Skip to main content
Advertisement
Browse Subject Areas
?

Click through the PLOS taxonomy to find articles in your field.

For more information about PLOS Subject Areas, click here.

  • Loading metrics

Correction: Integration of High-Resolution Physical and Genetic Map Reveals Differential Recombination Frequency between Chromosomes and the Genome Assembling Quality in Cucumber

  • The PLOS ONE Staff
  • Article
  • Metrics
  • Comments
  • Media Coverage

In the Results section there is an error in the last sentence of the first paragraph of “4. The Disparity of Recombination Frequency Along Chromosome and between Chromosomes 3 and 4” subsection. The sentence should read: Clone 4-1 and clone 4-2 markers with the same genetic position (0 cM) from the end of LG-4 were mapped at 0.7 FL and 1.9 FL cytogenetically (Figure 5 and Table 3).

In the Discussion, there is an error in the penultimate sentence of the first paragraph. The sentence should read: In addition, in the present research, the recombination suppression was also found at the end of chromosome 4, where clone 4-1 and clone 4-2 from the starting genetic positions (0 cM) were mapped onto discernible different cytogenetic position.

There are errors in Tables 2 and 3; “long arm” and “short arm” are incorrectly switched throughout both tables. Please see the correct tables here.

thumbnail
Table 2. Genetic and physical position of SSR marker-anchored cucumber chromosome 3-specific fosmid clones and satellite DNAs.

https://doi.org/10.1371/journal.pone.0062676.t002

thumbnail
Table 3. Genetic and physical position of SSR marker-anchored cucumber chromosome-4 specific fosmid clones and satellite DNAs.

https://doi.org/10.1371/journal.pone.0062676.t003

Reference

  1. 1. Lou Q, He Y, Cheng C, Zhang Z, Li J, et al. (2013) Integration of High-Resolution Physical and Genetic Map Reveals Differential Recombination Frequency between Chromosomes and the Genome Assembling Quality in Cucumber. PLoS ONE 8(5): e62676