Vectors with restriction site banks IV. pJRD184, a 3793-bp plasmid vector having 43 unique cloning sites

ISSN:
0378-1119
Keywords:
DNA sequence ; Escherichia coli ; recombinant DNA ; restriction map
Source:
Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
Topics:
Biology
Type of Medium:
Electronic Resource
URL:
_version_ 1798291999688753152
autor Heusterspreute, M.
Vinh Ha Thi
Emery, S.
Tournis-Gamble, S.
Kennedy, N.
Davison, J.
autorsonst Heusterspreute, M.
Vinh Ha Thi
Emery, S.
Tournis-Gamble, S.
Kennedy, N.
Davison, J.
book_url http://linkinghub.elsevier.com/retrieve/pii/0378-1119(85)90327-0
datenlieferant nat_lic_papers
fussnote An improved restriction site bank vector has been constructed from plasmid pJRD158. The new version is smaller and contains 43 unique restriction sites. It should greatly facilitate cloning versatility by providing unique sites for most commercially available restriction enzymes.
hauptsatz hsatz_simple
identnr NLZ187297797
issn 0378-1119
journal_name Gene
materialart 1
package_name Elsevier
publikationsort Amsterdam
publisher Elsevier
reference 39 (1985), S. 299-304
schlagwort DNA sequence
Escherichia coli
recombinant DNA
restriction map
search_space articles
shingle_author_1 Heusterspreute, M.
Vinh Ha Thi
Emery, S.
Tournis-Gamble, S.
Kennedy, N.
Davison, J.
shingle_author_2 Heusterspreute, M.
Vinh Ha Thi
Emery, S.
Tournis-Gamble, S.
Kennedy, N.
Davison, J.
shingle_author_3 Heusterspreute, M.
Vinh Ha Thi
Emery, S.
Tournis-Gamble, S.
Kennedy, N.
Davison, J.
shingle_author_4 Heusterspreute, M.
Vinh Ha Thi
Emery, S.
Tournis-Gamble, S.
Kennedy, N.
Davison, J.
shingle_catch_all_1 Heusterspreute, M.
Vinh Ha Thi
Emery, S.
Tournis-Gamble, S.
Kennedy, N.
Davison, J.
Vectors with restriction site banks IV. pJRD184, a 3793-bp plasmid vector having 43 unique cloning sites
DNA sequence
Escherichia coli
recombinant DNA
restriction map
DNA sequence
Escherichia coli
recombinant DNA
restriction map
0378-1119
03781119
Elsevier
shingle_catch_all_2 Heusterspreute, M.
Vinh Ha Thi
Emery, S.
Tournis-Gamble, S.
Kennedy, N.
Davison, J.
Vectors with restriction site banks IV. pJRD184, a 3793-bp plasmid vector having 43 unique cloning sites
DNA sequence
Escherichia coli
recombinant DNA
restriction map
DNA sequence
Escherichia coli
recombinant DNA
restriction map
0378-1119
03781119
Elsevier
shingle_catch_all_3 Heusterspreute, M.
Vinh Ha Thi
Emery, S.
Tournis-Gamble, S.
Kennedy, N.
Davison, J.
Vectors with restriction site banks IV. pJRD184, a 3793-bp plasmid vector having 43 unique cloning sites
DNA sequence
Escherichia coli
recombinant DNA
restriction map
DNA sequence
Escherichia coli
recombinant DNA
restriction map
0378-1119
03781119
Elsevier
shingle_catch_all_4 Heusterspreute, M.
Vinh Ha Thi
Emery, S.
Tournis-Gamble, S.
Kennedy, N.
Davison, J.
Vectors with restriction site banks IV. pJRD184, a 3793-bp plasmid vector having 43 unique cloning sites
DNA sequence
Escherichia coli
recombinant DNA
restriction map
DNA sequence
Escherichia coli
recombinant DNA
restriction map
0378-1119
03781119
Elsevier
shingle_title_1 Vectors with restriction site banks IV. pJRD184, a 3793-bp plasmid vector having 43 unique cloning sites
shingle_title_2 Vectors with restriction site banks IV. pJRD184, a 3793-bp plasmid vector having 43 unique cloning sites
shingle_title_3 Vectors with restriction site banks IV. pJRD184, a 3793-bp plasmid vector having 43 unique cloning sites
shingle_title_4 Vectors with restriction site banks IV. pJRD184, a 3793-bp plasmid vector having 43 unique cloning sites
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geomar
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source_archive Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
timestamp 2024-05-06T08:41:31.581Z
titel Vectors with restriction site banks IV. pJRD184, a 3793-bp plasmid vector having 43 unique cloning sites
titel_suche Vectors with restriction site banks IV. pJRD184, a 3793-bp plasmid vector having 43 unique cloning sites
An improved restriction site bank vector has been constructed from plasmid pJRD158. The new version is smaller and contains 43 unique restriction sites. It should greatly facilitate cloning versatility by providing unique sites for most commercially available restriction enzymes.
topic W
uid nat_lic_papers_NLZ187297797