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Phenotypic and genome-wide association analysis of spike ethylene in diverse wheat genotypes under heat stress
被引:72
作者:
Valluru, Ravi
[1
,2
,3
]
Reynolds, Matthew P.
[1
]
Davies, William J.
[2
]
Sukumaran, Sivakumar
[1
]
机构:
[1] CIMMYT, Int Maize & Wheat Improvement Ctr, Global Wheat Program, El Batan 56237, Mexico
[2] Univ Lancaster, Lancaster Environm Ctr, Dept Plant Biol, Lancaster LA1 4YQ, England
[3] Cornell Univ, Inst Genom Div, Ithaca, NY 14850 USA
关键词:
ethylene;
genome-wide association (GWA);
heat stress;
spike dry weight;
spike ethylene;
wheat;
HIGH-TEMPERATURE STRESS;
QUANTITATIVE TRAIT LOCI;
PHYSIOLOGICAL TRAITS;
ABSCISIC-ACID;
SPRING WHEAT;
FLORET FERTILITY;
COMPLEX TRAITS;
HARVEST INDEX;
GRAIN-SIZE;
POPULATION;
D O I:
10.1111/nph.14367
中图分类号:
Q94 [植物学];
学科分类号:
071001 ;
摘要:
The gaseous phytohormone ethylene plays an important role in spike development in wheat (Triticum aestivum). However, the genotypic variation and the genomic regions governing spike ethylene (SET) production in wheat under long-term heat stress remain unexplored. We investigated genotypic variation in the production of SET and its relationship with spike dry weight (SDW) in 130 diverse wheat elite lines and landraces under heat-stressed field conditions. We employed an Illumina iSelect 90K single nucleotide polymorphism (SNP) genotyping array to identify the genetic loci for SET and SDW through a genome-wide association study (GWAS) in a subset of the Wheat Association Mapping Initiative (WAMI) panel. The SET and SDW exhibited appreciable genotypic variation among wheat genotypes at the anthesis stage. There was a strong negative correlation between SET and SDW. The GWAS uncovered five and 32 significant SNPs for SET, and 22 and 142 significant SNPs for SDW, in glasshouse and field conditions, respectively. Some of these SNPs closely localized to the SNPs for plant height, suggesting close associations between plant height and spikerelated traits. The phenotypic and genetic elucidation of SET and its relationship with SDW supports future efforts toward gene discovery and breeding wheat cultivars with reduced ethylene effects on yield under heat stress.
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页码:271 / 283
页数:13
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