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10篇 您的检索式:作者名="Ramzan L"
    题名 作者 年代 出处 被引量
1New extension of the Mitchell Theory for oxidative phosphorylation in mitochondria of living organisms显示文摘Kadenbach B Ramzan R Wen L 0,,03:1
2Diagnosis andmonitoring whipple diseose by polymerase chain reaction显示文摘RAMZAN N IDFTUS E BURGART L J 1997Ann Intern Med1997,126,7:1
3Assessment of in vitro and in vivo recovery of gallamine using microdialysis显示文摘Sasongko L Williams KM Ramzan L 2000J Pharmacol Toxicol Methods2000,44,3:1
4Assessment of in vitro and in vivo recovery of gallamine using microdialysis 显示文摘Sasongko L Williams KM Ramzan I 2000J Pharmacol Toxicol Methods2000,44,3:1
5Assessment of in vitro and in vivo recovery of gallamine using microdialysis 显示文摘L Sasongko K M Williams I Ramzan 2000J Pharmacol Toxicol Methods2000,44,:1
6Assessment of in vitro and in vivo recovery of gallamine using microdialysis 显示文摘Sasongko L Williams K M Ramzan I 2000J Pharmacol Toxicol Methods2000,44,3:1
7Gas chromatographic-mass spectrometric assay for rocuronium with potential for quantifying its metabolite,17-desacetylrocuronium,in human plasma显示文摘GAO L RAMZAN I BAKER B 2001J Chromatogr B Biomed Sci Appl2001,757,2:1
8Rocuronium plasma concentrations during three phases of liver transplantation:relationship with early postoperative graft liver function显示文摘GAO L RAMZAN I BAKER B 2002Br J Anesth2002,88,6:1
9Roeuronium infusion requirements and plasma concentrations at constant levels of neuromuscular paralysis during three phases of liver transplantation显示文摘GAO L RAMZAN I BAKER B 2003J Clin Anesth2003,15,4:1
10Drought-responsive genes expressed predominantly in root tissues are enriched with homotypic cis-regulatory clusters in promoters of major cereal crops显示文摘The root appears to be the most relevant organ for breeding drought stress tolerance.However, our knowledge about temporal and spatial regulation of drought-associated genes in the root remains fragmented, especially in crop plants. We performed a meta-analysis of expression divergence of essential drought-inducible genes and analyzed their association with cis-elements in model crops and major cereal crops. Our analysis of42 selected drought-inducible genes revealed that these are expressed primarily in roots,followed by shoot, leaf, and inflorescence tissues, especially in wheat. Quantitative real-time RT-PCR analysis confirmed higher expression of TaDREB2 and TaAQP7 in roots,correlated with extensive rooting and drought-stress tolerance in wheat. A promoter scan up to 2 kb upstream of the translation start site using phylogenetic footprinting revealed708 transcription factor binding sites, including drought response elements(DREs), auxin response elements(Aux REs), MYCREs/MYBREs, ABAREs, and ERD1 in 19 selected genes.Interestingly, these elements were organized into clusters of overlapping transcription factor binding sites known as homotypic clusters(HCTs), which modulate drought physiology in plants. Taken together, these results revealed the expression preeminence of major drought-inducible genes in the root, suggesting its crucial role in drought adaptation. The occurrence of HCTs in drought-inducible genes highlights the putative evolutionary modifications of crop plants in developing drought adaptation. We propose that these DNA motifs can be used as molecular markers for breeding drought-resilient cultivars, particularly in the cereal crops.Muhammad Ramzan Khan Imran Khan Zahra Ibrar Jens Léon Ali Ahmed Naz 2017The Crop Journal2017,5,3:0
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