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151.
Johannes W. S. A. Osterloh Arjan C. Videler Gina M. P. Rossi Sebastiaan P. J. van Alphen 《Tijdschrift voor gerontologie en geriatrie》2018,49(5):210-212
Behavioural counselling by nurses can enhance quality of life in elderly with a personality disorder. Although nurses have a crucial role in day-to-day treatment, there is a lack of evidence-based approaches. Based on the cognitive therapy, the treatment protocol Cognitive Model for Behavioural Interventions (CoMBI) provides an alternative nursing approach for personality disorders. 相似文献
152.
The construction of inulin-assimilating and sorbitol-producing fusants was achieved by intergeneric protoplast fusion between Kluyveromyces sp. Y-85 and Saccharomyces cerevisiae E-15. The cells of parental strains were pretreated with 0.1% EDTA (w/v) and 2-mercaptoethanol (0.1%, v/v) and then exposed to 2.0% (w/v) Zymolase at 30 °C for 30–40 min. The optimized fusion condition demonstrated that with the presence of 30% (w/v) polyethylene glycol 6000 (PEG-6000) and 10 mM CaCl2 for 30 min, the fusion frequency reached 2.64 fusants/106 parental cells. The fusants were screened by different characters between two parental strains and further identified by DNA contents, inulinase activity and sorbitol productivity. One of the genetically stable fusants, Strain F27, reached a maximal sorbitol production of 4.87 g/100 ml under optimal fermentation condition. 相似文献
153.
Background
Understanding the adaptive changes that alter the function of proteins during evolution is an important question for biology and medicine. The increasing number of completely sequenced genomes from closely related organisms, as well as individuals within species, facilitates systematic detection of recent selection events by means of comparative genomics. 相似文献154.
Numerous empirical studies have examined ontogenetic trajectories in plant defenses but only a few have explored the potential
mechanisms underlying those patterns. Furthermore, most documented ontogenetic trajectories in plant defenses have generally
concentrated on aboveground tissues; thus, our knowledge regarding whole plant trends in plant defenses throughout development
or potential allocation constraints between growth and defenses is limited. Here, we document changes in plant biomass, nutritional
quality and chemical defenses for below- and aboveground tissues across seven age classes of Plantago lanceolata (Plantaginaceae) to evaluate: (1) partial and whole plant ontogenetic trajectories in constitutive chemical defenses and
nutritional quality, and (2) the role of resource allocation constraints, namely root:shoot (R:S) ratios, in explaining whole
plant investment in chemical defenses over time. Overall investment in iridoid glycosides (IGs) significantly increased, while
water and nitrogen concentrations in shoot tissues decreased with plant age. Significant variation in IG content between shoot
and root tissues across development was observed: allocation of IGs into root tissues linearly increased from younger to older
plants, while non-linear shifts in allocation of IGs during ontogeny were observed for shoot tissues. Finally, R:S ratios
only weakly explained overall allocation of resources into defenses, with young stages showing a positive relationship, while
older stages showed a negative relationship between R:S ratios and IG concentrations. Ontogenetic trajectories in plant quality
and defenses within and among plant tissues can strongly influence insect herbivores’ performance and/or predation risk; thus,
they are likely to play a significant role in mediating species interactions. 相似文献
155.
156.
Many biological processes, from cellular metabolism to population dynamics, are characterized by particular allometric scaling (power-law) relationships between size and rate. Although such allometric relationships may be under genetic determination, their precise genetic mechanisms have not been clearly understood due to a lack of a statistical analytical method. In this paper, we present a basic statistical framework for mapping quantitative genes (or quantitative trait loci, QTL) responsible for universal quarter-power scaling laws of organic structure and function with the entire body size. Our model framework allows the testing of whether a single QTL affects the allometric relationship of two traits or whether more than one linked QTL is segregating. Like traditional multi-trait mapping, this new model can increase the power to detect the underlying QTL and the precision of its localization on the genome. Beyond the traditional method, this model is integrated with pervasive scaling laws to take advantage of the mechanistic relationships of biological structures and processes. Simulation studies indicate that the estimation precision of the QTL position and effect can be improved when the scaling relationship of the two traits is considered. The application of our model in a real example from forest trees leads to successful detection of a QTL governing the allometric relationship of third-year stem height with third-year stem biomass. The model proposed here has implications for genetic, evolutionary, biomedicinal and breeding research. 相似文献
157.
Eric Letouzé Yves Allory Marc A Bollet François Radvanyi Frédéric Guyon 《Genome biology》2010,11(7):R76
We present a computational method, TuMult, for reconstructing the sequence of copy number changes driving carcinogenesis,
based on the analysis of several tumor samples from the same patient. We demonstrate the reliability of the method with simulated
data, and describe applications to three different cancers, showing that TuMult is a valuable tool for the establishment of
clonal relationships between tumor samples and the identification of chromosome aberrations occurring at crucial steps in
cancer progression. 相似文献
158.
159.
Dinh-Toi Chu Yang Tao Le Hoang Son Duc-Hau Le 《Journal of physiology and biochemistry》2016,73(3):315-321
Recent investigations have showed that the functional thermogenic adipocytes are present in both infants and adult humans. Accumulating evidence suggests that the coexistence of classical and inducible brown (brite) adipocytes in humans at adulthood and these adipocytes function to generate heat from energy resulting in reducing body fat and improving glucose metabolism. Human thermogenic adipocytes can be differentiated in vitro from stem cells, cell lines, or adipose stromal vascular fraction. Pre-activated human brite adipocytes in vitro can maintain their thermogenic function in normal or obese immunodeficient mice; therefore, they improve glucose homeostasis and reduce fat mass in obese animals. These key findings have opened a new door to use in vitro thermogenic adipocytes as a cell therapy to prevent obesity and related disorders. Thus, this paper intends to highlight our knowledge in aspects of in vitro human brite/brown adipocytes for the further studies. 相似文献
160.
Zhang H Cai J Dong J Zhang D Huang L Xu Z Cen P 《Applied microbiology and biotechnology》2011,92(2):295-303
Poly (β-l-malic acid) (PMLA) is a water-soluble polyester with many attractive properties in chemical industry and medicine development.
However, the low titer of PMLA in the available producer strains limits further industrialization efforts and restricts its
many potential applications. In order to solve this problem, a new strain with the distinguished high productivity of PMLA
was isolated from fresh plants samples. It was characterized as the candidate of Aureobasidium pullulans based on the morphology and phylogenetic analyses of the internal transcribed spacer sequences. After the optimization of
culture conditions, the highest PMLA concentration (62.27 g l−1) could be achieved in the shake flask scale. In addition, the contribution of the carbon flux to exopolysaccharide (EPS)
and PMLA could be regulated by the addition of CaCO3 in the medium. This high-level fermentation process was further scaled up in the 10 l benchtop fermentor with a high PMLA
concentration (57.2 g l−1) and productivity (0.35 g l−1 h−1), which are the highest level in all the literature. Finally, the suitable acid hydrolysis conditions of PMLA were also investigated
with regard to the production of l-malic acid, and the kinetics of PMLA acid hydrolysis was modeled to simulate the whole degradation process. The present work
paved the road to produce this multifunctional biomaterial (PMLA) at industrial scale and promised one alternative method
to produce l-malic acid in the future. 相似文献