Javascript must be enabled to continue!
The wheat chloroplastic small heat shock protein (sHSP26) is involved in seed maturation and germination and imparts tolerance to heat stress
View through CrossRef
ABSTRACTThe nuclear‐encoded chloroplast small heat shock proteins (sHSPs) are present in all plant species from algae to angiosperms. Expression analysis shows that the wheat chloroplastic sHSP (HSP26) is highly inducible by heat stress in almost all the vegetative and generative tissues and is also expressed constitutively in certain developmental growth stages. We characterize wheat chloroplastic sHSP 26 through transgenic approach using Arabidopsis and report cloning of the promoter and its characterization. Transgenic Arabidopsis plants were substantially tolerant under continuous high temperature regimen than wild‐type plants, as measured by photosystem II (PSII) activity, accumulation of more photosynthetic pigments, higher biomass and seed yield. Transgenic plants produced bold seeds under high temperature, having higher germination potential than the wild‐type plants. Further, antisense Arabidopsis plants showed negligible tolerance even for non‐lethal heat shock, impaired in basal thermo‐tolerance, and accumulated less biomass and seed yield under normal growth conditions. Promoter analysis revealed the presence of several heat and other abiotic stress responsive cis‐acting elements along with developmental stage and tissue‐specific elements. Analysis of promoter through GUS reporter system in both transgenic rice and Arabidopsis further confirms the role of chloroplastic sHsp26 in heat and other abiotic stresses as well as during seed maturation and germination. Genome‐wide expression analysis of overexpression Arabidopsis plants revealed that the transcriptome remained unchanged in the transgenic plants and the tolerance was due to the overexpression of chloroplastic heat shock protein (HSP) only.
Title: The wheat chloroplastic small heat shock protein (sHSP26) is involved in seed maturation and germination and imparts tolerance to heat stress
Description:
ABSTRACTThe nuclear‐encoded chloroplast small heat shock proteins (sHSPs) are present in all plant species from algae to angiosperms.
Expression analysis shows that the wheat chloroplastic sHSP (HSP26) is highly inducible by heat stress in almost all the vegetative and generative tissues and is also expressed constitutively in certain developmental growth stages.
We characterize wheat chloroplastic sHSP 26 through transgenic approach using Arabidopsis and report cloning of the promoter and its characterization.
Transgenic Arabidopsis plants were substantially tolerant under continuous high temperature regimen than wild‐type plants, as measured by photosystem II (PSII) activity, accumulation of more photosynthetic pigments, higher biomass and seed yield.
Transgenic plants produced bold seeds under high temperature, having higher germination potential than the wild‐type plants.
Further, antisense Arabidopsis plants showed negligible tolerance even for non‐lethal heat shock, impaired in basal thermo‐tolerance, and accumulated less biomass and seed yield under normal growth conditions.
Promoter analysis revealed the presence of several heat and other abiotic stress responsive cis‐acting elements along with developmental stage and tissue‐specific elements.
Analysis of promoter through GUS reporter system in both transgenic rice and Arabidopsis further confirms the role of chloroplastic sHsp26 in heat and other abiotic stresses as well as during seed maturation and germination.
Genome‐wide expression analysis of overexpression Arabidopsis plants revealed that the transcriptome remained unchanged in the transgenic plants and the tolerance was due to the overexpression of chloroplastic heat shock protein (HSP) only.
Related Results
Row Orientation and Planting Pattern of Relay Intercropped Soybean and Wheat
Row Orientation and Planting Pattern of Relay Intercropped Soybean and Wheat
Relay intercropping soybean [Glycine max(L.) Merr.] into winter wheat (Triticum aestivum L.) may increase soybean yields compared with doublecropping. Once the soybean crop is esta...
Evaluation of Alternative Break Crops in Rotation with Bread Wheat (triticum aestivum l.) in South-Eastern Ethiopia
Evaluation of Alternative Break Crops in Rotation with Bread Wheat (triticum aestivum l.) in South-Eastern Ethiopia
Crop rotation could be a possible intervention to resolve multifaceted problems of monoculture. In recent years, there is a concern about soil depletion caused by intensive farming...
Evaluation of Pre-sowing Seed Treatments on Germination of Selected Indigenous Tree and shrub Species in Borana Zone, Southern Oromia
Evaluation of Pre-sowing Seed Treatments on Germination of Selected Indigenous Tree and shrub Species in Borana Zone, Southern Oromia
Abstract
Background
The germination success of indigenous tree and shrub species is crucial for ecosystem restoration and biodi...
Global patterns in the evolutionary relations between seed mass and germination traits
Global patterns in the evolutionary relations between seed mass and germination traits
Abstract
During stressful climatic periods, plant populations face significant challenges, especially during germination and seedling establishment. Theoretical stu...
Environmental Effects and Their impact on Yield in Adjacent Experimental Plots of High and Short Stem Wheat Varieties
Environmental Effects and Their impact on Yield in Adjacent Experimental Plots of High and Short Stem Wheat Varieties
Abstract
Using Xinhuamai818 as the experimental material for high stem wheat varieties, HHH as the control plot for high stem wheat varieties(One letter represents ...
Environmental Effects and Their Impact on Yield in Adjacent Experimental Plots of High-stem and Short-Stem Wheat Varieties
Environmental Effects and Their Impact on Yield in Adjacent Experimental Plots of High-stem and Short-Stem Wheat Varieties
Abstract
Xinhuamai 818 was used as the experimental material for high-stem wheat varieties, HHH was used as the control plot for high-stem wheat varieties (one lett...
Identification and fine mapping of a novel qGR6.2 locus controlling rice salt tolerance during seed germination
Identification and fine mapping of a novel qGR6.2 locus controlling rice salt tolerance during seed germination
Abstract
Background Rice growth is frequently affected by salinity. When rice plants are exposed to high salinity, seed germination and seedling establishment are significa...
Screening for heat tolerant genotypes in bread wheat (T. aestivum L.) using stress tolerance indices
Screening for heat tolerant genotypes in bread wheat (T. aestivum L.) using stress tolerance indices
Heat is a major stress that severely affects wheat productivity. The objective of the current study was estimating the effect of heat stress during the grain-filling stage for scr...

