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Characterisation of a low methane emission rice cultivar suitable for cultivation in high latitude light and temperature conditions

Publikation: Bidrag till tidskriftArtikel i vetenskaplig tidskriftPeer review

Sammanfattning

Rice cultivation on paddy soil is commonly associated with emissions of methane, a greenhouse gas, but rice varieties may differ in their actual level of emissions. This study analysed methane emissions associated with 22 distinct rice genotypes, using gas chromatography, and identified the cultivar Heijing 5 from northern China as a potential low-methane rice variety. To confirm this and to examine whether Heijing 5 can perform similarly at higher latitudes, Heijing 5 was cultivated in field trials in China (lat. 32 & DEG; N) and Sweden (lat. 59 & DEG; N) where (i) methane emissions were measured, (ii) methanogen abundance in the rhizosphere was determined using quantitative PCR, and (iii) the concentrations of nutrients in water and of heavy metals in rice grain and paddy soil were analysed. The results demonstrated that the low-methane rice cultivar Heijing 5 can successfully complete an entire growth period at high-latitude locations such as central Sweden. Massively parallel sequencing of mRNAs identified candidate genes involved in day length and cold acclimatisation. Cultivation of Heijing 5 in central Sweden was also associated with relatively low heavy metal accumulation in rice grains and lowered nutrient losses to neighbouring water bodies.
OriginalspråkEngelska
Sidor (från-till)92950-92962
Antal sidor13
TidskriftEnvironmental Science and Pollution Research
Volym30
Nummer40
DOI
StatusPublicerad - 2023

Bibliografisk information

Publisher Copyright:
© 2023, The Author(s).

FN:s SDG:er

Detta resultat bidrar till följande hållbara utvecklingsmål:

  1. SDG 2 – Ingen hunger
    SDG 2 – Ingen hunger
  2. SDG 13 – Bekämpa klimatförändringarna
    SDG 13 – Bekämpa klimatförändringarna

Nyckelord

  • Global warming potential
  • Heavy metals
  • High latitude
  • Methane emission
  • Rice cultivation
  • Sustainable agriculture

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