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Results show that (i) ChlSPAD and FM decreased concurrently with the onset and time development of foliar injury (suggesting a degradation of chlorophyll due to an excess of the total oxidative stress), with a much stronger reduction when the injury becomes widespread (reduction of chlorophyll due to increased necrotic surface).
Combined Hoxd1 and XMeis3 loss-of-function also indicates synergy; while sub optimal amounts of either morpholino against Hoxd1 or XMeis3 led to a reduction of Hoxd1 expression, the combination led to a much stronger reduction.
On the other hand, the Western blot data indicates a much stronger reduction of around 90% (contradicting the flow cytometry data somewhat).
In Sgca-; Sgce-null skeletal and cardiac muscle, there was a much stronger reduction in dystrophin and dystroglycan expression compared with that of Sgca-null mice.
α-dystroglycan, β-dystroglycan and dystrophin were also reduced in comparison to wild-type animals, but, interestingly, the Sgca-; Sgce-null mice dystrophin showed a much stronger reduction compared with the Sgca-null mice in which it is already reduced.
In comparison, the more specific compound PP2 that only inhibits the Src family of tyrosine kinases caused a much stronger reduction in cell number, in particular at the 10 μmol/l concentration.
Similar(50)
Treatment for 96 h with a combined drug treatment led to much stronger reductions in survival of all wild-type p53 TC cell lines tested, as compared with single drug treatment with cisplatin or Nutlin-3.
Furthermore, the industry sector has much strong reduction potentials than the other sectors.
Overexpression of the poplar orthologue, PtGA2ox, on the other hand, showed a much stronger height reduction as well as a reduction in size of all aerial organs.
Osmotic stress induced by KCl or glucose led to a similar growth reduction in the wild-type and the mutant strains, and the same was observed for the ER stress-inducing agent dithiothreitol (DTT); however, cell-wall stress induced by sodium dodecyl sulfate (SDS) in the medium led to much stronger growth reduction in the four Δchs7 deletion strains than in the wild type.
However, it is possible that reduction of Jak phosphorylation is also partially due to a reduction of Jak protein levels upon AG17 treatment but the reduction of phosphorylation is much stronger compared to reduction of Jak protein levels.
More suggestions(15)
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much stronger today
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com