Genotype-specific physiological and transcriptomic responses to drought stress in Setaria italica (an emerging model for Panicoideae grasses)
Understanding drought-tolerance mechanisms and identifying genetic dominance are important for crop improvement. Setaria italica , which is extremely drought-tolerant, has been regarded as a model plant for studying stress biology. Moreover, different genotypes of S. italica have evolved various dro...
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Veröffentlicht in: | Scientific reports 2017-08, Vol.7 (1), p.10009-15, Article 10009 |
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Sprache: | eng |
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Zusammenfassung: | Understanding drought-tolerance mechanisms and identifying genetic dominance are important for crop improvement.
Setaria italica
, which is extremely drought-tolerant, has been regarded as a model plant for studying stress biology. Moreover, different genotypes of
S. italica
have evolved various drought-tolerance/avoidance mechanisms that should be elucidated. Physiological and transcriptomic comparisons between drought-tolerant
S. italica
cultivar ‘Yugu1’ and drought-sensitive ‘An04’ were conducted. ‘An04’ had higher yields and more efficient photosystem activities than ‘Yugu1’ under well-watered conditions, and this was accompanied by positive brassinosteroid regulatory actions. However, ‘An04’s growth advantage was severely repressed by drought, while ‘Yugu1’ maintained normal growth under a water deficiency. High-throughput sequencing suggested that the
S. italica
transcriptome was severely remodelled by genotype × environment interactions. Expression profiles of genes related to phytohormone metabolism and signalling, transcription factors, detoxification, and other stress-related proteins were characterised, revealing genotype-dependent and -independent drought responses in different
S. italica
genotypes. Combining our data with drought-tolerance-related QTLs, we identified 20 candidate genes that contributed to germination and early seedling’ drought tolerance in
S. italica
. Our analysis provides a comprehensive picture of how different
S. italica
genotypes respond to drought, and may be used for the genetic improvement of drought tolerance in Poaceae crops. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-017-08854-6 |