Matches in SemOpenAlex for { <https://semopenalex.org/work/W2273016821> ?p ?o ?g. }
- W2273016821 endingPage "45" @default.
- W2273016821 startingPage "35" @default.
- W2273016821 abstract "This study evaluated the effect of phloem translocation on Ni accumulation in the hyperaccumulator Noccaea caerulescens. The first experiment assessed the metal and organic compound concentrations in phloem sap. Leaves were cut from plants grown in nutrient solutions added with 100 μM Ni or Zn, and then used for phloem sap extraction by means of the EDTA-stimulated exudation method. In the second experiment, 61Ni2+ was applied to old leaves as a foliar spray to assess bidirectional movement of Ni in phloem. In the first experiment, enrichment of Ni or Zn was found in phloem exudates, indicating high Ni and Zn phloem loading and translocation capacity in N. caerulescens. Amino acids, e.g. nicotianamine and histidine, were present at low concentrations in exudates, which are insufficient for Ni and Zn chelation. On the contrary, concentrations of organic acids, especially malate, were high in all treatments, which may be involved in Ni and Zn chelation in phloem. The second experiment showed that 89 % of 61Ni exported from old leaves was translocated upward to young leaves, whereas only 11 % moved downward to roots. Phloem sap of N. caerulescens is enriched in Ni and malate, the majority of which moves upward to young tissues. Phloem translocation may play an important role for Ni accumulation in young leaves of N. caerulescens." @default.
- W2273016821 created "2016-06-24" @default.
- W2273016821 creator A5002463028 @default.
- W2273016821 creator A5006541287 @default.
- W2273016821 creator A5024084276 @default.
- W2273016821 creator A5034886984 @default.
- W2273016821 creator A5042235241 @default.
- W2273016821 creator A5049501988 @default.
- W2273016821 creator A5064877299 @default.
- W2273016821 date "2016-02-11" @default.
- W2273016821 modified "2023-10-18" @default.
- W2273016821 title "Nickel translocation via the phloem in the hyperaccumulator Noccaea caerulescens (Brassicaceae)" @default.
- W2273016821 cites W1973619884 @default.
- W2273016821 cites W1980558055 @default.
- W2273016821 cites W1983100359 @default.
- W2273016821 cites W1985518777 @default.
- W2273016821 cites W1985895398 @default.
- W2273016821 cites W1992237230 @default.
- W2273016821 cites W1992729408 @default.
- W2273016821 cites W1993017782 @default.
- W2273016821 cites W1993036604 @default.
- W2273016821 cites W1994955748 @default.
- W2273016821 cites W2003892018 @default.
- W2273016821 cites W2003910296 @default.
- W2273016821 cites W2007456995 @default.
- W2273016821 cites W2008131835 @default.
- W2273016821 cites W2011875170 @default.
- W2273016821 cites W2017677378 @default.
- W2273016821 cites W2024667526 @default.
- W2273016821 cites W2024850681 @default.
- W2273016821 cites W2025985587 @default.
- W2273016821 cites W2036598195 @default.
- W2273016821 cites W2039071784 @default.
- W2273016821 cites W2040243015 @default.
- W2273016821 cites W2047475990 @default.
- W2273016821 cites W2047597456 @default.
- W2273016821 cites W2048557200 @default.
- W2273016821 cites W2050503989 @default.
- W2273016821 cites W2060023193 @default.
- W2273016821 cites W2072464339 @default.
- W2273016821 cites W2074445570 @default.
- W2273016821 cites W2085893561 @default.
- W2273016821 cites W2094839630 @default.
- W2273016821 cites W2099871540 @default.
- W2273016821 cites W2101448961 @default.
- W2273016821 cites W2102347664 @default.
- W2273016821 cites W2108553210 @default.
- W2273016821 cites W2123745023 @default.
- W2273016821 cites W2128197300 @default.
- W2273016821 cites W2130999504 @default.
- W2273016821 cites W2132178320 @default.
- W2273016821 cites W2133479412 @default.
- W2273016821 cites W2141326388 @default.
- W2273016821 cites W2148909277 @default.
- W2273016821 cites W2150037838 @default.
- W2273016821 cites W2161166205 @default.
- W2273016821 cites W2166462057 @default.
- W2273016821 cites W2168745285 @default.
- W2273016821 cites W242201003 @default.
- W2273016821 cites W637603433 @default.
- W2273016821 doi "https://doi.org/10.1007/s11104-016-2825-1" @default.
- W2273016821 hasPublicationYear "2016" @default.
- W2273016821 type Work @default.
- W2273016821 sameAs 2273016821 @default.
- W2273016821 citedByCount "48" @default.
- W2273016821 countsByYear W22730168212016 @default.
- W2273016821 countsByYear W22730168212017 @default.
- W2273016821 countsByYear W22730168212018 @default.
- W2273016821 countsByYear W22730168212019 @default.
- W2273016821 countsByYear W22730168212020 @default.
- W2273016821 countsByYear W22730168212021 @default.
- W2273016821 countsByYear W22730168212022 @default.
- W2273016821 countsByYear W22730168212023 @default.
- W2273016821 crossrefType "journal-article" @default.
- W2273016821 hasAuthorship W2273016821A5002463028 @default.
- W2273016821 hasAuthorship W2273016821A5006541287 @default.
- W2273016821 hasAuthorship W2273016821A5024084276 @default.
- W2273016821 hasAuthorship W2273016821A5034886984 @default.
- W2273016821 hasAuthorship W2273016821A5042235241 @default.
- W2273016821 hasAuthorship W2273016821A5049501988 @default.
- W2273016821 hasAuthorship W2273016821A5064877299 @default.
- W2273016821 hasConcept C104317684 @default.
- W2273016821 hasConcept C107872376 @default.
- W2273016821 hasConcept C114260506 @default.
- W2273016821 hasConcept C138626823 @default.
- W2273016821 hasConcept C179104552 @default.
- W2273016821 hasConcept C185592680 @default.
- W2273016821 hasConcept C197404232 @default.
- W2273016821 hasConcept C2775943906 @default.
- W2273016821 hasConcept C2776053758 @default.
- W2273016821 hasConcept C35496372 @default.
- W2273016821 hasConcept C55493867 @default.
- W2273016821 hasConcept C59822182 @default.
- W2273016821 hasConcept C63797996 @default.
- W2273016821 hasConcept C86803240 @default.
- W2273016821 hasConceptScore W2273016821C104317684 @default.
- W2273016821 hasConceptScore W2273016821C107872376 @default.
- W2273016821 hasConceptScore W2273016821C114260506 @default.