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1 pulation-level structure or the evolution of cryptic species.
2 p lineages of T. submersa that may represent cryptic species.
3 uld be interpreted as indicative of multiple cryptic species.
4 andscape and is probably differentiated into cryptic species.
5 e in freshwater streams and contains several cryptic species.
6  events preceded secondary sympatry of these cryptic species.
7                8.3% showed evidence of being cryptic species.
8 species" is a long-standing confusion of two cryptic species.
9 ies variability and the potential for new or cryptic species.
10 rphospecies C. uncinata consists of multiple cryptic species.
11 e I barcoding has exposed many potential new cryptic species.
12 de first clues to the existence of yet other cryptic species.
13 tute two distinct geographically overlapping cryptic species.
14 as enormous potential for assessing rare and cryptic species.
15 odern methods for describing morphologically cryptic species.
16 nurans has both toxic/colorful and palatable/cryptic species.
17 lineages in North America that may represent cryptic species.
18 a decipiens complex consists of at least six cryptic species.
19 , a major vector of malaria, is a complex of cryptic species and subspecies.
20 oform L, and morphoform 'a' contain possible cryptic species; and suggested that cytoform B is in the
21                             But all of these cryptic species are more specialized in their diet than
22 da glabrata isolates for the presence of the cryptic species Candida nivariensis and Candida bracaren
23 hylogenetic history of the Anopheles gambiae cryptic species complex have yielded strongly conflictin
24 tematics in the discovery and delineation of cryptic species complexes, as well as providing new pers
25 indicate each lineage represents a distinct (cryptic) species, contradicting current morphospecies de
26  of this finding, we have to know in how far cryptic species differ in various aspects of their biolo
27         This diversity is not an artifact of cryptic species divergence but reflects an enormous pan-
28  (cytochrome oxidase I) revealed significant cryptic species diversity.
29 elling evidence for the existence of a third cryptic species during the speciation event and the abru
30 s been further complicated because two other cryptic species from North China that were previously co
31 hic heteronomy in the family Myrmecolacidae, cryptic species, genomics, immune response, and behavior
32 nd spread of aposematic traits in previously cryptic species has been the focus of much empirical and
33                                              Cryptic species, i.e. species that are morphologically h
34 sive inventory suggests that the presence of cryptic species is a widespread phenomenon and that furt
35                            Identification of cryptic species is an essential aim for conservation bio
36 ntracaecum ogmorhini represents a complex of cryptic species is not supported by mt genome data.
37  transmission of CCYV by Mediterranean (MED) cryptic species of B. tabaci complex.
38         DNA barcodes can be used to identify cryptic species of skipper butterflies previously detect
39                               How common are cryptic species--those overlooked because of their morph
40 ns attributed to Bd have been reported among cryptic species undergoing direct development away from
41 ss there is high initial occupancy, rare and cryptic species will be particularly challenging when it
42             We suggest that the existence of cryptic species within G. laevigata, in combination with
43  the phylogenetic analysis reveals potential cryptic species within mainland populations of C. tigris
44 coding bindin to evaluate the possibility of cryptic species within S. intermedius.
45    We thus have found no genetic evidence of cryptic species within S. intermedius.
46   This finding suggests the existence of two cryptic species within the present C. intestinalis speci

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