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Besides, the adsorption of CHx species can regulate the electronic structure and magnetic properties of M-graphene systems.
Nitric oxide (NO) and reactive oxygen species can regulate EPC functions.
This finding suggested a mechanism whereby this species can regulate its capacity for GT on the leaves.
Many Gram-negative bacteria use N-acyl homoserine lactones (AHLs) as QS signal molecules, and AHLs from one species can regulate the behaviour of another species.
Atresia in any species can regulate the number of oocytes ovulated and contribute to the timing of ovulation in a reproductive cycle.
In addition, both species can regulate oxygen uptake down to concentrations of approximately 2-2.5 and 3.4 ppm respectively [ 63, 64].
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It is reported that reactive oxygen species (ROS) can regulate MAPK and NFKB signaling pathways, thus generation of ROS in MSCs was examined.
miRNAs are a class of small, non-coding RNAs 17 25 nucleotides in length that are conserved across species and can regulate gene expression by binding to complementary sequences in the 3′- untranslated regions of target mRNAs [ 6, 9].
While autogenic engineers can increase habitat complexity passively and provide physical protection to other species, allogenic engineers can regulate sediment oxygenation and biogeochemistry through bioturbation and/or bioirrigation.
In other bacterial species, the fecIRA system can regulate iron uptake by other siderophores than citrate [ 34].
Depending on the cell type and species, caveolae or lipid rafts can regulate activation [38] or inhibition [39] of NADPH oxidase.
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