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https://hdl.handle.net/1959.11/51538
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DC Field | Value | Language |
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dc.contributor.author | Dong, Xinliang | en |
dc.contributor.author | Sun, Hongyong | en |
dc.contributor.author | Wang, Jintao | en |
dc.contributor.author | Liu, Xiaojing | en |
dc.contributor.author | Singh, Bhupinder Pal | en |
dc.date.accessioned | 2022-04-07T03:20:24Z | - |
dc.date.available | 2022-04-07T03:20:24Z | - |
dc.date.issued | 2020-07 | - |
dc.identifier.citation | European Journal of Soil Science, 71(4), p. 695-705 | en |
dc.identifier.issn | 1365-2389 | en |
dc.identifier.issn | 1351-0754 | en |
dc.identifier.uri | https://hdl.handle.net/1959.11/51538 | - |
dc.description.abstract | <p>Fertilization is the most common way to supply nutrients to the soil and to maintain crop productivity in agricultural ecosystems, which may also influence soil organic carbon (SOC) accumulation rates. In 1996, we set up a long-term field experiment to explore the effect of fertilization on soil properties in a winter wheat–summer maize cropping system in the North China Plain. Eight treatments included: no fertilization (Ct), nitrogen (N), phosphorus (P) and N combined with P (NP) fertilizer application with or without potassium (K). After 21 years of fertilization, N application did not increase soil total N content, but P application significantly increased soil total P contents by 33.9%. The single application of N or P did not significantly affect SOC content, whereas the NP combination significantly increased SOC contents by 22.1 and 29.6% compared to Ct in the no K and K treatments, respectively. The natural <sup>13</sup>C abundance approach and the SOC contents suggested that the NP combination increased C3 wheat-derived SOC by 37.5 and 49.8% in the no K and K treatments, respectively. However, fertilization had no impact on C4 maize-derived SOC content. Wheat-derived SOC was positively correlated with the wheat yield, whereas maize-derived SOC was not correlated with the maize yield, which indicated that wheat-derived SOC accumulated more than maize-derived SOC in the wheat–maize cropping system. In addition, soil inorganic carbon (SIC) and its compositions were not affected by the long-term fertilization. Our results indicate that N combined with P application is more beneficial than N or P alone to enlarge SOC sequestration in the North China Plain, especially for wheat-derived SOC. Thus, in soil with nutrient limitations, nutrient resources should be supplied with priority to the wheat growing season in wheat–maize cropping systems, to maintain or enlarge SOC storage.</p> | en |
dc.language | en | en |
dc.publisher | Wiley-Blackwell Publishing Ltd | en |
dc.relation.ispartof | European Journal of Soil Science | en |
dc.title | Wheat-derived soil organic carbon accumulates more than its maize counterpart in a wheat–maize cropping system after 21 years | en |
dc.type | Journal Article | en |
dc.identifier.doi | 10.1111/ejss.12900 | en |
dc.subject.keywords | stable(13)C isotope | en |
dc.subject.keywords | long-term experiment | en |
dc.subject.keywords | nutrient fertilization | en |
dc.subject.keywords | soil inorganic carbon | en |
dc.subject.keywords | soil organic carbon | en |
dc.subject.keywords | Soil Science | en |
dc.subject.keywords | Agriculture | en |
local.contributor.firstname | Xinliang | en |
local.contributor.firstname | Hongyong | en |
local.contributor.firstname | Jintao | en |
local.contributor.firstname | Xiaojing | en |
local.contributor.firstname | Bhupinder Pal | en |
local.profile.school | School of Environmental and Rural Science | en |
local.profile.email | bsingh20@une.edu.au | en |
local.output.category | C1 | en |
local.record.place | au | en |
local.record.institution | University of New England | en |
local.publisher.place | United Kingdom | en |
local.format.startpage | 695 | en |
local.format.endpage | 705 | en |
local.identifier.scopusid | 85077908942 | en |
local.peerreviewed | Yes | en |
local.identifier.volume | 71 | en |
local.identifier.issue | 4 | en |
local.contributor.lastname | Dong | en |
local.contributor.lastname | Sun | en |
local.contributor.lastname | Wang | en |
local.contributor.lastname | Liu | en |
local.contributor.lastname | Singh | en |
dc.identifier.staff | une-id:bsingh20 | en |
local.profile.role | author | en |
local.profile.role | author | en |
local.profile.role | author | en |
local.profile.role | author | en |
local.profile.role | author | en |
local.identifier.unepublicationid | une:1959.11/51538 | en |
local.date.onlineversion | 2019-10-01 | - |
dc.identifier.academiclevel | Academic | en |
dc.identifier.academiclevel | Academic | en |
dc.identifier.academiclevel | Academic | en |
dc.identifier.academiclevel | Academic | en |
dc.identifier.academiclevel | Academic | en |
local.title.maintitle | Wheat-derived soil organic carbon accumulates more than its maize counterpart in a wheat–maize cropping system after 21 years | en |
local.relation.fundingsourcenote | This work was supported by the National Key Research and Development Program of China (2016YFD0300305), Major Project of Chinese Academy of Science (KFZD-SW-112) and National Key Research and Development Program of China (2018YFD0300504). | en |
local.output.categorydescription | C1 Refereed Article in a Scholarly Journal | en |
local.search.author | Dong, Xinliang | en |
local.search.author | Sun, Hongyong | en |
local.search.author | Wang, Jintao | en |
local.search.author | Liu, Xiaojing | en |
local.search.author | Singh, Bhupinder Pal | en |
local.uneassociation | Yes | en |
local.atsiresearch | No | en |
local.sensitive.cultural | No | en |
local.identifier.wosid | 000545477900011 | en |
local.year.available | 2019 | en |
local.year.published | 2020 | en |
local.fileurl.closedpublished | https://rune.une.edu.au/web/retrieve/c4b9ea96-0757-4426-8eae-1ea4da1d43ee | en |
local.subject.for2020 | 300403 Agronomy | en |
local.subject.seo2020 | 280101 Expanding knowledge in the agricultural, food and veterinary sciences | en |
Appears in Collections: | Journal Article School of Environmental and Rural Science |
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