2011
DOI: 10.1007/s11105-011-0343-0
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Proteomic Analysis of Osmotic Stress-Responsive Proteins in Sugarcane Leaves

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Cited by 39 publications
(28 citation statements)
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References 63 publications
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“…Similar results have also been reported in cotton (Deeba et al, 2012) and poplar (Xiao et al, 2009). A similar down-regulation of the ATP synthase chain was reported in sugarcane leaves under osmotic stress (Zhou et al, 2012). These data show that photosynthesis was inhibited under drought stress in an excellent larch family, and that osmoregulation was affected at the cytoplasmic level.…”
Section: Discussionsupporting
confidence: 89%
“…Similar results have also been reported in cotton (Deeba et al, 2012) and poplar (Xiao et al, 2009). A similar down-regulation of the ATP synthase chain was reported in sugarcane leaves under osmotic stress (Zhou et al, 2012). These data show that photosynthesis was inhibited under drought stress in an excellent larch family, and that osmoregulation was affected at the cytoplasmic level.…”
Section: Discussionsupporting
confidence: 89%
“…The higher amount of ROS scavenging enzymes in plants increases the resistance to cope up with that particular stress condition. The relative abundance of hydrophobic amino acids such as leucine and alanine in drought tolerant plants are very significant to maintain the structural stabilization of protein [9]. Therefore, understanding the underlying molecular signaling pathways and interaction among signaling molecules in response to drought stress are very critical for development of drought tolerant plants.…”
Section: Q3mentioning
confidence: 99%
“…To evaluate the functional categories and hierarchies of identified proteins, Protparam tool was used [9]. The theoretical peptide mass and pI of the polypeptides were evaluated at EXPASy (http://www.expasy.org/tools/pi tool.html) for final confirmation according to their positions in the 2-DE gel map [23,24].…”
Section: Bioinformatics Analysismentioning
confidence: 99%
“…ATP synthase correlates highly with plant energy metabolism. This enzyme is organized into two domains (F0 and F1), which work collectively as a rotary machine [55]. The globular F1 domain is the primary region and is composed of α, β, γ, δ and ε subunits [56,57].…”
Section: Energy and Carbohydrate Metabolism Protein Speciesmentioning
confidence: 99%