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We have reported an extensive survey of leaf apoplastic proteome in resistant and susceptible wheat in response to Z. tritici.
Al-tolerant rye was found to maintain a higher content of glucose-6-phosphate than Al-sensitive wheat in response to Al exposure [ 49].
For example, miRNAs and long non-coding RNA regulating the response to Bgt infection were analyzed using Solexa high-throughput sequencing [ 16, 17], and gene expression profiling of wheat in response to Bgt infection [ 18].
The comparison allowed us to reveal the molecular mechanism underlying the different resistance phenotypes of different genotypes, and may facilitate better understanding of resistance mechanisms of wheat in response to Fusarium infection, especially that conferred by the Fhb1 locus.
In addition, proteomic analysis of wheat in response to prolonged cold stress showed reinforcement in expressions of enzymes involving in ascorbate recycling (dehydroascorbate reductase, ascorbate peroxidase) and involving in tetrapyrrole re-synthesis (glutamate semialdehyde aminomutase) [ 3].
A large proportion of wheat homeologs exhibited expression partitioning under normal and abiotic stresses, which possibly contributes to the wide adaptability and distribution of hexaploid wheat in response to various environmental constraints.
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The objective of this study was to examine the levels of certain mineral elements in pretreated wheat straw in response to a systematic pretreatment campaign, and to evaluate how the behavior of these elements can be modeled.
The objective of the present study was to examine the levels of mineral elements in pretreated wheat straw in response to systematic variations in the hydrothermal pretreatment parameters (pH, temperature, and treatment time), and to assess whether it is possible to model mineral levels in the pretreated fiber fraction.
However, a plot of the enzymatic monosaccharide yields obtained on solid wheat straw in response to extent of lignin removal showed that the enzymatic releases of both glucose and xylose increased linearly with lignin removal only when the lignin removed was above 60% by weight of the original level in the wheat straw biomass.
A significant difference in resistance to changing temperatures was observed between wheat cultivars in response to Blumeria graminis f. sp tritici, the causal agent of wheat powdery mildew, indicating that the phenomenon may not be restricted to yellow rust resistance [ 39].
Chakraborty and Pradhan (2012) experimented enzymatic performance of five different wheat varieties in response to 3, 6 and 9 days of drought stress applied by withholding watering in pots.
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