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For instance, differentially-expressed genes in the hybrid are mostly related to enhancing carbon assimilation, energy metabolism, and biosynthesis of secondary metabolites; this effect is not due to simple distribution bias in the overall gene distribution since other categories were found decreased in the hybrid, such as protein sorting/folding/degradation in leaves.
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Metabolic models of growth generally describe growth rate as a function of the assimilation of energy resources minus energy loss, largely through respiration (Winberg 1956; Thompson and Bayne 1974; Koehn and Bayne 1989).
The assimilation of energy storage units in power system can curtail the oscillations energetically by contributing fast active power compensation.
Some microorganisms could enzymatically reduce a variety of metals in metabolic processes that are not related to metal assimilation, conserving energy to support growth by coupling the oxidation of simple organic acids and alcohols, H2, or aromatic compounds to the reduction of Fe(III) or Mn(IV) [3].
One of the major functions of CRP in E. coli involves the transcriptional regulation of genes related to organic carbon assimilation and energy metabolism [ 3, 4].
The D. phosphitoxidans genome contains all genes necessary for the Wood-Ljungdahl pathway, which operates both in CO2 assimilation and energy metabolism.
Figure 5C summarizes the patterns of gene expression as a composite heat map for carbon source assimilation and energy production leading to growth of Francisella in the macrophage and in vitro.
Considering that the degradome library was constructed using developing soybean seeds, the gma-miR1530 may be responsible for the switch from carbon assimilation to energy metabolism during seed development by silencing the transketolase gene.
Phosphotransacetylase (Pta) [EC 2.3.1.8] is ubiquitous in the carbon assimilation and energy-yielding pathways in anaerobic prokaryotes where it catalyzes the reversible transfer of the acetyl group from acetyl phosphate to CoA forming acetyl CoA and inorganic phosphate.
In addition, leaf chlorophyll content [1], nutrient uptake [3,23-26] and the activities of enzymes involved in several physiological pathways, such as nitrogen assimilation [3,24,25,27] and energy metabolism [28-30] [28-30]o be poseemvely affectod be HS.
These data indicate that mass-specific daily metabolic rate and energy assimilation efficiency (an indicative of digestive and absorptive processes) may be responsible for differential tissue Cd accumulation in the bank vole.
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