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Identification of chromosome regions for high-temperature tolerance in the japonicarice cultivar ‘Genkitsukushi’ (Oryza sativaL.)

Authors :
Miyahara, Katsunori
Wada, Takuya
Fukuoka, Shuichi
Miyazaki, Masayuki
Yamaguchi, Osamu
Ishibashi, Masafumi
Kondo, Motohiko
Hamaoka, Norimitsu
Ishibashi, Yushi
Source :
Plant Production Science; January 2023, Vol. 26 Issue: 1 p88-99, 12p
Publication Year :
2023

Abstract

ABSTRACTDegradation of the appearance of rice grains due to high temperatures during ripening is a serious problem being worsened by global warming. QTLs for tolerance to high temperature during ripening must be identified in order to develop new cultivars efficiently. Here, we developed recombinant inbred lines (RILs) from crosses between the high-temperature-tolerant ‘Genkitsukushi’ and the high-temperature-sensitive ‘Tsukushiroman’. The occurrence of white-back grains is significantly lower in ‘Genkitsukushi’ than in ‘Tsukushiroman’. We evaluated their high-temperature tolerance and performed quantitative trait locus (QTL) analysis. A QTL for white-back grains on chromosome (chr.) 6 and a large-effect QTL on chr. 8 were identified in the two-year experiments. The QTL on chr. 8 was close to one we previously detected using RILs derived from ‘Chikushi 52’ × ‘Tsukushiroman’. The results indicate that the QTL on chr. 6 is unique to ‘Genkitsukushi’ × ‘Tsukushiroman’, and that on chr. 8 could be identical between ‘Genkitsukushi’ and ‘Chikushi 52’. Backcrossed lines which harbor the QTL region on chr. 8 of ‘Genkitsukushi’ in the background of ‘Tsukushiroman’ verified its effects. We also analyzed the marker genotypes near the QTLs on chr. 6 and 8 in relatives of ‘Genkitsukushi’. We discuss the interaction between these QTLs and their relationship with high-temperature tolerance.

Details

Language :
English
ISSN :
1343943X and 13491008
Volume :
26
Issue :
1
Database :
Supplemental Index
Journal :
Plant Production Science
Publication Type :
Periodical
Accession number :
ejs62472183
Full Text :
https://doi.org/10.1080/1343943X.2022.2155669