Matches in SemOpenAlex for { <https://semopenalex.org/work/W3123141483> ?p ?o ?g. }
- W3123141483 endingPage "111952" @default.
- W3123141483 startingPage "111952" @default.
- W3123141483 abstract "The accumulation of cadmium (Cd) in Oryza sativa L., the world’s most significant staple crop, is a health threat to millions of people. The objective of this study was to evaluate the effectiveness of commercially available biofertilizers (with high (BF2) and low organic matter (OM) content (BF1)) on Cd accumulation in two types of soils and to determine the bacterial community responses by high-throughput sequencing. The study was conducted in the form of pot experiment in greenhouse in 2018. Four treatments were set: BF1, BF2, organic fertilizer (OF), and control (CK) and the amendments were applied before the rice cultivation. The results showed that the addition of biofertilizers immobilized or mobilized Cd in soils, depending on the soil type and the OM content in biofertilizers. The exogenous OM in biofertilizers was the driving factor for the difference in pH and Cd accumulation in rice grains. The application of biofertilizers with high OM content was effective in reducing Cd accumulation in the rice grains (19.7% lower than CK) by significantly increasing soil pH (from 6.02 to 6.67) in acid silt loam soil (TZ). The consumption of acid fermentation products by soil chemoorganotrophs and the complexation of organic anions in the biofertilizer treatment tended to buffer the pH drop in the drainage and decrease the Cd availability. However, in the weak acid silty clay loam soil (SX), the addition of biofertilizer with high OM significantly increased Cd accumulation in rice grains (21.9% higher than CK), probably owing to the release of acid substances, resulting from the significant increase of the predominant bacteria Chloroflexi. The addition of biofertilizer with low OM content did not significantly change Cd accumulation in rice grains or affect the soil microbial structures in both soils. In conclusion, the effects of biofertilizer on rice Cd accumulation were related to the OM content and soil bacterial community. Biofertilizers with high organic matter may not be suitable for amendments in the paddy soils with high clay content to reduce Cd accumulation in rice grains." @default.
- W3123141483 created "2021-02-01" @default.
- W3123141483 creator A5000738637 @default.
- W3123141483 creator A5011424635 @default.
- W3123141483 creator A5023073854 @default.
- W3123141483 creator A5040378988 @default.
- W3123141483 creator A5043920046 @default.
- W3123141483 creator A5074198026 @default.
- W3123141483 creator A5080363965 @default.
- W3123141483 date "2021-03-01" @default.
- W3123141483 modified "2023-10-16" @default.
- W3123141483 title "Biofertilizer-induced response to cadmium accumulation in Oryza sativa L. grains involving exogenous organic matter and soil bacterial community structure" @default.
- W3123141483 cites W1574399077 @default.
- W3123141483 cites W1988620061 @default.
- W3123141483 cites W1992464263 @default.
- W3123141483 cites W1992699945 @default.
- W3123141483 cites W1999185871 @default.
- W3123141483 cites W2002714080 @default.
- W3123141483 cites W2013721986 @default.
- W3123141483 cites W2023118750 @default.
- W3123141483 cites W2029582175 @default.
- W3123141483 cites W2034285706 @default.
- W3123141483 cites W2039769751 @default.
- W3123141483 cites W2042535760 @default.
- W3123141483 cites W2059905960 @default.
- W3123141483 cites W2072970694 @default.
- W3123141483 cites W2075618596 @default.
- W3123141483 cites W2075712889 @default.
- W3123141483 cites W2083080620 @default.
- W3123141483 cites W2088833470 @default.
- W3123141483 cites W2091442279 @default.
- W3123141483 cites W2091917528 @default.
- W3123141483 cites W2096577876 @default.
- W3123141483 cites W2098178163 @default.
- W3123141483 cites W2103474203 @default.
- W3123141483 cites W2128974076 @default.
- W3123141483 cites W2133856765 @default.
- W3123141483 cites W2136879569 @default.
- W3123141483 cites W2140589960 @default.
- W3123141483 cites W2141462553 @default.
- W3123141483 cites W2152856675 @default.
- W3123141483 cites W2152885278 @default.
- W3123141483 cites W2154736508 @default.
- W3123141483 cites W2157107905 @default.
- W3123141483 cites W2162748063 @default.
- W3123141483 cites W2308522790 @default.
- W3123141483 cites W2469870954 @default.
- W3123141483 cites W2740320511 @default.
- W3123141483 cites W2740382444 @default.
- W3123141483 cites W2742290435 @default.
- W3123141483 cites W2749115738 @default.
- W3123141483 cites W2886732003 @default.
- W3123141483 cites W2900485370 @default.
- W3123141483 cites W2909680672 @default.
- W3123141483 cites W2941935575 @default.
- W3123141483 cites W2943683284 @default.
- W3123141483 cites W2976537873 @default.
- W3123141483 cites W3008605095 @default.
- W3123141483 cites W3022502855 @default.
- W3123141483 cites W3037921423 @default.
- W3123141483 cites W3046808342 @default.
- W3123141483 cites W782864282 @default.
- W3123141483 doi "https://doi.org/10.1016/j.ecoenv.2021.111952" @default.
- W3123141483 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33513523" @default.
- W3123141483 hasPublicationYear "2021" @default.
- W3123141483 type Work @default.
- W3123141483 sameAs 3123141483 @default.
- W3123141483 citedByCount "10" @default.
- W3123141483 countsByYear W31231414832021 @default.
- W3123141483 countsByYear W31231414832022 @default.
- W3123141483 countsByYear W31231414832023 @default.
- W3123141483 crossrefType "journal-article" @default.
- W3123141483 hasAuthorship W3123141483A5000738637 @default.
- W3123141483 hasAuthorship W3123141483A5011424635 @default.
- W3123141483 hasAuthorship W3123141483A5023073854 @default.
- W3123141483 hasAuthorship W3123141483A5040378988 @default.
- W3123141483 hasAuthorship W3123141483A5043920046 @default.
- W3123141483 hasAuthorship W3123141483A5074198026 @default.
- W3123141483 hasAuthorship W3123141483A5080363965 @default.
- W3123141483 hasBestOaLocation W31231414831 @default.
- W3123141483 hasConcept C104317684 @default.
- W3123141483 hasConcept C113578266 @default.
- W3123141483 hasConcept C126408429 @default.
- W3123141483 hasConcept C144027150 @default.
- W3123141483 hasConcept C159750122 @default.
- W3123141483 hasConcept C178790620 @default.
- W3123141483 hasConcept C182124840 @default.
- W3123141483 hasConcept C185592680 @default.
- W3123141483 hasConcept C18903297 @default.
- W3123141483 hasConcept C192039558 @default.
- W3123141483 hasConcept C198072978 @default.
- W3123141483 hasConcept C2778543611 @default.
- W3123141483 hasConcept C2780560099 @default.
- W3123141483 hasConcept C48743137 @default.
- W3123141483 hasConcept C55493867 @default.
- W3123141483 hasConcept C6557445 @default.
- W3123141483 hasConcept C86803240 @default.
- W3123141483 hasConceptScore W3123141483C104317684 @default.