Chlortetracycline analysis of boar spermatozoa after incubation, flow cytometric sorting, cooling, or cryopreservation

Author(s):  
W.M.C. Maxwell ◽  
L.A. Johnson
1998 ◽  
Vol 10 (5) ◽  
pp. 433 ◽  
Author(s):  
W. M. C. Maxwell ◽  
C. R. Long ◽  
L. A. Johnson ◽  
J. R. Dobrinsky ◽  
G. R. Welch

The motility, viability (percent live), capacitation status and in vitro fertility of boar spermatozoa were examined, after staining with Hoechst 33342 and flow cytometric sorting in the absence or presence of seminal plasma. Viability was higher in unstained controls and when seminal plasma was present in the medium used to collect spermatozoa from the cell sorter than when seminal plasma was absent or in the staining extender only, but motility was highest when seminal plasma was included in the extender only, compared with the controls and other treatments. The proportions of capacitated spermatozoa were increased by sorting, but were lower when seminal plasma was present, rather than absent, from the staining extender and the collection medium. Compared with unstained controls, extension and staining without sorting only increased the proportion of capacitated spermatozoa after washing in preparation for in vitro fertilization. The percentages of polyspermic, penetrated and cleaved oocytes were lower when inseminated with unsorted (stained) than control (unstained) spermatozoa, regardless of the presence or absence of seminal plasma. These parameters were higher for sorted than for control spermatozoa in the absence of seminal plasma, but in its presence penetration and cleavage were substantially lower. The proportions of capacitated spermatozoa were lower when seminal plasma was present in the collection medium only than in the staining extender or when it was absent altogether, but the former treatment substantially reduced the proportions of polyspermic, penetrated and cleaved oocytes, and the proportion of blastocysts. These findings indicate that sperm capacitation associated with flow cytometric sorting can be reduced by the inclusion of seminal plasma in the collection medium, but this treatment reduces the ability of spermatozoa to fertilize oocytes in vitro under these conditions.


2020 ◽  
Vol 15 (1) ◽  
pp. 41-54 ◽  
Author(s):  
Noor Mruwat ◽  
Michael C. G. Carlson ◽  
Svetlana Goldin ◽  
François Ribalet ◽  
Shay Kirzner ◽  
...  

AbstractLong-term stability of picocyanobacteria in the open oceans is maintained by a balance between synchronous division and death on daily timescales. Viruses are considered a major source of microbial mortality, however, current methods to measure infection have significant methodological limitations. Here we describe a method that pairs flow-cytometric sorting with a PCR-based polony technique to simultaneously screen thousands of taxonomically resolved individual cells for intracellular virus DNA, enabling sensitive, high-throughput, and direct quantification of infection by different virus lineages. Under controlled conditions with picocyanobacteria-cyanophage models, the method detected infection throughout the lytic cycle and discriminated between varying infection levels. In North Pacific subtropical surface waters, the method revealed that only a small percentage of Prochlorococcus (0.35–1.6%) were infected, predominantly by T4-like cyanophages, and that infection oscillated 2-fold in phase with the diel cycle. This corresponds to 0.35–4.8% of Prochlorococcus mortality daily. Cyanophages were 2–4-fold more abundant than Prochlorococcus, indicating that most encounters did not result in infection and suggesting infection is mitigated via host resistance, reduced phage infectivity and inefficient adsorption. This method will enable quantification of infection for key microbial taxa across oceanic regimes and will help determine the extent that viruses shape microbial communities and ecosystem level processes.


2020 ◽  
Vol 96 (7) ◽  
Author(s):  
Changqing Liu ◽  
Xiaoli Shi ◽  
Fan Wu ◽  
Min Zhang ◽  
Guang Gao ◽  
...  

ABSTRACT The combination of flow cytometric sorting and high-throughput sequencing revealed the broad existence of photosynthetic picoeukaryote attached fungi (PPE-attached fungi) in Lake Chaohu. The relative sequence abundance of attached fungi was negatively correlated with that of the photosynthetic picoeukaryotes (PPEs). PPE-attached fungal communities were mainly composed of Basidiomycota, Chytridiomycota and Ascomycota. Temperature, Si and PPE community structure are the most important driving factors for the temporal succession of PPE-attached fungal communities. In particular, PPE-attached fungi can be divided into three groups from high to low temperatures. Phylogenetic molecular ecological network results indicated that the connectivity and the total number of links in the network of the high-temperature group (> 21.82°C) are higher than those in the other two temperature groups (between  9.67 and  21.82°C, and < 9.67°C, respectively). Moreover, the interaction between PPE-attached fungi and the PPEs changed from antagonistic to cooperative, with the decline in temperature. The most abundant operational taxonomic units of PPE-attached fungi were affiliated with the Cladosporium, the most common saprophytic fungus, whereas most fungal hub taxa were Chytridiomycota, the main parasite fungi of phytoplankton.


2013 ◽  
Vol 80 (4) ◽  
pp. 350-356 ◽  
Author(s):  
D. del Olmo ◽  
I. Parrilla ◽  
M.A. Gil ◽  
C. Maside ◽  
T. Tarantini ◽  
...  

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