GmSYP24, a putative syntaxin gene, confers osmotic/drought, salt stress tolerances and ABA signal pathway
As major environment factors, drought or high salinity affect crop growth, development and yield. Transgenic approach is an effective way to improve abiotic stress tolerance of crops. In this study, we comparatively analyzed gene structures, genome location, and the evolution of syntaxin proteins co...
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Veröffentlicht in: | Scientific reports 2019-04, Vol.9 (1), p.5990-5990, Article 5990 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | As major environment factors, drought or high salinity affect crop growth, development and yield. Transgenic approach is an effective way to improve abiotic stress tolerance of crops. In this study, we comparatively analyzed gene structures, genome location, and the evolution of syntaxin proteins containing late embryogenesis abundant (LEA2) domain.
GmSYP24
was identified as a dehydration-responsive gene. Our study showed that the GmSYP24 protein was located on the cell membrane. The overexpression of GmSYP24 (
GmSYP24
ox) in soybean and heteroexpression of GmSYP24 (
GmSYP24
hx) in Arabidopsis exhibited insensitivity to osmotic/drought and high salinity. However, wild type soybean, Arabidopsis, and the mutant of
GmSYP24
homologous gene of Arabidopsis were sensitive to the stresses. Under the abiotic stresses, transgenic soybean plants had greater water content and higher activities of POD, SOD compared with non-transgenic controls. And the leaf stomatal density and opening were reduced in transgenic Arabidopsis. The sensitivity to ABA was decreased during seed germination of
GmSYP24ox
and
GmSYP24
hx.
GmSYP24
hx induced up-regulation of ABA-responsive genes.
GmSYP24
ox alters the expression of some aquaporins under osmotic/drought, salt, or ABA treatment. These results demonstrated that
GmSYP24
played an important role in osmotic/drought or salt tolerance in ABA signal pathway. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-019-42332-5 |