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Sridhar Susarla Sydney T Bacchus N L Wolfe Steven C McCutcheon 《International journal of phytoremediation》1999,1(1):97-107
The uptake and transformation of perchlorate in the presence of Myriophyllum aquaticum (parrot-feather) were examined in sand and aqueous treatments with concentrations between 0.2 to 20 ppm. Controls were included without plants to confirm the uptake of perchlorate by parrot-feather. The kinetic data followed a first-order reaction mechanism with rate constants ranging from 0.004 to 0.090, resulting in half-lives between 7 to 173 days. Uptake rates were five times higher in aqueous treatments than in sand treatments. The intermediates detected in the plant tissue suggest that perchlorate transformed in a step-wise fashion to form chloride. Accumulation of perchlorate in the plant tissues (1.2 g/kg) suggests that parrot-feather has a high capacity for accumulating this contaminant. 相似文献
84.
We have identified disruptions in the dedicator of cytokinesis 8 gene, DOCK8, in two unrelated patients with mental retardation (MR). In one patient, a male with MR and no speech, we mapped a genomic deletion of approximately 230 kb in subtelomeric 9p. In the second patient, a female with mental retardation and ectodermal dysplasia and a balanced translocation, t(X;9) (q13.1;p24), we mapped the 9p24 breakpoint to a region overlapping with the centromeric end of the 230-kb subtelomeric deletion. We characterized the DOCK8 gene from the critical 9p deletion region and determined that the longest isoform of the DOCK8 gene is truncated in both patients. Furthermore, the DOCK8 gene is expressed in several human tissues, including adult and fetal brain. Recently, a role for DOCK8 in processes that affect the organization of filamentous actin has been suggested. Several genes influencing the actin cytoskeleton have been implicated in human cognitive function and thus a possibility exists that the rare mutations in the DOCK8 gene may contribute to some cases of autosomal dominant mental retardation. 相似文献
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Peter Chung Tracy Cook Kaihong Liu Yoram Vodovotz Ruben Zamora Sydney Finkelstein Timothy Billiar David Blumberg 《Nitric oxide》2003,8(2):119-126
Nitric oxide (NO) has been reported to sensitize cancer cells to radiation. Since delivery of NO to tumors is limited in vivo by systemic toxicity of NO, we examined the potential of gene delivery of the human inducible nitric oxide synthase (iNOS) gene as a means of achieving high output NO production. We successfully transduced two colorectal cancer cell lines as evidenced by increased iNOS protein accumulation and nitrite production. We found that overexpression of iNOS enhanced the effects of radiation on apoptosis in both cell lines in a caspase-dependent fashion. Gene transfer of iNOS holds much promise as a potential radiosensitizer of cancer cells since it increases apoptosis in an additive manner with radiation. 相似文献
87.
Sydney M Evans Kevin W Jenkins H Isaac Chen W Timothy Jenkins Kevin D Judy Wei-Ting Hwang Robert A Lustig Alexander R Judkins M Sean Grady Stephen M Hahn Cameron J Koch 《Translational oncology》2010,3(3):160-169
The hypoxia and proliferation index increase with grade in human glial tumors, but there is no agreement whether either has prognostic importance in glioblastomas. We evaluated these end points individually and together in 16 de novo human glioblastomas using antibodies against the 2-nitroimidazole hypoxia detection agent EF5 and the proliferation detection agent Ki-67. Frozen tumor tissue sections were fluorescence-stained for nuclei (Hoechst 33342), hypoxia (anti-EF5 antibodies), and proliferation (anti-Ki-67 antibodies). EF5 binding adjacent to Ki-67+ cells, overall EF5 binding, the ratio of these values, and the proliferation index were evaluated. Patients were classified using recursive partitioning analysis and followed up until recurrence and/or death. Recursive partitioning analysis was statistically significant for survival (P = .0026). Overall EF5 binding, EF5 binding near Ki-67+ cells, and proliferation index did not predict recurrence. Two additional survival analyses based on ratios of the overall EF5 binding to EF5 binding near Ki-67+ cells were performed. High and low ratio values were determined by two cutoff points: (a) the 50% value for the ratio [EF5/Ki-67Binding]/[Tumorbinding] = RatioEF5 50% and (b) the median EF5 value (75.6%) of the ratio [EF5/Ki-67Binding]/[Tumorbinding] = Ratiopatients median. On the basis of the RatioEF5 50%, recurrence (P = .0074) and survival (P = .0196) could be predicted. Using the Ratiopatients median, only survival could be predicted (P = .0291). In summary, patients had a worse prognosis if the [EF5/Ki-67Binding]/[Tumorbinding] ratio was high. A hypothesis for the mechanisms and translational significance of these findings is discussed. 相似文献
88.
Species reordering,not changes in richness,drives long‐term dynamics in grassland communities
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Determining how ecological communities will respond to global environmental change remains a challenging research problem. Recent meta‐analyses concluded that most communities are undergoing compositional change despite no net change in local species richness. We explored how species richness and composition of co‐occurring plant, grasshopper, breeding bird and small mammal communities in arid and mesic grasslands changed in response to increasing aridity and fire frequency. In the arid system, grassland and shrubland plant and breeding bird communities were undergoing directional change, whereas grasshopper and small mammal communities were stable. In the mesic system, all communities were undergoing directional change regardless of fire frequency. Despite directional change in composition in some communities, species richness of all communities did not change because compositional change resulted more from reordering of species abundances than turnover in species composition. Thus, species reordering, not changes in richness, explains long‐term dynamics in these grass and shrub dominated communities. 相似文献
89.
Small‐scale spatial variability in the distribution of ectomycorrhizal fungi affects plant performance and fungal diversity
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Stav Livne‐Luzon Ofer Ovadia Gil Weber Yael Avidan Hen Migael Sydney I. Glassman Thomas D. Bruns Hagai Shemesh 《Ecology letters》2017,20(9):1192-1202
The effects of spatial heterogeneity in negative biological interactions on individual performance and species diversity have been studied extensively. However, little is known about the respective effects involving positive biological interactions, including the symbiosis between plants and ectomycorrhizal (EM) fungi. Using a greenhouse bioassay, we explored how spatial heterogeneity of natural soil inoculum influences the performance of pine seedlings and composition of their root‐associated EM fungi. When the inoculum was homogenously distributed, a single EM fungal taxon dominated the roots of most pine seedlings, reducing the diversity of EM fungi at the treatment level, while substantially improving pine seedling performance. In contrast, clumped inoculum allowed the proliferation of several different EM fungi, increasing the overall EM fungal diversity. The most dominant EM fungal taxon detected in the homogeneous treatment was also a highly beneficial mutualist, implying that the trade‐off between competitive ability and mutualistic capacity does not always exist. 相似文献
90.
TPX2 regulates the localization and activity of Eg5 in the mammalian mitotic spindle 总被引:1,自引:0,他引:1
Mitotic spindle assembly requires the regulated activity of numerous spindle-associated proteins. In mammalian cells, the Kinesin-5 motor Eg5 interacts with the spindle assembly factor TPX2, but how this interaction contributes to spindle formation and function is not established. Using bacterial artificial chromosome technology, we generated cells expressing TPX2 lacking the Eg5 interaction domain. Spindles in these cells were highly disorganized with multiple spindle poles. The TPX2-Eg5 interaction was required for kinetochore fiber formation and contributed to Eg5 localization to spindle microtubules but not spindle poles. Microinjection of the Eg5-binding domain of TPX2 resulted in spindle elongation, indicating that the interaction of Eg5 with TPX2 reduces motor activity. Consistent with this possibility, we found that TPX2 reduced the velocity of Eg5-dependent microtubule gliding, inhibited microtubule sliding, and resulted in the accumulation of motor on microtubules. These results establish a novel function of TPX2 in regulating the location and activity of the mitotic motor Eg5. 相似文献