microclimate pH-dependent pyridoxine transport by SLC19A2 and SLC19A3: Implications for absorption in acidic microclimates [Metabolism] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 SLC19A2 and SLC19A3, also known as thiamine transporters (THTR) 1 and 2, respectively, transport the positively charged thiamine (vitamin B1) into cells to enable its efficient utilization. SLC19A2 and SLC19A3 are also known to transport structurally unrelated cationic drugs, such as metformin, but whether this charge selectivity extends to other molecules, such as pyridoxine (vitamin B6), is unknown. We tested this possibility using Madin-Darby canine kidney II (MDCKII) cells and human embryonic kidney 293 (HEK293) cells for transfection experiments, and also using Caco-2 cells as human intestinal epithelial model cells. The stable expression of SLC19A2 and SLC19A3 in MDCKII cells (as well as their transient expression in HEK293 cells) led to a significant induction in pyridoxine uptake at pH 5.5 compared with control cells. The induced uptake was pH-dependent, favoring acidic conditions over neutral to basic conditions, and protonophore-sensitive. It was saturable as a function of pyridoxine concentration, with an apparent Km of 37.8 and 18.5 μm, for SLC19A2 and SLC19A3, respectively, and inhibited by the pyridoxine analogs pyridoxal and pyridoxamine as well as thiamine. We also found that silencing the endogenous SLC19A3, but not SLC19A2, of Caco-2 cells with gene-specific siRNAs lead to a significant reduction in carrier-mediated pyridoxine uptake. These results show that SLC19A2 and SLC19A3 are capable of recognizing/transporting pyridoxine, favoring acidic conditions for operation, and suggest a possible role for these transporters in pyridoxine transport mainly in tissues with an acidic environment like the small intestine, which has an acidic surface microclimate. Full Article
microclimate Solar park impacts on microclimate, plants and greenhouse gas emissions By ec.europa.eu Published On :: Thur, 15 Dec 2016 9:23:19 GMT A UK solar park has been found to change the local microclimate, reports recently published research. Moreover, the microclimate coupled with management activities had an impact on greenhouse gas emissions and plant-community diversity and productivity under the solar panels. The study’s authors say their research provides a starting point for considering how to improve solar-park design in order to deliver co-benefits for biodiversity and farming, and minimise any negative environmental effects. Full Article
microclimate Influence of four tree shelter types on microclimate and seedling performance of Oregon white oak and western redcedar By www.fs.fed.us Published On :: Tue, 08 Jul 2008 09:10:00 PST Four types of tree shelters were evaluated in southwestern Washington for their effects on seedling microenvironment and performance of two tree species. Shelter types were fine-mesh fabric shelters, solid-walled white shelters with and without vent holes, and solid-walled blue unvented shelters. Summer mean and daily maximum air temperatures were increased by 0.8 degrees C and 3.6 degrees C, respectively, in solid-walled tree shelters. Shelter color and shelter venting did not influence air temperatures. Tree shelters only affected vapor pressure deficit late in the growing season. Midday photosynthetically active radiation within shelters ranged from 54 percent of full sun in fine-mesh fabric shelters to 15 percent of full sun in blue solid-walled shelters. In the first year after planting, height and diameter growth of western redcedar (Thuja plicata Donn ex D. Don) were significantly increased by all shelter types, with blue solid-walled shelters resulting in the greatest height growth. However, in blue solid-walled shelters, photosynthesis and stem diameter growth of Oregon white oak (Quercus garryana Dougl. ex Hook.) seedlings were significantly less than for unsheltered seedlings. Full Article
microclimate Microclimate buffering and thermal tolerance across elevations in a tropical butterfly [RESEARCH ARTICLE] By jeb.biologists.org Published On :: 2020-04-16T05:35:47-07:00 Gabriela Montejo-Kovacevich, Simon H. Martin, Joana I. Meier, Caroline N. Bacquet, Monica Monllor, Chris D. Jiggins, and Nicola J. Nadeau Microclimatic variability in tropical forests plays a key role in shaping species distributions and their ability to cope with environmental change, especially for ectotherms. Nonetheless, currently available climatic datasets lack data from the forest interior and, furthermore, our knowledge of thermal tolerance among tropical ectotherms is limited. We therefore studied natural variation in the microclimate experienced by tropical butterflies in the genus Heliconius across their Andean range in a single year. We found that the forest strongly buffers temperature and humidity in the understorey, especially in the lowlands, where temperatures are more extreme. There were systematic differences between our yearly records and macroclimate databases (WorldClim2), with lower interpolated minimum temperatures and maximum temperatures higher than expected. We then assessed thermal tolerance of 10 Heliconius butterfly species in the wild and found that populations at high elevations had significantly lower heat tolerance than those at lower elevations. However, when we reared populations of the widespread H. erato from high and low elevations in a common-garden environment, the difference in heat tolerance across elevations was reduced, indicating plasticity in this trait. Microclimate buffering is not currently captured in publicly available datasets, but could be crucial for enabling upland shifting of species sensitive to heat such as highland Heliconius. Plasticity in thermal tolerance may alleviate the effects of global warming on some widespread ectotherm species, but more research is needed to understand the long-term consequences of plasticity on populations and species. Full Article
microclimate High-Rise Urban Form and Microclimate: Climate-Responsive Design for Asian Mega-Cities / Feng Yang, Liang Chen By library.mit.edu Published On :: Sun, 19 Jan 2020 06:23:00 EST Online Resource Full Article
microclimate Microclimate conditions within the rolled leaves of Lepanthes helleri (Orchidaceae) By digital.lib.usf.edu Published On :: Fri, 21 Mar 2014 13:59:13 -0400 Full Article
microclimate Microclimate effects on cyphellae density in Sticta lichens By digital.lib.usf.edu Published On :: Fri, 21 Mar 2014 14:00:51 -0400 Full Article
microclimate Bat Hibernacula Inventory and Microclimate Monitoring Study, Grand Canyon-Parashant National Monument, AZ By digital.lib.usf.edu Published On :: Tue, 26 Apr 2016 09:17:04 -0400 Full Article
microclimate Microclimate and bat occupation trends at Gorman Cave, Colorado Bend State Park, San Saba county, Texas during 2010-2011. By digital.lib.usf.edu Published On :: Tue, 26 Apr 2016 09:57:44 -0400 Full Article
microclimate Energy availability influences microclimate selection of hibernating bats By digital.lib.usf.edu Published On :: Mon, 06 Apr 2020 14:39:57 -0400 Full Article
microclimate Sociality, density‐dependence and microclimates determine the persistence of populations suffering from a novel fungal disease, white‐nose syndrome By digital.lib.usf.edu Published On :: Mon, 06 Apr 2020 14:41:05 -0400 Full Article