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12篇 您的检索式:作者名="Carranco"
    题名 作者 年代 出处 被引量
1An impedect heat shock olement and different up stream sequences are required for the seed specific expression of a small heat shock protein gene显示文摘Carranco R Almoguera C Jordano J 1999Plant Physiol1999,,121:1
2Phenotypes of al-pha- 1 - antitrypsin in intrinsic asthma and ASA - triad patients显示文摘Prados M Monteseirin FJ Carranco MI 1995Allergol Immunopathol1995,23,1:1
3Phenotypes of alpha - 1 - antitrypsin in intrinsic asthma and ASA - triad patients显示文摘Prados M Monteseirin FJ Carranco MI 1995Allergol Immunopathol1995,23,1:1
4Carmazepin toxicity induced by concurrent ery thromycin therapy显示文摘Carranco E 1985Arch Neurol1985,42,:1
5A plant small heat shock protein gene expressed during zygotic embryogenesis but noninducble by heat stress显示文摘Carranco R Almoguera C Jordano J 1997J Biol Chem1997,272,27:1
6Heat transfer coefficient for the upstream face of a perforated plate positioned normal to an oncoming flow显示文摘Sparrow E M Oritz M Carranco 1982Internat J Heat Mass Transfer1982,25,1:1
7The dark side of green fluorescent protein 显示文摘Zhou X Carranco R Vitha S 2005New Phytologist2005,168,2:1
8The dark side of green fluorescent protein显示文摘Zhou X Carranco R Vitha S Hall T.C 0,,02:1
9Carotenoids and their antioxidant function:a review显示文摘Carranco J M E Calvo C M L Romo F P 2011Archivos latinoamericanos de nutricion2011,61,3:1
10The dark side of green fluorescent protein显示文摘Zhou X Carranco R Vitha S 2005New Phytologist2005,168,2:1
11Carbamazepine toxicity indu-ced by concurrent erythromycin therapy 显示文摘Carranco E Kareus J Co S 1985Arch Neurol1985,42,2:1
12A Passive Repression Mechanism that Hinders Synergic Transcriptional Activation by Heat Shock Factors Involved in Sunflower Seed Longevity显示文摘Dear Editor, Different genetic programs that are active during late stages of zygotic embryogenesis are involved in seed phenotypes as longevity,basal thermotolerance,and desiccation tolerance.In sunflower,Heat Shock Factor A9 (HaHSFA9) controls one of such programs:the HaHSFA9 program.Overexpression of HaHSFA9 in seeds of transgenic tobacco showed the involvement of this transcription factor in basal thermotolerance and longevity;HaHSFA9 activated a genetic program that includes specific small Heat Shock Protein (sHSP) genes,which are expressed mainly (or exclusively) during zygotic embryogenesis in seeds (Prieto-Dapena et al.,2006).We also used an active-repressor dominant-negative (DN) form of HlaHSFA9,and thus we obtained a substantial reduction of both the accumulation of specific sHSPs and of seed longevity (Tejedor-Cano et al.,2010).In contrast,transcriptioninactive DN forms were inefficient.We therefore inferred the participation of additional HSF(s) in controlling the genetic program activated by HaHSFAg,rather than involvement of a single master control HSF (i.e.HaHSFA9 only).These additional HSF(s) would belong to class A,as HaHSFA9 (Tejedor-Cano et al.,2010).Javier Tejedor-Cano Rail Carranco Jose-Maria Personat Pilar Prieto-Dapena Concepcion Almoguera Jose Manuel Espinosa Juan Jordano 2014Molecular Plant2014,7,1:0
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