45 research outputs found
Reviews and Syntheses: Ocean acidification and its potential impacts on marine ecosystems
Ocean acidification, a complex phenomenon that lowers seawater pH,
is the net outcome of several contributions. They include the dissolution of
increasing atmospheric CO<sub>2</sub> that adds up with dissolved inorganic
carbon (dissolved CO<sub>2</sub>, H<sub>2</sub>CO<sub>3</sub>, HCO<sub>3</sub><sup>−</sup>, and
CO<sub>3</sub><sup>2−</sup>) generated upon mineralization of primary producers (PP) and
dissolved organic matter (DOM). The aquatic processes leading to inorganic
carbon are substantially affected by increased DOM and nutrients via
terrestrial runoff, acidic rainfall, increased PP and algal blooms,
nitrification, denitrification, sulfate reduction, global warming (GW), and
by atmospheric CO<sub>2</sub> itself through enhanced photosynthesis. They are
consecutively associated with enhanced ocean acidification, hypoxia in
acidified deeper seawater, pathogens, algal toxins, oxidative stress by
reactive oxygen species, and thermal stress caused by longer stratification
periods as an effect of GW. We discuss the mechanistic insights into the
aforementioned processes and pH changes, with particular focus on processes
taking place with different timescales (including the diurnal one) in
surface and subsurface seawater. This review also discusses these collective
influences to assess their potential detrimental effects to marine organisms,
and of ecosystem processes and services. Our review of the effects operating
in synergy with ocean acidification will provide a broad insight into the
potential impact of acidification itself on biological processes. The
foreseen danger to marine organisms by acidification is in fact expected to
be amplified by several concurrent and interacting phenomena
Pirfenidone inhibits the expression of HSP47 in TGF-beta1-stimulated human lung fibroblasts.
Pirfenidone (5-methyl-1-phenyl-2-(1H)-pyridone) is a novel anti-fibrotic and anti-inflammatory agent that inhibits the progression of fibrosis in animal models and patients with idiopathic pulmonary fibrosis (IPF). Heat shock protein (HSP) 47, a collagen-specific molecular chaperone, is involved in the processing and/or secretion of procollagen and plays an important role in the pathogenesis of IPF. The present study evaluated the in vitro effects of pirfenidone on expression of HSP47 and collagen type I in cultured normal human lung fibroblasts (NHLF). Expression levels of HSP47 and collagen type I in NHLF stimulated by transforming growth factor (TGF)-beta1 were evaluated genetically, immunologically and immunocytochemically. Treatment with TGF-beta1 stimulated both mRNA and protein expressions of both HSP47 and collagen type I in NHLF, and pirfenidone significantly inhibited this TGF-beta1-enhanced expression in a dose-dependent manner. We concluded that the anti-fibrotic effect of pirfenidone may be mediated not only through direct inhibition of collagen type I expression but also at least partly through inhibition of HSP47 expression in lung fibroblasts, with a resultant reduction of collagen synthesis in lung fibrosis
Phospholipase Cbeta4 and protein kinase Calpha and/or protein kinase CbetaI are involved in the induction of long term depression in cerebellar Purkinje cells.
Activation of the type-1 metabotropic glutamate receptor (mGluR1) signaling pathway in the cerebellum involves activation of phospholipase C (PLC) and protein kinase C (PKC) for the induction of cerebellar long term depression (LTD). The PLC and PKC isoforms that are involved in LTD remain unclear, however. One previous study found no change in LTD in PKCgamma-deficient mice, thus, in the present study, we examined cerebellar LTD in PLCbeta4-deficient mice. Immunohistochemical and Western blot analyses of cerebellum from wild-type mice revealed that PLCbeta1 was expressed weakly and uniformly, PLCbeta2 was not detected, PLCbeta3 was expressed predominantly in caudal cerebellum (lobes 7-10), and PLCbeta4 was expressed uniformly throughout. In PLCbeta4-deficient mice, expression of total PLCbeta, the mGluR1-mediated Ca(2+) response, and LTD induction were greatly reduced in rostral cerebellum (lobes 1-6). Furthermore, we used immunohistochemistry to localize PKCalpha, -betaI, -betaII, and -gamma in mouse cerebellar Purkinje cells during LTD induction. Both PKCalpha and PKCbetaI were found to be translocated to the plasmamembrane under these conditions. Taken together, these results suggest that mGluR1-mediated activation of PLCbeta4 in rostral cerebellar Purkinje cells induced LTD via PKCalpha and/or PKCbetaI
Fundamental physics activities with pulsed neutron at J-PARC(BL05)
"Neutron Optics and Physics (NOP/ BL05)" at MLF in J-PARC is a beamline for
studies of fundamental physics. The beamline is divided into three branches so
that different experiments can be performed in parallel. These beam branches
are being used to develop a variety of new projects. We are developing an
experimental project to measure the neutron lifetime with total uncertainty of
1 s (0.1%). The neutron lifetime is an important parameter in elementary
particle and astrophysics. Thus far, the neutron lifetime has been measured by
several groups; however, different values are obtained from different
measurement methods. This experiment is using a method with different sources
of systematic uncertainty than measurements conducted to date. We are also
developing a source of pulsed ultra-cold neutrons (UCNs) produced from a
Doppler shifter are available at the unpolarized beam branch. We are developing
a time focusing device for UCNs, a so called "rebuncher", which can increase
UCN density from a pulsed UCN source. At the low divergence beam branch, an
experiment to search an unknown intermediate force with nanometer range is
performed by measuring the angular dependence of neutron scattering by noble
gases. Finally the beamline is also used for the research and development of
optical elements and detectors. For example, a position sensitive neutron
detector that uses emulsion to achieve sub-micrometer resolution is currently
under development. We have succeeded in detecting cold and ultra-cold neutrons
using the emulsion detector.Comment: 9 pages, 5 figures, Proceedings of International Conference on
Neutron Optics (NOP2017
Iron requirements of Heterosigma akashiwo(Raphidophyceae), Heterocapsa circularisquama(Dinophyceae) and two common centric diatoms
Iron is increasingly recognized to play a key role in the growth of microalgae in various marine systems, but there is a paucity of knowledge about the physiological iron requirements of harmful algal species. This study aimed to elucidate the halfsaturation constant for growth(Ks) and the maximum growth rate(μmax) of four phytoplankton species with regard to iron concentrations. The four species were the fish-killing raphidophyte Heterosigma akashiwo, the bivalve-killing dinoflagellate Heterocapsa circularisquama, and the centric diatoms Ditylum brightwellii(large sized) and Chaetoceros didymus(small sized). We conducted incubation experiments with axenic cultures of the four species using a chemically defined synthetic medium. Compared with Heterocapsa circularisquama(0.59 day-1) and Heterosigma akashiwo(0.50 day-1), the two diatom species exhibited high μmax values(0.68 day-1). The smaller diatom had the lowest Ks value of 7.5×10-9M, while the larger diatom had the highest Ks value of 2.1×10-7M. The Ks values of Heterosigma akashiwo and Heterocapsa circularisquama were 5.1×10-8 and 3.1×10-8M, respectively. Smaller-sized phytoplankton showed better affinity to lower concentrations of iron in the sea