JPlant Pathol. 141:667–677.
  • XuQ, RuiWY, LiuJL, LiuZ, YangL, YinYJ, ZhangWJ. 2006. Spatial variation of coupling characteristics of soil carbon and nitrogen in farmland of China. JEcol Rural Environ. 22(3):57–60.
  • YangLP, YangYH, ZhaoZX. 2007. Effects of organic manure on nitrogen supply and characteristics of soil. Tob Sci Tech. 7:58–61.
  • ZhaoYG, ZhaoSW, HuaJ, ZhangY. 2009. Soil structural properties of enclosed steppe in the semiarid area. Acta Agrestia Sin. 17(1):106–112.
  • ZhangBW, YangYM, ZhangXL, LiJL, ChenXY, LiZX. 2019. Effects of continuous deep loosening on soil physical characteristics, organic carbon content and carbon pool index in black soil. China Soils Fert. 02:6–13.
  • ZiHB, ChenY, HuL, WangCT. 2018. Effects of nitrogen addition on root dynamics in an alpine meadow, Northwestern Sichuan. Chin JPlant Ecol. 42:38–49.
  • ZouCM, PearceRC, GroveJH, CoyneMS. 2015. Conservation practices in tobacco production increase large aggregates and associated carbon and nitrogen. Soil Sci Soc Am J. 79:1760–1770.
  • ZouCM, PearceRC, GroveJH, CoyneMS. 2017. No-tillage culture and nitrogen fertilizer management for burley tobacco production. JAgric Sci. 155:599–612.
  • ZouCM, LiY, HuangW, ZhaoGK, PuGR, SuJE, CoyneMS, ChenY, WangLC, HuXD, etal. 2018. Rotation and manure amendment increase soil macro-aggregates and associated carbon and nitrogen stocks in flue-cured tobacco production. Geoderma. 325:49–58.

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