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1                                           In intergeneric coaggregation between streptococci and acti
2 ained the parental ability to participate in intergeneric coaggregation with human oral actinomyces,
3              The defect could be repaired by intergeneric complementation with E. coli fabH.
4                                    Recently, intergeneric conjugation has been used to circumvent hos
5 acterized insertions are then transferred by intergeneric conjugation into Streptomyces, where gene r
6 host range vectors that are transferable via intergeneric conjugation with an Escherichia coli strain
7 ms that can receive DNA via RK2/RP4-mediated intergeneric conjugation.
8 ent transfer to Streptomyces by RP4-mediated intergeneric conjugation.
9 and enhanced growth through interspecies and intergeneric cooperation could be critical.
10 g the hybridization breadth of interspecific/intergeneric crosses in Brassicaceae.
11 eliad diversification was driven by an early intergeneric divergence in habitat, followed by parallel
12                  The potential to facilitate intergeneric DNA transfer from E. faecalis is of concern
13 pharmaceutically relevant producer strain by intergeneric Escherichia coli-Streptomyces conjugation.
14 d the cytochrome oxidase subunit II-16S rRNA intergeneric fragment from fifty-five valid Meloidogyne
15 cal species, which may have implications for intergeneric gene acquisition in oral biofilms.
16 l superantigen SEB raises the possibility of intergeneric gene transfer, a search for ssa in 68 genet
17 ntal gene transfer and a stealth conduit for intergeneric gene transfer; they are phage satellites th
18 odontitis demonstrated robust congeneric and intergeneric hubs but significantly fewer cytokine-bacte
19 aceae species and resulting in interspecific/intergeneric hybrid embryo formation.
20  genomic and mitochondrial DNA confirmed the intergeneric hybrid nature of resulting embryos which su
21  represent introgressed mtDNA resulting from intergeneric hybridization between the two lenok subspec
22 e-genome duplication (WGD) and interspecific/intergeneric hybridization in plants.
23                  These data and results from intergeneric hybridization indicated surprisingly close
24 iotic stress resistance and has been used in intergeneric hybridization with ryegrasses (Lolium spp.)
25 ificial manipulations involving taimen-lenok intergeneric hybridization.
26 ploid species in the paleotropical clade and intergeneric hybrids among the allotetraploid temperate
27 and ts2 alleles to complement one another in intergeneric hybrids.
28  significance of staph-cAM373 as a potential intergeneric inducer of transfer-proficient genetic elem
29 suggest that the tna cluster was acquired by intergeneric lateral transfer, either by H. influenzae o
30  of informative variation for interspecific-/intergeneric-level phylogenetic analyses among angiosper
31  functional equivalence of interspecific and intergeneric pairs of alleles underlying reproduction.
32                                              Intergeneric polio recombinants with heterologous intern
33 -pistil interactions establish interspecific/intergeneric pre-zygotic hybridization barriers in plant
34      To study the evolution of mtDNA and the intergeneric relationships of New World Jays (Aves: Corv
35 al branches (Andropogoneae), better defining intergeneric relationships.
36        We previously demonstrated functional intergeneric transfer of PrpS and PrsS to Arabidopsis (A