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Utilization of tall wheatgrass translocation lines to improve fusarium head blight resistance in wheat

Abstract

dc:description.abstract

<p>Fusarium head blight (FHB) and leaf rust (LR) are two major fungal pathogens threatening the wheat crop, consequently identifying resistance genes from various sources is always of importance to wheat breeders. Type II FHB resistance in wheat has been improved by introgressing QTL from landraces and wild species. The present study was undertaken to (1) combine two different type II FHB resistance QTL in the backgrounds of six adapted wheat lines (2) improve the map resolution of <em>Qfhs.pur-7EL.</em>^ In the first objective, the FHB resistance gene <em>Fhb1</em> originated in a Chinese wheat cultivar and is located on wheat chromosome 3BS, and <em>Qfhs.pur-7EL</em>was introgressed from tall wheatgrass onto wheat chromosome 7DL were combined in six adapted wheat lines. The effect of pyramiding resistance genes through marker-assisted selection was assessed by scoring plants for disease development after inoculating with a combination of four different local FHB isolates. The response of 6 populations of pyramided lines was evaluated in both greenhouse and transplant nursery. The pyramided lines as well as <em>Fhb1</em>-only lines exhibited high levels of resistance to the mixture of four FHB isolates. Although <em>Fhb1</em> or <em>Qfhs.pur-7EL</em> alone is strong enough to achieve satisfactory resistance, pyramided lines may be more stable over time.^ In the second objective, we identified tightly linked markers for FHB-resistance QTL <em>Qfhs.pur-7EL</em> and the LR-resistance gene <em>Lr19 </em>using genotyping by sequencing in a wheat-tall wheatgrass introgression-derived recombinant inbred line (RIL) population. 216,318 SNPs were discovered for this population. After filtering, 1700 high-confidence SNPs were used to conduct the linkage and QTL analysis. <em>Qfhs.pur-7EL</em> was mapped to a 2.9 cM region within a 43.6 cM segment of wheatgrass chromosome 7el<sub> 2</sub> that was translocated onto wheat chromosome 7DL. The LR gene <em>Lr19</em> from 7el<sub>1</sub> was mapped to a 1.21 cM region in the same area, in repulsion. Five lines were identified with the resistance-associated SNP alleles in coupling for <em>Qfhs.pur-7EL</em> and <em>Lr19. </em>Investigation of the genetic characteristics of the parental lines of this RIL population indicated that they are translocation lines in two different wheat cultivar genetic backgrounds instead of 7E-7D substitution lines in Thatcher wheat background as previously reported in the literature. ^ The wheat lines containing pyramided FHB resistance genes and pyramided FHB and LR resistance genes: <em>Qfhs.pur-7EL</em> and <em>Lr19, </em>developed and identified in this study, show potential as genetic resources for sustainable wheat production in areas affected by Fusarium head blight and leaf rust diseases.</p>

Degree

thesis:*
Name thesis:degree_name
Doctor of Philosophy (PhD)
Level thesis:degree_level
Dissertation
Discipline thesis:degree_discipline
Agronomy
Year
2015

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Xiao, Xiangye
Contributors dc:contributor
  • Christie Williams
  • Joseph Anderson
  • Kiersten Wise
  • Mitchell Tuinstra

Subjects

dc:subject × 3

Identifiers

dc:identifier.*
OAI identifier oai:identifier
oai:docs.lib.purdue.edu:open_access_dissertations-1579

Chain of custody

source
Harvested from
Purdue University
Base URL
docs.lib.purdue.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Xiao, Xiangye. Utilization of tall wheatgrass translocation lines to improve fusarium head blight resistance in wheat. Dissertation thesis, 2015. https://docs.lib.purdue.edu/open_access_dissertations/594