Examples of 'recombination can' in a sentence

Meaning of "recombination can"

Recombination can refers to the process by which genetic material is rearranged or combined, often leading to genetic variation or the formation of new genetic sequences

How to use "recombination can" in a sentence

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recombination can
The recombination can be performed in vitro or in vivo.
There are a number of methods by which homologous recombination can occur.
Homologous recombination can be effected at a predetermined locus.
In a further method site specific recombination can also be employed.
The recombination can be performed in vitro or in vino.
Cells that have undergone homologous recombination can be identified by a number of methods.
Recombination can occur at both flanking sequences.
In a further method disclosed herein site specific recombination can also be employed.
Recombination can be augmented by electroporation of cells.
In a further method of the invention site specific recombination can also be employed.
Recombination can refer to chromosomal crossover.
There are known a large number of processes by which homologous recombination can be initiated.
The recombination can occur between DNAs of any topology.
The relationship between robustness and evolvability depends on whether recombination can be ignored.
Genetic recombination can occur in.

See also

In principle any direct repeat which allows for internal recombination can be employed.
Defective homologous recombination can cause mutation and genetic instability.
Natural tyrosine, synthetic tyrosine, or tyrosine produced by gene recombination can be used.
This differential signal recombination can be implemented with a differential amplifier.
Natural serine, synthetic serine, or serine produced by gene recombination can be used.
Generation and recombination can happen for many different reasons.
Natural cysteine, synthetic cysteine, or cysteine produced by gene recombination can be used.
Homologous recombination can also be used to introduce a disruption of the invention.
Thus, the frequency of homologous recombination can be maximised.
Recombination can be induced after characterisation by administration of the relevant ligand.
Gene disruption using homologous recombination can be carried out in accordance with a conventional method.
Recombination can also generate particular types of mutations if chromosomes are misaligned.
An ES cell having undergone homologous recombination can be obtained by combining these methods.
Recombination can generally be ignored in asexual populations and for traits affected by single genes.
In any given cycle, recombination can occur in vivo or in vitro.
Recombination can then occur to modify the cell to become homozygous for the first allele.
Results show that three-body recombination can explain the electron lifetime in this phase.
Recombination can lead to both DNA loss or gain.
Sheep pox and goat pox are distinct viruses, but recombination can occur between them.
Methods of recombination can also be performed digitally on an information processing system.
Alternatively, plasmids bearing additional substrates for recombination can be introduced into the surviving cells.
Illegitimate recombination can also occur due to the transduction of genetic material from a bacteriophage.
In addition to that selection step, successful recombination can be checked vía colony PCR.
The recombination can be based on SSA or gene conversion mechanisms.
Example 2 In a further method of the disclosure site specific recombination can also be employed.
Subsequent rounds of recombination can be performed on a split pool basis as described above.
Intermolecular ( plasmid to chromosome ) recombination can be predicted.
Genetic recombination can also be involved in DNA.
Conservative site-specific recombination can reversibly rearrange DNA.
Mitotic recombination can result in homozygous expression in a heterozygous individual [ dead link ].
DNA for homologous recombination can be provided as linear or circular DNA.
Recombination can be exclusively between the chromosomes of yeast surviving selection / screening.
Again, recombination can proceed in vitro or in vivo.
Recombination can involve either homologous or non-homologous DNA.
Site-specific recombination can be used to accomplish recursive sequence recombination.

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