my wife's word,imeparable-Beulah' s health went into a rapid decline. S
I don’t why the author use inseparable as a different font. Is it an important message for the readers? Or another meaning?
my wife's word,imeparable-Beulah' s health went into a rapid decline. S
I don’t why the author use inseparable as a different font. Is it an important message for the readers? Or another meaning?
We dug in. We ace everything there was to eat on the cable.We ate like there was no tomorrow. We didn't talk. We ace.We scarl'ed. We grazed chat table. We were into serious eating.The blind man had right away located his foods, he knew justwhere everything was on his place. I watched'wich admirationas he used his knife and fork on the meat. He'd cue two piecesof. meat, fork the meat into his mouth, and then go all outfor the scalloped potatoes, the beans next, and then he'd tearoff a hunk of buttered bread and eat chat. He'd follow chis upwith a big drink of milk.
This paragraph is very interesting that the narrator says that the feast is so many but the ambience is empty.
On her last day in the office, the blindman asked if he could touch her face. She agreed to this. Shetold me he touched his fingers to every part of her face, hernose---even her neck!
I was surprised that the man has touched the woman’s face and even her neck. If I were the woman, I wouldn’t let the man touch it.
her lastthought maybe this: that he never even knew what she lookedlike, and she on an express to the grave.
It’s troubling that the narrator thought, I believe the woman didn’t care about whether the blind man knew what she looked like. She just knew her husband sincerely loved her.
On her last day in the office, the blindman asked if he could touch her face. She agreed to this. Shetold me he touched his fingers to every part of her face, hernose---even her neck!
I am surprised that the woman would allow the blind man to touch her face since it’s not a common request.
And then I found myself thinkingwhat a pitiful life this woman must have led.
It’s interesting that the narrator put himself on the blind man’s wife and tried to imagine her life.
And it is like a woman stooping down and creeping aboutbehind that pattern. I don’t like it a bit. I wonder— I begin tothink— Iwish John would take me away from here!
It’s quite scary if the pattern of my wall paper is like a woman stooping and creeping.
But John says if I feel so I shall neglect proper self-control;so I take pains to control myself,— before him, at least,— andthat makes me very tired.
I am surprised that a how come the wife should pretend she was fine but not in front of her physician husband.
My br other is also a physician, and also of high standing,and he says the same thing.
It’s interesting that either her husband or her brother are all physician and had same idea about her. It shows that how stressful the narrator would be if none of them believed she was sick.
From Eco-Grief to Climate Action
for - program event selection - 2025 - April 3 - 10:30am-12pm GMT - Skoll World Forum - From Eco-Grief to Climate Action - Stop Reset Go - Deep Humanity - TPF - LCE - relevant to - event time conflict - with Aligning Profit and Purpose - inner - Outer - Transformation - adjacency - mortality salience - ecogrief - terror management theory - Ernest Becker - Deep Humanity
Redefining Progress: New Frontiers for the Field of Social In
for - program event selection - 2025 - April 3 - 10:30am-12pm GMT - Skoll World Forum - Redefining Progress: New Frontiers for the Field of Social Innovation - Stop Reset Go - Progress traps - Cosmolocal production - commons - Deep Humanity - TPF - LCE - relevant to - event time conflict - with Aligning Profit and Purpose - adjacency - progress trap - Deep Humanity - Cosmolocal production - social innovation
global coding class, which is about 34 million digital nomads right now and maybe 10 million with a crypto wallet. Again, they're not rooted. They're rootless, and they should be root-full.
for - stats - 2025 - digital nomads - 34 million - with crypto - 10 million - rootless - SOURCE - Youtube Ma Earth channel interview - Devcon 2024 - Cosmo Local Commoning with Web 3 - Michel Bauwens - 2025, Jan 2
A shared car association, every shared car replaces 9 to 13 private cars for the same amount of travel freedom, point to point. You don't lose any freedom like you would in public transport. It's just like a neighborhood shares a dozen cars. 95% of the cars are in the garage at any time.
for - example - efficacy of mutualisation - transportation - cars - SOURCE - Youtube Ma Earth channel interview - Devcon 2024 - Cosmo Local Commoning with Web 3 - Michel Bauwens - 2025, Jan 2 - stats - mutualisation - transportation - cars - 1 car can replace 13 - car is parked most of the time - 10% of existing cars doubles our requirement - SOURCE - Youtube Ma Earth channel interview - Devcon 2024 - Cosmo Local Commoning with Web 3 - Michel Bauwens - 2025, Jan 2
SUPPLEMENTARY DATA
AssayResult: 90
AssayResultAssertion: Normal
PValue: Not reported
Approximation: Exact assay result value not reported; value estimated from Figure 6C.
Supplemental material
AssayResult: 2.9
AssayResultAssertion: Abnormal
Comment: See Table S3 for details
Sf9 cells infected with AcNPV, VI, V2, V3, or V4 were harvested 72 h pi, washed twice with 10 mM PBS, air dried on a slide and fixed in chilled methanol for 15 min. Cells were incubated with MA-451 culture supernatant and N-terminal anti-peptide serum ( 1 :500) at 37°C for 1 h, washed with PBS and further incubated at 37oc for 1 h with I :50 dilution of anti-mouse FITC or I :2000 anti-rabbit FITC. Slides were washed extensively, mounted in 90% glycerol in PBS (50 mM, pH 7.4) and examined under Optiphot fluorescent microscope (Nikon, Tokyo, Japan).
Immunocytochemical Localization of Recombinant Proteins in Infected Cells
Meancorpuscularhaemoglobinconcentration(MCHC)istheaverageHbconcentrationperunitvolume(100)ofpackedredcells(W/V).Henceitisexpresseding/1whichisthesameaspercent(%).ItiscalculatedbythefollowingformulaHbMCHC=—......x100(g/dl)PCV
MCHC
Thepackedcellvolumeorhaematocritisthevolumeoccupiedbythepackedredcells,afteravolumeofanticoagulatedvenousbloodisfullycentrifuged.Thevolumeofpackedcellisexpressedasapercentageoftheoriginalvolumeoftheblood.ThePCVisusedtoestimatehaematologicalindices,includingthemeancellhaemoglobinconcentration(MCHC)andmeancorpuscularvolume(MCV).PCVdetermination followedthemethodsofBlaxhallandDaisley(1973).Thehaematocritvaluewasdeterminedbycentrifuging(3000rpm)aknownvolume ofincoagulantbloodkeptinWintrobe’stubes
PackedCellVolume(PCV)orHaematocrit(Ht)
normalized to the optical density at day 0 for the appropriate cell type. Growth curve was determined twice
Growth curves were prepared for various cell lines using the modified method adopted by Serrano et al, 1997. Briefly, 10, 000 cells were seeded in a 24 well plate in quadruples. At the indicated times, cells were washed once with PBS and fixed in 10% formalin for 20 minutes and rinsed with distilled water. Cells were stained with 0.05% crystal violet for 30 minutes, rinsed extensively and dried. Cell associated dye was extracted with 1.0ml acetic acid. Aliquots were diluted 1:4 with water and transferred to 96 well microtitre plates and the optical density at 590nm determined. Values were
Growth Curves:
Polyphosphates from yeast cells were extracted with phenol-chloroform solutionas described previously(Neefand Kladde,2003). Cells grown eitherovernight or to logarithmic phase in YPDmediumwere harvested by centrifugation at 1,700 rpm for 5 min. Cells were washed with 10 ml sterile MQ water and resuspendedin ice-cold 500 μl20%trichloro acetic acid (TCA) solution to the final cell densityof 100 OD. Cell suspension was transferred toa1.5 ml microcentrifuge tube. After incubation at room temperature for 5 min, cells were harvested by centrifugation at 12,000 g for 10 minat 4 ̊C and resuspendedin 250-350 μlpolyphosphate extraction buffer.Equal volume of phenol-chloroform (25:24) was addedtothe microcentrifuge tube and aqueous phase was extracted by centrifugation at 12,000 g for 8 minat room temperature. Top aqueous layer was collected with a 200 μl tip. Aqueous layer extraction was repeated once more after removal of DNA with chloroform.After centrifugation,aqueous phasecontaining RNA and polyphosphates wascollected,RNA was quantified at A260nmandstored at -20 ̊C
Polyphosphate extraction
For RNA experiments, all solutions were prepared in RNase free diethylpyrocarbonate (DEPC) water. Microcentrifuge tubes and tips used for RNAworkwere autoclaved twice and driedat 70 ̊C for overnight before use. Non-autoclavable plastic items were wiped with Ambion RNAseZap to remove RNAse contamination, if any. RNA was extracted from C.glabrata cells usingacid phenol extraction method. C. glabratacells were harvested at 2,500g for 5 minat 4 ̊C, resuspended in 1 ml ice-cold DEPC water and were transferred toa2 ml microcentrifuge tube. Cells were spun down at 6,000g for 3 minat 4 ̊C and resuspended in 350 μl AE solution. Next, 50 μl SDS and 400 μl acid phenol(pH 4.5)solutions were added to thetube and mixed well by vortexing. The tube wasincubated at 65 ̊C for 15 min with continuous mixing. After incubation, tube was kept on ice for 5 minand centrifuged at 7,500g for 5 minat 4 ̊C. Aqueous phase was transferred toa new 1.5 ml microcentrifuge tube and RNAwasextracted with an equal volume of chloroform. Total RNA was precipitated at room temperature with 1/10thvolume of 3 M sodium acetate (pH 5.2) and 2.5 volumesof chilledabsolute ethanol for 20 min. Precipitated RNA was collected by centrifugation at 7,500g for 5 minat 4 ̊C. RNA pellet was washed with chilled 70% ethanol and resuspended in 50 μl nuclease-free water. RNA concentration was determined by measuring absorbance at 260 nm. Quality of extracted RNA was examined by gel electrophoresis on 0.8% agarose gel prepared in DEPC-treated TAE buffer
RNA extraction
Intracellular iron content in different Xanthomonas oryzaepv. oryzicolastrains was measured by using atomic absorption spectroscopy as described previously with few modifications (Velayudhan et al., 2000). For estimation of intracellular iron, different strains of Xanthomonas oryzaepv. oryzicolawere grown overnight in 3 ml PS media with appropriate antibiotics for differentially marked strains. 0.2% of the overnight grown culture was inoculated in 250 ml PS medium alone or PS plus 2, 2’-dipyridyl for iron stravation, and grown to an OD600 of 1.2. Cells were then pelleted down by centrifuging at 7000 g for 10 min, and washed twice with phosphate buffer saline (PBS). After washing, cells were lyophilized, and their dry weights were determined. Lyophilized cells were then dissolved in 30% nitric acid at 80ºC for 12 h and diluted 10-fold with miliQ water. Iron content was determined by atomicabsorption spectroscopy using ICP-OES (JY 2000 sequential Inductively Coupled Plasma Optical Emisson spectrometer,Jobin Yvon, Horiba, France). Iron level was quantified against aqueous standard of iron traceable to NIST (National institute of standards and technology, India)
Estimation of intracellular iron content
PCR-positive transformants were inoculated in 10 ml YPD medium, allowedto grow for 12 handgenomic DNAwas isolated.Another round of PCR was performed using genomic DNA asatemplate toconfirm the gene deletion
A homologous recombination-based strategy was used to disrupt C. glabraraORFs witha cassette containing the nat1gene, which codes for nourseothricin acetyltransferase and imparts resistance to nourseothricin. Briefly, 5’-and 3’-UTR region (nearly 500-700 bp) of the gene to be deleted were amplified by PCR using wild-type genomic DNA as template. Both 5’-and 3’-UTR amplified products were fused to one half each ofthenat1gene amplified from theplasmid(pRK625). The two nat1-amplified fragments share about 300-350 bp complimentary region. To obtain fusion products, primers were designed insucha way thatthereverse primer for 5’-UTR and the forward primer for 3’-UTRof the gene of interestshare 20 bp complimentary region with the forwardprimer for 5’nat1fragment andthereverse primer for 3’nat1fragment amplification, respectively. The fused PCR products were co-transformed in to the wild-type strain and transformants were plated on YPD-agar plates. Plates were incubated at 30°C for 16 h to allow the homologous recombination between nat1fragments,and 5’-and 3’-UTR atthegenomic loci. Post incubation,cells were replica plated ontoYPD-agar plate supplemented with 200 μg/ml nourseothricin and incubated for another 24 h. Nourseothricin-resistant colonies were purified and verified for gene disruption viahomologous recombination by PCR using appropriate set of primers
Generation of C. glabratadeletion strains
PCR-positive transformants were inoculated in 10 ml YPD medium, allowedto grow for 12 handgenomic DNAwas isolated.Another round of PCR was performed using genomic DNA asatemplate toconfirm the gene deletion
A homologous recombination-based strategy was used to disrupt C. glabraraORFs witha cassette containing the nat1gene, which codes for nourseothricin acetyltransferase and imparts resistance to nourseothricin. Briefly, 5’-and 3’-UTR region (nearly 500-700 bp) of the gene to be deleted were amplified by PCR using wild-type genomic DNA as template. Both 5’-and 3’-UTR amplified products were fused to one half each ofthenat1gene amplified from theplasmid(pRK625). The two nat1-amplified fragments share about 300-350 bp complimentary region. To obtain fusion products, primers were designed insucha way thatthereverse primer for 5’-UTR and the forward primer for 3’-UTRof the gene of interestshare 20 bp complimentary region with the forwardprimer for 5’nat1fragment andthereverse primer for 3’nat1fragment amplification, respectively. The fused PCR products were co-transformed in to the wild-type strain and transformants were plated on YPD-agar plates. Plates were incubated at 30°C for 16 h to allow the homologous recombination between nat1fragments,and 5’-and 3’-UTR atthegenomic loci. Post incubation,cells were replica plated ontoYPD-agar plate supplemented with 200 μg/ml nourseothricin and incubated for another 24 h. Nourseothricin-resistant colonies were purified and verified for gene disruption viahomologous recombination by PCR using appropriate set of primers
Generation of C. glabratadeletion strains
Plan title - should this be the same as the grant title? Part of project metadata
http://www.bbsrc.ac.uk/documents/data-sharing-policy-pdf/ http://www.bbsrc.ac.uk/funding/apply/application-guidance/data-management/
Cindy A. Buckmaster: Animal research Is a labor of love for animals and people
This page was analyzed on May 5, 2017 and was found to have low virality and impact. While the content may be either true or false, it is nnot moving through the network in the way we see hoaxes or clickbait move.