Genome-wide comparative analysis of the HSP90 gene family in four Ipomoea species and functional insights into the potentiality of IbHSP90–2 in low temperature tolerance
Lizhe Shu, Kun Zhu, Xingyu Wang, Lilin Cheng, Shuo Zhou, Mingku Zhu, Xiaowan Gou, Zongyun Li

TL;DR
This study explores HSP90 genes in sweetpotato and related species, revealing insights into their role in cold tolerance.
Contribution
The first genome-wide analysis of HSP90 genes in sweetpotato and related Ipomoea species, including functional insights into IbHSP90-2.
Findings
Identified 10 HSP90 genes in I. batatas and 10-11 in related species.
Segmental duplication drove HSP90 gene family expansion.
IbHSP90-2 heterologous expression in yeast reduced cold resistance.
Abstract
The 90-kDa heat shock protein (HSP90) acts as an essential molecular chaperone, involving plantresilience against diverse abiotic and biotic stresses. Although HSP90 genes have been studied in various plant species,they have not yet been characterized in sweetpotato. In this study, we performed genome-wide identification, chromosomal localization, phylogenetic analysis, collinearity analysis, and promoter analysis of HSP90 genes in I. batatas and three closely related Ipomoea species. We also investigated gene expression patterns under cold, salt, and PEG-induced drought stresses, constructed protein-protein interaction networks, and determined the subcellular localization and functional role of IbHSP90-2 via heterologous expression in yeast. We identified 10 HSP90 genes in I. batatas, 11 in I. trifida, and 10 each in I.triloba and I.cordatotriloba. Chromosomal localization analysis…
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Taxonomy
TopicsHeat shock proteins research · Plant Stress Responses and Tolerance · Protein Structure and Dynamics
