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111.
Kaisa Hakkila Taras Antal Ateeq Ur Rehman Juha Kurkela Hajime Wada Imre Vass Esa Tyystjärvi Taina Tyystjärvi 《BBA》2014
Roles of oxidative stress and photoinhibition in high light acclimation were studied using a regulatory mutant of the cyanobacterium Synechocystis sp. PCC 6803. The mutant strain ΔsigCDE contains the stress responsive SigB as the only functional group 2 σ factor. The ?sigCDE strain grew more slowly than the control strain in methyl-viologen-induced oxidative stress. Furthermore, a fluorescence dye detecting H2O2, hydroxyl and peroxyl radicals and peroxynitrite, produced a stronger signal in ?sigCDE than in the control strain, and immunological detection of carbonylated residues showed more protein oxidation in ?sigCDE than in the control strain. These results indicate that ?sigCDE suffers from oxidative stress in standard conditions. The oxidative stress may be explained by the findings that ?sigCDE had a low content of glutathione and low amount of Flv3 protein functioning in the Mehler-like reaction. Although ?sigCDE suffers from oxidative stress, up-regulation of photoprotective carotenoids and Flv4, Sll2018, Flv2 proteins protected PSII against light induced damage by quenching singlet oxygen more efficiently in ?sigCDE than in the control strain in visible and in UV-A/B light. However, in UV-C light singlet oxygen is not produced and PSII damage occurred similarly in the ?sigCDE and control strains. According to our results, resistance against the light-induced damage of PSII alone does not lead to high light tolerance of the cells, but in addition efficient protection against oxidative stress would be required. 相似文献
112.
113.
Thermotolerant and thermostable laccases 总被引:1,自引:0,他引:1
Laccases are phenol-oxidizing, usually four-copper containing metalloenzymes. For industrial and biotechnological purposes,
laccases were among the first fungal oxidoreductases providing larger-scale applications such as removal of polyphenols in
wine and beverages, conversion of toxic compounds and textile dyes in waste waters, and in bleaching and removal of lignin
from wood and non-wood fibres. In order to facilitate novel and more efficient bio-catalytic process applications, there is
a need for laccases with improved biochemical properties, such as thermostability and thermotolerance. This review gives a
current overview on the sources and characteristics of such laccases, with particular emphasis on the fungal enzymes. 相似文献
114.
Photoinhibition of Photosystem II (PSII) in lincomycin-treated leaves begins as a first-order reaction, but fluorescence measurements
have suggested that after prolonged illumination, the number of active PSII centres stabilizes to 15–20% of control. The stabilization
has been interpreted to indicate that photoinhibited PSII centres protect the remaining active centres against photoinhibition
(Lee, Hong and Chow, Planta 212:332–342, 2001). In an attempt to study the mechanism of this protection, we measured the reaction
kinetics of photoinhibition in lincomycin-treated pumpkin (Cucurbita pepo L.) and pepper (Capsicum annuum L.) leaves in vivo. The light-saturated rate of PSII oxygen evolution, assayed from thylakoids and isolated from the treated
leaves, was used as a direct measure of the number of remaining active PSII centres, and the fluorescence parameters F
V/F
M and (F
V/F
M)/F
0 (=1/F
0 − 1/F
M) were measured for comparison. To our surprise, no stabilization of PSII activity was observed and photoinhibition followed
first-order kinetics until PSII activity had virtually declined to zero. A series of in vitro experiments was carried out
to see whether stabilization of PSII activity occurs if a particular combination of light intensity and wavelength range is
applied, or if a specific PSII preparation is used as experimental material. The results of the in vitro experiments confirmed
the in vivo result about persistent first-order kinetics. We conclude that photoinhibited PSII centres offer no measurable
protection against photoinhibition. 相似文献
115.
116.
Krista Peltoniemi Sylwia Adamczyk Hannu Fritze Kari Minkkinen Taina Pennanen Timo Penttilä Tytti Sarjala Raija Laiho 《Environmental microbiology》2021,23(10):5733-5749
A substantial amount of below-ground carbon (C) is suggested to be associated with fungi, which may significantly affect the soil C balance in forested ecosystems. Ergosterol from in-growth mesh bags and litterbags was used to estimate fungal biomass production and community composition in drained peatland forests with differing fertility. Extramatrical mycelia (EMM) biomass production was generally higher in the nutrient-poor site, increased with deeper water table level and decreased along the length of the recovery time. EMM biomass production was of the same magnitude as in mineral-soil forests. Saprotrophic fungal biomass production was higher in the nutrient-rich site. Both ectomycorrhizal (ECM) and saprotrophic fungal community composition changed according to site fertility and water table level. ECM fungal community composition with different exploration types may explain the differences in fungal biomass production between peatland forests. Melanin-rich Hyaloscypha may indicate decreased turnover of biomass in nutrient-rich young peatland forest. Genera Lactarius and Laccaria may be important in nutrient rich and Piloderma in the nutrient-poor conditions, respectively. Furthermore, Paxillus involutus and Cortinarius sp. may be important generalists in all sites and responsible for EMM biomass production during the first summer months. Saprotrophs showed a functionally more diverse fungal community in the nutrient-rich site. 相似文献
117.
Sysi-Aho M Ermolov A Gopalacharyulu PV Tripathi A Seppänen-Laakso T Maukonen J Mattila I Ruohonen ST Vähätalo L Yetukuri L Härkönen T Lindfors E Nikkilä J Ilonen J Simell O Saarela M Knip M Kaski S Savontaus E Orešič M 《PLoS computational biology》2011,7(10):e1002257
Recent evidence from serum metabolomics indicates that specific metabolic disturbances precede β-cell autoimmunity in humans and can be used to identify those children who subsequently progress to type 1 diabetes. The mechanisms behind these disturbances are unknown. Here we show the specificity of the pre-autoimmune metabolic changes, as indicated by their conservation in a murine model of type 1 diabetes. We performed a study in non-obese prediabetic (NOD) mice which recapitulated the design of the human study and derived the metabolic states from longitudinal lipidomics data. We show that female NOD mice who later progress to autoimmune diabetes exhibit the same lipidomic pattern as prediabetic children. These metabolic changes are accompanied by enhanced glucose-stimulated insulin secretion, normoglycemia, upregulation of insulinotropic amino acids in islets, elevated plasma leptin and adiponectin, and diminished gut microbial diversity of the Clostridium leptum group. Together, the findings indicate that autoimmune diabetes is preceded by a state of increased metabolic demands on the islets resulting in elevated insulin secretion and suggest alternative metabolic related pathways as therapeutic targets to prevent diabetes. 相似文献
118.
Joose Kreutzer Laura Ylä-Outinen Paula Kärnä Tiina Kaarela Jarno Mikkonen Heli Skottman Susanna Narkilahti Pasi Kallio 《仿生工程学报(英文版)》2012,9(1):1-10
Structured poly(dimethylsiloxane) (PDMS) chambers were designed and fabricated to enhance the signaling of human Embryonic Stem Cell (hESC) - derived neuronal networks on Microelectrode Array (MEA) platforms.The structured PDMS chambers enable cell seeding on restricted areas and thus,reduce the amount of needed coating materials and cells.In addition,the neuronal cells formed spontaneously active networks faster in the structured PDMS chambers than that in control chainbers.In the PDMS chambers,the neuronal networks were more active and able to develop their signaling into organized signal trains faster than control cultures.The PDMS chamber design enables much more repeatable analysis and rapid growth of functional neuronal network in vitro.Moreover,due to its easy and cheap fabrication process,new configurations can be easily fabricated based on investigator requirements. 相似文献
119.
Vaario LM Heinonsalo J Spetz P Pennanen T Heinonen J Tervahauta A Fritze H 《Mycorrhiza》2012,22(6):409-418
Tricholoma matsutake is an economically important ectomycorrhizal fungus of coniferous woodlands. Mycologists suspect that this fungus is also capable of saprotrophic feeding. In order to evaluate this hypothesis, enzyme and chemical assays were performed in the field and laboratory. From a natural population of T. matsutake in southern Finland, samples of soil-mycelium aggregate (shiro) were taken from sites of sporocarp formation and nearby control (PCR-negative) spots. Soil organic carbon and activity rates of hemicellulolytic enzymes were measured. The productivity of T. matsutake was related to the amount of utilizable organic carbon in the shiro, where the activity of xylosidase was significantly higher than in the control sample. In the laboratory, sterile pieces of bark from the roots of Scots pine were inoculated with T. matsutake and the activity rates of two hemicellulolytic enzymes (xylosidase and glucuronidase) were assayed. Furthermore, a liquid culture system showed how T. matsutake can utilize hemicellulose as its sole carbon source. Results linked and quantified the general relationship between enzymes secreted by T. matsutake and the degradation of hemicellulose. Our findings suggest that T. matsutake lives mainly as an ectomycorrhizal symbiont but can also feed as a saprotroph. A flexible trophic ecology confers T. matsutake with a clear advantage in a heterogeneous environment and during sporocarp formation. 相似文献
120.
Wallenius K Lappi K Mikkonen A Wickström A Vaalama A Lehtinen T Suominen L 《Biodegradation》2012,23(1):47-55
We describe a simplified microplate most-probable-number (MPN) procedure to quantify the bacterial naphthalene degrader population
in soil samples. In this method, the sole substrate naphthalene is dosed passively via gaseous phase to liquid medium and
the detection of growth is based on the automated measurement of turbidity using an absorbance reader. The performance of
the new method was evaluated by comparison with a recently introduced method in which the substrate is dissolved in inert
silicone oil and added individually to each well, and the results are scored visually using a respiration indicator dye. Oil-contaminated
industrial soil showed slightly but significantly higher MPN estimate with our method than with the reference method. This
suggests that gaseous naphthalene was dissolved in an adequate concentration to support the growth of naphthalene degraders
without being too toxic. The dosing of substrate via gaseous phase notably reduced the work load and risk of contamination.
The result scoring by absorbance measurement was objective and more reliable than measurement with indicator dye, and it also
enabled further analysis of cultures. Several bacterial genera were identified by cloning and sequencing of 16S rRNA genes
from the MPN wells incubated in the presence of gaseous naphthalene. In addition, the applicability of the simplified MPN
method was demonstrated by a significant positive correlation between the level of oil contamination and the number of naphthalene
degraders detected in soil. 相似文献