Evaluating an interspecific Helianthus annuus×Helianthus tuberosus population for use in a perennial sunflower breeding program

•We examine an interspecific Helianthus annuus×Helianthus tuberosus population.•We can easily identify true interspecific hybrids.•Intermated F1 (IM1F1) have increased flower size (up to 20%) compared to the F1.•Perennial habit segregates in a simple fashion even if the genetics are complex.•The bes...

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Veröffentlicht in:Field crops research 2014-01, Vol.155, p.254-264
Hauptverfasser: Kantar, Michael B., Betts, Kevin, Michno, Jean-Michel, Luby, James J., Morrell, Peter L., Hulke, Brent S., Stupar, Robert M., Wyse, Donald L.
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container_issue
container_start_page 254
container_title Field crops research
container_volume 155
creator Kantar, Michael B.
Betts, Kevin
Michno, Jean-Michel
Luby, James J.
Morrell, Peter L.
Hulke, Brent S.
Stupar, Robert M.
Wyse, Donald L.
description •We examine an interspecific Helianthus annuus×Helianthus tuberosus population.•We can easily identify true interspecific hybrids.•Intermated F1 (IM1F1) have increased flower size (up to 20%) compared to the F1.•Perennial habit segregates in a simple fashion even if the genetics are complex.•The best improvement strategy is a recurrent selection program focusing on yield. Perennial crops show promise for sustainable agricultural production while providing ecosystem services (maintaining healthy soil, controlling erosion, improving water quality, and enhancing wildlife habitat). Perennial crops could also provide economically viable cropping option to farmers. Sunflower (Helianthus annuus L.) is an ideal crop for perennialization because of existing genetic resources and a wide variety of end-uses. The objective of this research was to evaluate interspecific hybrids between perennial Helianthus tuberosus L. (2n=6x=102) and annual H. annuus L. (2n=2x=34) for perenniality and agronomic traits; assessing their utility in developing a perennial seed crop. Field trials indicated that seed yield traits were positively correlated with head traits. Tuber traits, which are required for perenniality, and seed yield traits were not correlated, indicating that simultaneous selection may be able to target high yielding lines that also tuberize. The F1 individuals were intermated for one generation and the intermated F1 (IM1F1) showed increases in head size (up to 20%) compared to the best F1 individual. The lack of correlation between tuber and seed traits coupled with phenotypic improvement after one generation of intermating suggest that the best improvement strategy for perennial sunflower is a recurrent selection program focusing on yield.
doi_str_mv 10.1016/j.fcr.2013.04.018
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subjects Ecosystem services
Flow cytometry
Helianthus
Helianthus annuus
Helianthus tuberosus
Interspecific hybridization
Perennial grain
Phenotypic correlation
Tuber
title Evaluating an interspecific Helianthus annuus×Helianthus tuberosus population for use in a perennial sunflower breeding program
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