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Species Resource Title
Prokaryotes B. subtilis MBS1002 , MBS1003 , MBS1004 , MBS1005 , MBS1006 , MBS1007 , MBS1008 , MBS1009 Integrated conjugal plasmid pLS20 in the Bacillus subtilis genome produced 850-kbp circular subgenomes transmissible to another B. Subtilis.
Prokaryotes B. subtilis BKE12880 , BKE12870 , BKE12890 , BKE21920 Knockout of ykcB , a Putative Glycosyltransferase, Leads to Reduced Susceptibility to Vancomycin in Bacillus subtilis
Prokaryotes B. subtilis MBS974 , MBS975 , MBS976 , MBS977 , MBS978 , MBS979 , MBS980 , MBS981 , MBS982 , MBS983 DnaK chaperone machine and trigger factor are only partially required for normal growth of Bacillus subtilis.
Prokaryotes B. subtilis MBS937 , MBS938 , MBS939 , MBS940 , MBS941 , MBS942 , MBS943 Stable and efficient delivery of DNA to Bacillus subtilis (natto) using pLS20 conjugational transfer plasmids.
Prokaryotes B. subtilis MBS952 , MBS953 , MBS954 , MBS955 , MBS956 Isolation of RNase H genes that are essential for growth of Bacillus subtilis 168.
Prokaryotes B. subtilis MBS959 , MBS960 , MBS961 , MBS962 , MBS963 , MBS964 , MBS965 , MBS966 , MBS967 , MBS968 , ... Genetic transfer of large DNA inserts to designated loci of the Bacillus subtilis 168 genome.
Prokaryotes B. subtilis MBS944 , MBS945 , MBS946 , MBS947 , MBS948 , MBS949 , MBS950 , MBS951 Physical map of the Bacillus subtilis 166 genome: evidence for the inversion of an approximately 1900 kb continuous DNA segment, the translocation of an approximately 100 kb segment and the duplication of a 5 kb segment.
Prokaryotes B. subtilis MBS829 , MBS830 , MBS831 , MBS832 , MBS833 , MBS834 , MBS835 , MBS836 , MBS837 , MBS838 , ... Stable mutants of restriction-deficient/modification-proficient Bacillus subtilis 168: hub strains for giant DNA engineering.
Prokaryotes B. subtilis MBS757 , MBS758 , MBS759 , MBS760 , MBS761 , MBS762 , MBS763 , MBS764 , MBS766 , MBS767 Far rapid synthesis of giant DNA in the Bacillus subtilis genome by a conjugation transfer system.
Prokaryotes B. subtilis MBS749 , MBS750 , MBS751 , MBS752 , MBS753 , MBS754 , MBS755 , MBS756 , MBS768 The first high frequency of recombination-like conjugal transfer from an integrated origin of transfer sequence in Bacillus subtilis 168.
Prokaryotes B. subtilis MBS840 , MBS841 , MBS842 , MBS843 , MBS844 , MBS845 , MBS846 , MBS847 , MBS848 , MBS849 , ... Serial assembly of Thermus megaplasmid DNA in the genome of Bacillus subtilis 168: a BAC-based domino method applied to DNA with a high GC content.
Prokaryotes B. subtilis MBS774 , MBS775 , MBS776 , MBS777 , MBS778 , MBS779 , MBS780 , MBS781 , MBS782 , MBS783 Sequential insertion of multiple I-SceI recognition sites at designed loci of the Bacillus subtilis 168 genome.
Prokaryotes B. subtilis MBS807 , MBS814 , MBS815 , MBS816 , MBS817 , MBS818 , MBS819 , MBS820 , MBS822 Reshuffling of the Bacillus subtilis 168 genome by multifold inversion.
Prokaryotes B. subtilis MBS794 , MBS795 , MBS796 , MBS797 , MBS798 , MBS799 , MBS800 , MBS801 , MBS802 , MBS803 , ... Conjugational transfer system to shuttle giant DNA cloned by Bacillus subtilis genome (BGM) vector.
Prokaryotes B. subtilis MBS771 , MBS772 , MBS773 Conjugational transfer kinetics of pLS20 between Bacillus subtilis in liquid medium.
Prokaryotes B. subtilis MBS902 , MBS903 , MBS904 , MBS905 , MBS906 , MBS907 , MBS908 , MBS909 , MBS910 , MBS911 , ... Combining two genomes in one cell: stable cloning of the Synechocystis PCC6803 genome in the Bacillus subtilis 168 genome.
Prokaryotes B. subtilis MBS769 , MBS770 Green marker for colonies of Bacillus subtilis.
Prokaryotes B. subtilis MBS823 , MBS824 , MBS825 , MBS826 , MBS827 , MBS828 Complete physical map of the Bacillus subtilis 168 chromosome constructed by a gene-directed mutagenesis method.
Prokaryotes B. subtilis Bacillus subtilis 168(MGNA-A001) Bacterial inducible expression of plant cell wall-binding protein YesO through conflict between Glycine max and saprophytic Bacillus subtilis.
Prokaryotes B. subtilis MBS861 , MBS862 , MBS863 , MBS864 , MBS865 , MBS866 , MBS867 , MBS868 , MBS869 , MBS870 , ... Novel (p)ppGpp0 suppressor mutations reveal an unexpected link between methionine catabolism and GTP synthesis in Bacillus subtilis.