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Water and nitrogen addition differentially impact plant competition in a native rough fescue grassland 总被引:1,自引:0,他引:1
We examined how water and nitrogen addition and water–nitrogen interactions affect root and shoot competition intensity and
competition–productivity relationships in a native rough fescue grassland in central Alberta, Canada. Water and nitrogen were
added in a factorial design to plots and root exclusion tubes and netting were used to isolate root and shoot competition
on two focal species (Artemisia frigida and Chenopodium leptophyllum). Both water and nitrogen were limiting to plant growth, and focal plant survival rates increased with nitrogen but not water
addition. Relative allocation to root biomass increased with water addition. Competition was almost entirely belowground,
with focal plants larger when released from root but not shoot competition. There were no significant relationships between
productivity and root, shoot, or total competition intensity, likely because in this system shoot biomass was too low to cause
strong shoot competition and root biomass was above the levels at which root competition saturates. Water addition had few
effects on the intensity of root competition suggesting that root competition intensity is invariant along soil moisture gradients.
Contrary to general expectation, the strength of root competition increased with nitrogen addition demonstrating that the
relationship between root competition intensity and nitrogen is more complex than a simple monotonic decline as nitrogen increases.
Finally, there were few interactions between nitrogen and water affecting competition. Together these results indicate that
the mechanisms of competition for water and nitrogen likely differ. 相似文献
127.
Mitochondria form a highly dynamic reticular network in living cells, and undergo continuous fusion/fission events and changes in ultrastructural architecture. Although significant progress has been made in elucidating the molecular events underlying these processes, their relevance to normal cell function remains largely unexplored. Emerging evidence, however, suggests an important role for mitochondrial dynamics in cellular apoptosis. The mitochondria is at the core of the intrinsic apoptosis pathway, and provides a reservoir for protein factors that induce caspase activation and chromosome fragmentation. Additionally, mitochondria modulate Ca2+ homeostasis and are a source of various metabolites, including reactive oxygen species, that have the potential to function as second messengers in response to apoptotic stimuli. One of the mitochondrial factors required for activation of caspases in most intrinsic apoptotic pathways, cytochrome c, is largely sequestered within the intracristae compartment, and must migrate into the boundary intermembrane space in order to allow passage across the outer membrane to the cytosol. Recent evidence argues that inner mitochondrial membrane dynamics regulate this process. Here, we review the contribution of mitochondrial dynamics to the intrinsic apoptosis pathway, with emphasis on the inner membrane. 相似文献
128.
Langholz B Thomas DC Stovall M Smith SA Boice JD Shore RE Bernstein L Lynch CF Zhang X Bernstein JL 《Biometrics》2009,65(2):599-608
Summary . Methods for the analysis of individually matched case-control studies with location-specific radiation dose and tumor location information are described. These include likelihood methods for analyses that just use cases with precise location of tumor information and methods that also include cases with imprecise tumor location information. The theory establishes that each of these likelihood based methods estimates the same radiation rate ratio parameters, within the context of the appropriate model for location and subject level covariate effects. The underlying assumptions are characterized and the potential strengths and limitations of each method are described. The methods are illustrated and compared using the WECARE study of radiation and asynchronous contralateral breast cancer. 相似文献
129.
Fukuda T Kohda M Kanomata K Nojima J Nakamura A Kamizono J Noguchi Y Iwakiri K Kondo T Kurose J Endo K Awakura T Fukushi J Nakashima Y Chiyonobu T Kawara A Nishida Y Wada I Akita M Komori T Nakayama K Nanba A Maruki Y Yoda T Tomoda H Yu PB Shore EM Kaplan FS Miyazono K Matsuoka M Ikebuchi K Ohtake A Oda H Jimi E Owan I Okazaki Y Katagiri T 《The Journal of biological chemistry》2009,284(11):7149-7156
Fibrodysplasia ossificans progressiva (FOP) is a rare autosomal dominant disorder characterized by congenital malformation of the great toes and by progressive heterotopic bone formation in muscle tissue. Recently, a mutation involving a single amino acid substitution in a bone morphogenetic protein (BMP) type I receptor, ALK2, was identified in patients with FOP. We report here that the identical mutation, R206H, was observed in 19 Japanese patients with sporadic FOP. This mutant receptor, ALK2(R206H), activates BMP signaling without ligand binding. Moreover, expression of Smad1 and Smad5 was up-regulated in response to muscular injury. ALK2(R206H) with Smad1 or Smad5 induced osteoblastic differentiation that could be inhibited by Smad7 or dorsomorphin. Taken together, these findings suggest that the heterotopic bone formation in FOP may be induced by a constitutively activated BMP receptor signaling through Smad1 or Smad5. Gene transfer of Smad7 or inhibition of type I receptors with dorsomorphin may represent strategies for blocking the activity induced by ALK2(R206H) in FOP. 相似文献
130.
D.C. Coleman M.J. O'Donnell A.C. Shore R.J. Russell 《Journal of applied microbiology》2009,106(5):1424-1437
Dental chair units (DCUs) contain integrated systems that provide the instruments and services for a wide range of dental procedures. DCUs use water to cool and irrigate DCU-supplied instruments and tooth surfaces during dental treatment. Water is supplied to these instruments by a network of interconnected narrow-bore (2–3 mm) plastic tubes called dental unit waterlines (DUWLs). Many studies over the last 40 years demonstrated that DUWL output water is often contaminated with high densities of micro-organisms, predominantly Gram-negative aerobic heterotropic environmental bacteria, including Legionella and Pseudomonas species. Untreated DUWLs host biofilms that permit micro-organisms to multiply and disperse through the water network and which are aerosolized by DCU instrument use, thus exposing patients and staff to these micro-organisms, to fragments of biofilm and bacterial endotoxins. This review concentrates on how practical developments and innovations in specific areas can contribute to effective DUWL biofilm control. These include the use of effective DUWL treatment agents, improvements to DCU supply water quality, DCU design changes, development of automated DUWL treatment procedures that are effective at controlling biofilm in the long-term and require minimal human intervention, are safe for patients and staff, and which do not cause deterioration of DCU components following prolonged use. 相似文献