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Correction

Correction: Qi et al. Recent Progress in Rice–Xanthomonas oryzae Interactions. Biology 2025, 14, 471

1
Zhejiang Key Laboratory of Biology and Ecological Regulation of Crop Pathogens and Insects, College of Advanced Agricultural Sciences, Zhejiang A&F University, Hangzhou 311300, China
2
State Key Laboratory of Rice Biology and Breeding, China National Rice Research Institute, Hangzhou 311400, China
*
Authors to whom correspondence should be addressed.
These authors contributed equally to this work.
Biology 2025, 14(7), 837; https://doi.org/10.3390/biology14070837
Submission received: 2 July 2025 / Accepted: 3 July 2025 / Published: 9 July 2025
(This article belongs to the Special Issue Regulatory Mechanisms of Plant Stress Response)
  • Errors in Table 1
In the original publication [1], there were two mistakes in Table 1 as published. The original reference [45] has been replaced by a new reference: “Hutin, M.; Sabot, F.; Ghesquière, A.; Koebnik, R.; Szurek, B. A knowledge-based molecular screen uncovers a broad-spectrum OsSWEET14 resistance allele to bacterial blight from wild rice. Plant J. 2015, 84, 694–703”.
The original citations for references [56,57] were incorrect due to improper citation. The numbers have been updated so they correctly refer to the reference list. With this correction, the order of some references has also been adjusted accordingly. The corrected Table 1 appears below. The authors state that the scientific conclusions are unaffected. This correction was approved by the Academic Editor. The original publication has also been updated.
Table 1. Rice genes targeted by TALEs.
Table 1. Rice genes targeted by TALEs.
Tale-Targeted
(R/S Gene)
Encoding ProductsMatched TALEsReferences
ResistanceXa1
Xo1
Xa2/31
Xa14
Xa45
NLRMultiple TALEs,
iTALEs/truncTALE
[19,30,33,40]
Xa7ExecutorAvrXa7, PthXo3[37,41]
Xa10ExecutorAvrXa10[35]
Xa23ExecutorAvrXa23[42]
Xa27executorAvrXa27[34]
xa13Sweet transporterPthXo1[43]
xa25Sweet transporterPthXo2[44]
xa41Sweet transporterAvrXa7,
PthXo3, Tal5, TalC
[45]
xa5TFIIA transcription
factor
AvrXa5, PthXo7[46,47,48]
SusceptibilityOsSWEET11(Xa13/Os8N3)Sweet transporterPthXo1[49]
OsSWEET14(Xa41/Os11N3)Sweet transporterAvrXa7,
PthXo3,
TalC, Tal5
[50,51,52]
OsSWEET13(Xa25/Os12N3)Sweet transporterPthXo2[44,53]
OsSWEET12Sweet transporterArtTAL12[52]
OsSWEET15Sweet transporterArtTAL15[52]
OsTFIIAγ5Gamma subunit of rice basal transcription factorMultiple TALEs[54]
OsTFIIAγ1Gamma subunit of rice basal transcription factorPthXo7[46]
OsTFX1bZIP transcription factorPthXo6
TalBMAl1
[46,55]
OsERF#123AP2/ERF
transcription factor
TalBMAl1[55]
OsSULTR3;6Sulfate transporterTal2g[56]
  • Errors in Table 2
In the original publication, there were two mistakes in Table 2 as published. The citation for reference [74] on the line of OsRLCK185 was wrong. This citation has been changed to reference [73]: “Yamaguchi, K.; Yamada, K.; Ishikawa, K.; Yoshimura, S.; Hayashi, N.; Uchihashi, K.; Ishihama, N.; Kishi-Kaboshi, M.; Takahashi, A.; Tsuge, S.; et al. A receptor-like cytoplasmic kinase targeted by a plant pathogen effector is directly phosphorylated by the chitin receptor and mediates rice immunity. Cell Host Microbe 2013, 13, 347–357.” Additionally, a typo was present, and “OsSERK1” has been changed to “OsSERK2”. The corrected Table 2 appears below.
Table 2. Rice genes interacted with non-TALEs.
Table 2. Rice genes interacted with non-TALEs.
Rice Genes
(Interaction Genes)
Encoding ProductsMatched TALEsReferences
OsVOZ2, OsXNP Vascular plant one zinc finger protein 2,
putative thiamine synthase
XopN[27,70,71]
OsBIK1Receptor-like kinases XopR[72]
OsRLCK185 Receptor-like kinaseXopY[73]
OsBAK1 Receptor-like kinase XopAA[74]
OsSERK2 Somatic embryogenic receptor kinase 2XopK[75]
OsPUB44 Ubiquitin E3 ligase XopP[76]
NbFd Ferredoxin proteinXopL[77]
OsORP1C Oxysterol-binding related proteinXopZ[78]
  • Text Correction
There was an error in the original publication. The citation for reference [100] in the following paragraph was not relevant: “The disruption of the binding elements for PthXo3, AvrXa7, and PthXo2 within the promoter regions of the OsSWEET14 and OsSWEET13 genes through TALEN technology has demonstrated significant resistance to BB [44,100].”
A correction has been made to Section 8, Paragraph 3, as follows:
“The disruption of the binding elements for PthXo3, AvrXa7, and PthXo2 within the promoter regions of the OsSWEET14 and OsSWEET13 genes through TALEN technology has demonstrated significant resistance to BB [44].”
  • Wrong Reference
Reference 45 has been replaced with the following new reference: “Hutin, M.; Sabot, F.; Ghesquière, A.; Koebnik, R.; Szurek, B. A knowledge-based molecular screen uncovers a broad-spectrum OsSWEET14 resistance allele to bacterial blight from wild rice. Plant J. 2015, 84, 694–703”.

Reference

  1. Qi, Y.; Rao, Q.; Lu, C.; Gong, J.; Hou, Y. Recent Progress in Rice–Xanthomonas oryzae Interactions. Biology 2025, 14, 471. [Google Scholar] [CrossRef] [PubMed]
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MDPI and ACS Style

Qi, Y.; Rao, Q.; Lu, C.; Gong, J.; Hou, Y. Correction: Qi et al. Recent Progress in Rice–Xanthomonas oryzae Interactions. Biology 2025, 14, 471. Biology 2025, 14, 837. https://doi.org/10.3390/biology14070837

AMA Style

Qi Y, Rao Q, Lu C, Gong J, Hou Y. Correction: Qi et al. Recent Progress in Rice–Xanthomonas oryzae Interactions. Biology 2025, 14, 471. Biology. 2025; 14(7):837. https://doi.org/10.3390/biology14070837

Chicago/Turabian Style

Qi, Yuting, Qiong Rao, Chenglong Lu, Junyi Gong, and Yuxuan Hou. 2025. "Correction: Qi et al. Recent Progress in Rice–Xanthomonas oryzae Interactions. Biology 2025, 14, 471" Biology 14, no. 7: 837. https://doi.org/10.3390/biology14070837

APA Style

Qi, Y., Rao, Q., Lu, C., Gong, J., & Hou, Y. (2025). Correction: Qi et al. Recent Progress in Rice–Xanthomonas oryzae Interactions. Biology 2025, 14, 471. Biology, 14(7), 837. https://doi.org/10.3390/biology14070837

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