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      Corrigendum: Genetic Mapping With Allele Dosage Information in Tetraploid Urochloa decumbens (Stapf) R. D. Webster Reveals Insights Into Spittlebug ( Notozulia entreriana Berg) Resistance

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          Abstract

          In the original article, there were mistakes in the legend for Figure 2, Figure 3, Figure S1, Figure S2, and Figure S3 as published. Some words and representative colors were incorrectly provided. The corrected legends appear below. Figure 2. Linkage map for U. decumbens: homologous groups from 1 to 4. The genotype configuration of each marker is indicated by the marker name prefix and color. Simplex markers are represented in black; duplex markers are represented in green; double-simplex markers are represented in purple; X-double-simplex markers are represented in light blue; duplex-simplex markers are represented in dark blue and double-duplex markers are represented in orange. QTLs are identified in HG1 and HG2. Figure 3. Linkage map for U. decumbens: homologous groups from 5 to 9. The genotype configuration of each marker is indicated by the marker name prefix and color. Simplex markers are represented in black; duplex markers are represented in green; double-simplex markers are represented in purple; X-double-simplex markers are represented in light blue; duplex-simplex markers are represented in dark blue and double-duplex markers are represented in orange. A QTL is identified in HG6. Figure S1. Homology groups 1, 2, and 3 of the D24/27 maternal linkage map and of the D62 paternal linkage map. The genotype configuration of each marker is indicated by the marker name prefix and color. Simplex markers are represented in black; duplex markers are represented in green; double-simplex markers are represented in purple; X-double-simplex markers are represented in light blue; duplex-simplex markers are represented in dark blue and double-duplex markers are represented in orange. Figure S2. Homology groups 4, 5, and 6 of the D24/27 maternal linkage map and of the D62 paternal linkage map. The genotype configuration of each marker is indicated by the marker name prefix and color. Simplex markers are represented in black; duplex markers are represented in green; double-simplex markers are represented in purple; X-double-simplex markers are represented in light blue; duplex-simplex markers are represented in dark blue and double-duplex markers are represented in orange. Figure S3. Homology groups 7, 8, and 9 of the D24/27 maternal linkage map and of the D62 paternal linkage map. The genotype configuration of each marker is indicated by the marker name prefix and color. Simplex markers are represented in black; duplex markers are represented in green; double-simplex markers are represented in purple; X-double-simplex markers are represented in light blue; duplex-simplex markers are represented in dark blue and double-duplex markers are represented in orange. Additionally, the accession number for the GBS sequences, deposited in the NCBI, was wrong. A correction has been made to the Results section, subsection SNP Calling, paragraph three: “GBS sequence data have been submitted to the NCBI Sequence Read Archive (SRA) under accession number SRP148665”. The authors apologize for these errors and state that they do not change the scientific conclusions of the article in any way. The original article has been updated.

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          Contributors
          URI : http://loop.frontiersin.org/people/674390/overview
          URI : http://loop.frontiersin.org/people/626069/overview
          URI : http://loop.frontiersin.org/people/183440/overview
          URI : http://loop.frontiersin.org/people/335774/overview
          Journal
          Front Plant Sci
          Front Plant Sci
          Front. Plant Sci.
          Frontiers in Plant Science
          Frontiers Media S.A.
          1664-462X
          26 June 2019
          2019
          26 June 2019
          : 10
          : 855
          Affiliations
          [1] 1Center for Molecular Biology and Genetic Engineering, University of Campinas , Campinas, Brazil
          [2] 2Genetics Department, Escola Superior de Agricultura “Luiz de Queiroz”, University of São Paulo , Piracicaba, Brazil
          [3] 3Embrapa Beef Cattle, Brazilian Agricultural Research Corporation , Campo Grande, Brazil
          [4] 4Plant Biology Department, Biology Institute, University of Campinas , Campinas, Brazil
          Author notes

          Edited and reviewed by: Sergio J. Ochatt, INRA UMR1347 Agroécologie, France

          *Correspondence: Anete Pereira de Souza anete@ 123456unicamp.br

          This article was submitted to Plant Breeding, a section of the journal Frontiers in Plant Science

          Article
          10.3389/fpls.2019.00855
          6608399
          18fc557d-30e1-4af3-a663-edb1655384d9
          Copyright © 2019 Ferreira, Lara, Chiari, Barrios, do Valle, Valério, Torres, Garcia and de Souza.

          This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.

          History
          : 26 April 2019
          : 13 June 2019
          Page count
          Figures: 0, Tables: 0, Equations: 0, References: 0, Pages: 2, Words: 869
          Categories
          Plant Science
          Correction

          Plant science & Botany
          allele dosage,brachiaria,linkage map,polyploidy,signalgrass,snp,quantitative traits
          Plant science & Botany
          allele dosage, brachiaria, linkage map, polyploidy, signalgrass, snp, quantitative traits

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