GeneticEngineeringofNovelFlowerColorsinFloriculturalPlants:Recen..
Since the first successful genetic engineering of flower color in petunia, several new techniques have been developed and applied to modify flower color not only in model plants but also in floricultural plants. A typical example is the commercial violet-flowered carnation “Moondust series” developed by Suntry Ltd. and Florigene Ltd. More recently, blue-flowered roses have been successfully produced and are......阅读全文
Genetic-Engineering-of-Novel-Flower-Colors-in-Floricultural-Plants:-Recen..
Since the first successful genetic engineering of flower color in petunia, several new techniques have been developed and applied to modify flower
Microarrays-to-Characterize-the-MolecularGenetic-Basis-of-Disease
article by Dr. RL McInnes, Agilent Technologies, AustraliaGenomic instability underlies cancer and Copy Number Aberrations (CNA s) are known to underp
Twohybrid-analysis-of-genetic-regulatory-networks
1. Introduction and BackgroundThere is a great need for general methods to characterize the proteins that contemporary biology makes available. The li
A-novel-method-of-growing-fungi-for-DNA-extraction
Preparation of fungi for DNA extraction typically involves growing cultures in liquid culture in Erlenmeyer flasks, Roux bottles or even microfuge tub
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A-novel-in-vitro-3dimensional-angiogenesis-model
1. Human microvascular endothelial cells (HMVECs) with primary cell kits were cultured on collagen type I-coated dishes to 80% confluency, then o
Engineering-BioBrick-vectors-from-BioBrick-parts/Colony-PCR
MaterialsPCR SuperMix High FidelityVF2 primer (5''-TGCCACCTGACGTCTAAGAA-3'')VR primer (5''-ATTACCGCCTTTGAGTGAGC-3'')De
Twohybrid-analysis-of-genetic-regulatory-networks2
2.2 Interaction mating - large scaleWith a few modifications, the procedure described above can be used to test for interactions between a single prey
Genetic-Transformation-of-Cotton-with-a-HarpinEncoding-Gene-hpaXoo-Conf...
Genetic Transformation of Cotton with a Harpin-Encoding Gene hpaXoo Confers an Enhanced Defense Response Against Verticillium dahliae Kleb The s
Comprehensive-identification-of-novel-proteins-and-Nglycosylation-sites五
RJ provides efficient energetic fuels for the fast development of larvae and the egg-laying queen through the metabolism of sugars, lipids, and p
Comprehensive-identification-of-novel-proteins-and-Nglycosylation-sites三
Note: All of the identified proteins are from Apis mellifera. Accession is the unique number given to mark the entry of a protein in the database
Comprehensive-identification-of-novel-proteins-and-Nglycosylation-sites八
References1. Fujita T, Kozuka-Hata H, Ao-Kondo H, Kunieda T, Oyama M, Kubo T: Proteomic analysis of the royal jelly and characterization of the fu
Comprehensive-identification-of-novel-proteins-and-Nglycosylation-sites二
ResultsIdentified novel royal jelly proteins To expand the number of known proteins in the RJ proteome, RJ proteins were extracted and digested wit
Comprehensive-identification-of-novel-proteins-and-Nglycosylation-sites六
N-glycosylation modification of proteins has reported to improve the health of living organisms through antibacterial activity [68], antioxidant a
Comprehensive-identification-of-novel-proteins-and-Nglycosylation-sites四
Figure 2 Distribution of N-glycopeptides analyzed by different enriched methods and instruments of royal jelly proteins. A is the distribution of N-
Comprehensive-identification-of-novel-proteins-and-Nglycosylation-sites七
Data analysisTandem mass spectra were retrieved using Xcalibur (version 2.2, Thermo Fisher Scientific) and AnalystTF (version 1.6, AB SCIEX) softw
Comprehensive-identification-of-novel-proteins-and-Nglycosylation-sites一
Comprehensive identification of novel proteins and N-glycosylation sites in royal jellyLan Zhang1,2†, Bin Han1†, Rongli Li1, Xiaoshan Lu1,3, Aiying Ni
Comprehensive-identification-of-novel-proteins-and-Nglycosylation-sites九
41. Schmidt O, Theopold U, Strand M: Innate immunity and its evasion and suppression by hymenopteran endoparasitoids. BioEssays 2001, 23(4):344–35
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