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Haplotype-resolved genome and mapping of freezing tolerance in the wild potato . | LitMetric

Haplotype-resolved genome and mapping of freezing tolerance in the wild potato .

Hortic Res

National Key Laboratory for Germplasm Innovation and Utilization of Horticultural Crops, Key Laboratory of Horticultural Plant Biology, Ministry of Education, Key Laboratory of Potato Biology and Biotechnology, Ministry of Agriculture and Rural Affairs; Huazhong Agricultural University, Wuhan 430070, China.

Published: September 2024

AI Article Synopsis

  • - This study presents the high-quality genome of a wild potato species native to Brazil, Uruguay, and Argentina, highlighting its disease resistance and stress tolerance traits, with two main haplotypes revealing substantial chromosome sizes and gene counts.
  • - The analysis shows significant positive selection on genes related to disease resistance and environmental adaptation, contributing to the impressive genetic diversity of this wild potato.
  • - Researchers successfully mapped potato freezing tolerance genes using a hybrid population and a combination of BSA-seq and QTL mapping, pinpointing a specific region on Chr07, which will aid in understanding cold tolerance in potatoes.

Article Abstract

(2 = 2 = 24, 1EBN, Endosperm Balance Number), native to the southern regions of Brazil, Uruguay, and northeastern Argentina, is the first wild potato germplasm collected by botanists and exhibits a remarkable array of traits related to disease resistance and stress tolerance. In this study, we present a high-quality haplotype-resolved genome of . The two identified haplotypes demonstrate chromosome sizes of 706.48 and 711.55 Mb, respectively, with corresponding chromosome anchoring rates of 94.2 and 96.9%. Additionally, the contig N50 lengths are documented at 50.87 and 45.16 Mb. The gene annotation outcomes indicate that the haplotypes encompasses a gene count of 39 799 and 40 078, respectively. The genome contiguity, completeness, and accuracy assessments collectively indicate that the current assembly has produced a high-quality genome of . Evolutionary analysis revealed significant positive selection acting on certain disease resistance genes, stress response genes, and environmentally adaptive genes during the evolutionary process of . These genes may be related to the formation of diverse and superior germplasm resources in the wild potato species . Furthermore, we utilized a hybrid population of and to conduct the mapping of potato freezing tolerance genes. By combining BSA-seq analysis with traditional QTL mapping, we successfully mapped the potato freezing tolerance genes to a specific region on Chr07, spanning 1.25 Mb, with a phenotypic contribution rate of 18.81%. In short, current research provides a haplotype-resolved reference genome of the diploid wild potato species and establishes a foundation for further cloning and unraveling the mechanisms underlying cold tolerance in potatoes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11374536PMC
http://dx.doi.org/10.1093/hr/uhae181DOI Listing

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