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Flows of biomass and respiratory carbon were studied in a series of propylene-oxide sterilized soil microcosms. One-half of the microcosms received three pulsed additions of 200 ppm glucose-carbon to mimic rhizosphere carbon inputs. Biotic variables were: bacteria (Pseudomonas) alone, or amoebae (Acanthamoeba) and nematodes (Mesodiplogaster) singly, or both combined in the presence of bacteria.Over the 24-day experiment, respiration was significantly higher in the microcosms containing the bacterial grazers. Biomass accumulation by amoebae was significantly higher than that by nematodes. The nematodes respired up to 30-fold more CO2 per unit biomass than did amoebae. Similar amounts of carbon flowed into both respiratory and biomass carbon in microcosms with fauna, compared with the bacteria-alone microcosms. However, partitioning of available carbon by the microfauna varied considerably, with little biomass production and relatively more CO2-C produced in the nematode-containing microcosms. The amoebae, in contrast, allocated more carbon to tissue production (about 40% assimilation efficiency) and correspondingly less to CO2.  相似文献   
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Cleavage of phycocyanobilin from C-phycocyanin   总被引:1,自引:0,他引:1  
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Site-directed mutagenesis was used to replace the codon for the N-terminal cysteine residue of pColE2-P9-encoded mature lysis protein (CelB) by an arginine codon. In contrast to the wild-type CelB protein, the product of the mutated gene, which has an altered signal peptidase cleavage site, was neither processed nor acylated. However, the mutant protein retained sufficient residual activity to cause partial, Mg2+-suppressible lysis and could activate envelope phospholipase A1-A2 and promote colicin release, albeit with reduced efficiency compared to the wild-type protein. We propose that the uncleaved signal peptide of the mutant protein acts as the functional equivalent of the fatty acyl groups normally linked to the N-terminal cysteine residue of the wild-type protein, thereby anchoring the protein in the cell envelope where it exerts its various effects.  相似文献   
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Tartrate-resistant acid phosphatase (TRAP) has been proposed as a cytochemical marker for osteoclasts. We have developed an improved technique for the localization of TRAP in rat and mouse bone and cartilage. This procedure employs JB-4 plastic as the embedding medium, permits decalcification, and results in improved morphology compared with frozen sections. Peritoneal lavage cells were used to determine the appropriate isomer and concentration of tartrate necessary for inhibition of tartrate-sensitive acid phosphatase. After incubation in medium containing 50 mM L(+)-tartaric acid, osteoclasts and chondroclasts were heavily stained with reaction product. On the basis of their relative sensitivity to tartrate inhibition, three populations of mononuclear cells could also be distinguished. These three populations may represent: heavily stained osteoclast/chondroclast precursors; sparsely stained osteoblast-like cells lining the bone surface; and unstained cells of monocyte-macrophage lineage. Our results are consistent with the use of TRAP as a histochemical marker for study of the osteoclast.  相似文献   
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A mitogen derived from the supernatant of broth cultures of Mycoplasma arthritidis (MAS-P) stimulates a proliferative response by normal, unprimed T cells and interleukin 2 production by some, but not all, T cell hybridomas. The response requires an IE-positive accessory cell (AC). The direct participation of IE, and not IA, in this system was confirmed by two sets of experiments. First, L cells transfected with IE, but not IA, provided effective AC function for both normal T cells and the T cell hybridoma DO-11.10. Second, we have taken a more direct approach by showing that purified IE incorporated in liposomes and used to coat glass beads can support the MAS-P response of the DO-11.10 T cell hybridoma in the absence of intact AC or other AC molecules. Although the receptor for IE-MAS-P has not been identified, we have eliminated from consideration two potential T cell recognition structures. Monoclonal antibody to the antigen-major histocompatibility complex specific receptor failed to inhibit the MAS-P response of DO-11.10 or the T cell line LBRM-33. Furthermore, the L3T4 molecule did not appear to be involved since an L3T4-negative variant of DO-11.10 responded well to the mitogen. In addition, we show that both Lyt-2-positive and L3T4-positive T cells respond to this class II-restricted stimulus. Thus, we postulate the existence of a non-T cell receptor, non-L3T4 receptor that recognizes MAS-P in association with a presumed nonpolymorphic region of IE.  相似文献   
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