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M. truncatula homologues of the Arabidopsis major intrinsic protein (MIP) gene AtNIP5 1 and the efflux-type transporter gene AtBOR1, both known for B transport, were identified and nearby molecular markers screened across F2 lines to verify linkage with the B-tolerant phenotype.
Numerous genes involved in transport were identified as Bvg-repressed, including twenty-seven ABC transporters and TonB-dependent receptors, such as bfrG BB1294 (-2.86-fold) and BB1942B1942 (-2.80-fold) (Tande 2 and see Additional File 1- Supplementary Table S3).
Below this critical size, transport of DOM is MW dependent and two major types of transport were identified.
Physicochemical filtration, time-dependent blocking due to filling of favorable attachment sites and colloid-facilitated transport were identified as the major processes for AgNP mobility.
A total of 18 putative copper resistance genes, orthologous to genes associated with copper homeostasis and copper transport, were identified at six locations of the P. putida strain S13.1.2 genome (Fig. 2; Additional file 1: Table S1).
It was of interest to note that biological processes previously described as relevant to FDG uptake, like glycolysis and glucose transport, were identified in the bioinformatics analysis carried out in the present work.
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Dominant modes of transport are identified.
A theoretical ideal, so-called critical pneumatic moving-bed transport, is identified.
Key dimensions of role model endorsement in transport are identified and applied to a series of examples of how celebrity and political role models have influenced transport cultures.
A size-dependence in transport was identified – 10 and 50 nm anionic (uncoated or methyl-PEGylated) SiNP showed higher transport compared to the larger 100 and 200 nm SiNP.
Based on this assessment, existing models which are able to address the effects of non-unity Lewis number on turbulent scalar flux transport are identified, and new or modified models are suggested wherever necessary.
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