| 000 | 00000nam u2200205 a 4500 | |
| 001 | 000045895225 | |
| 005 | 20170220162740 | |
| 008 | 170215s2017 nyua b 001 0 eng d | |
| 020 | ▼a 9781493964673 | |
| 040 | ▼a 211009 ▼c 211009 ▼d 211009 | |
| 082 | 0 4 | ▼a 571.742 ▼2 23 |
| 084 | ▼a 571.742 ▼2 DDCK | |
| 090 | ▼a 571.742 ▼b P713-3 | |
| 245 | 0 0 | ▼a Plant hormones : ▼b methods and protocols / ▼c edited by Jürgen Kleine-Vehn, Michael Sauer. |
| 250 | ▼a 3rd ed. | |
| 260 | ▼a New York : ▼b Humana Press : ▼b Springer, ▼c 2017. | |
| 300 | ▼a xi, 288 p. : ▼b ill. (some col.) ; ▼c 27 cm. | |
| 490 | 1 | ▼a Methods in molecular biology, ▼x 1064-3745 ; ▼v 1497 |
| 490 | 1 | ▼a Springer protocols |
| 500 | ▼a First ed. of: Plant hormone protocols / edited by Gregory A. Tucker and Jeremy A. Roberts. c2000. | |
| 504 | ▼a Includes bibliographical references and index. | |
| 650 | 1 0 | ▼a Plant regulators. |
| 650 | 0 | ▼a Plant hormones. |
| 700 | 1 | ▼a Kleine-Vehn, Jürgen. |
| 700 | 1 | ▼a Sauer, Michael. |
| 740 | 0 2 | ▼a Plant hormone protocols. |
| 830 | 0 | ▼a Methods in molecular biology, ▼x 1064-3745 ; ▼v 1497. |
| 830 | 0 | ▼a Springer protocols. |
| 945 | ▼a KLPA |
소장정보
| No. | 소장처 | 청구기호 | 등록번호 | 도서상태 | 반납예정일 | 예약 | 서비스 |
|---|---|---|---|---|---|---|---|
| No. 1 | 소장처 과학도서관/Sci-Info(2층서고)/ | 청구기호 571.742 P713-3 | 등록번호 121239158 (2회 대출) | 도서상태 대출가능 | 반납예정일 | 예약 | 서비스 |
컨텐츠정보
책소개
Real Time Analysis of the Apical Hook Development.- Grafting with Arabidopsis thaliana.- Tips and Tricks for Exogenous Application of Synthetic Post-Translationally Modified Peptides to Plants.- Assaying Germination and Seedling Responses of Arabidopsis to Karrikins.- Low-cost Microprocessor-Controlled Rotating Stage for Medium-Throughput Time-Lapse Plant Phenotyping.- Genome-Wide Association Mapping of Root Traits in the Context of Plant Hormone Research.- High throughput scoring of Seed Germination.- Histochemical Staining of β-Glucuronidase and its Spatial Quantification.- Imaging TCSn:: GFP, A Synthetic Cytokinin Reporter, in Arabidopsis thaliana.- Highlighting Gibberellins Accumulation Sites in Arabidopsis Thaliana Root Using Fluorescently Labeled Gibberellins.- In-silico Methods for Cell Annotation, Quantification of Gene Expression and Cell Geometry at Single Cell Resolution using 3DCellAtlas.- Analysing Cell Wall Elasticity after Hormone Treatment: An example using Tobacco BY-2 Cells and Auzin.- FRET-FLIM for Visualizing and Quantifying Protein Interactions in Live Plant Cells.- In vivo Identification of Plant Protein Complexes using IP-MS/MS.- Assaying auxin Receptor Activity using SPR assays with F-Box Proteins and Aux-IAA degrons.- Studying Transcription Factor Binding To Specific Genomic Loci by Chromatin Immunoprecipitation (ChIP).- Hormone Receptor Glycosylation.- Highly Sensitive Salicylic Acid Quantification in Milligram Amounts of Plant Tissue.- High-Resolution Cell-Type Specific Analysis of Cytokinins in Sorted Root Cell Populations of Arabidopsis thaliana.- Hormone Profiling in Plant Tissues.- Use of Xenopus laevis Oocytes to Study Auxin Transport.- Characterizing Auxin Response Circuits in Saccharomyces cerevisiae by Flow Cytometry.
정보제공 :
목차
Real Time Analysis of the Apical Hook Development Grafting with Arabidopsis thaliana Tips and Tricks for Exogenous Application of Synthetic Post-Translationally Modified Peptides to Plants Assaying Germination and Seedling Responses of Arabidopsis to Karrikins Low-cost Microprocessor-Controlled Rotating Stage for Medium-Throughput Time-Lapse Plant Phenotyping Genome-Wide Association Mapping of Root Traits in the Context of Plant Hormone Research High throughput scoring of Seed Germination Histochemical Staining of β-Glucuronidase and its Spatial Quantification Imaging TCSn::GFP, A Synthetic Cytokinin Reporter, in Arabidopsis thaliana Highlighting Gibberellins Accumulation Sites in Arabidopsis Thaliana Root Using Fluorescently Labeled Gibberellins In-silico Methods for Cell Annotation, Quantification of Gene Expression and Cell Geometry at Single Cell Resolution using 3DCellAtlas Analysing Cell Wall Elasticity after Hormone Treatment: An example using Tobacco BY-2 Cells and Auzin FRET-FLIM for Visualizing and Quantifying Protein Interactions in Live Plant Cells In vivo Identification of Plant Protein Complexes using IP-MS/MS Assaying auxin Receptor Activity using SPR assays with F-Box Proteins and Aux-IAA degrons Studying Transcription Factor Binding To Specific Genomic Loci by Chromatin Immunoprecipitation (ChIP) Hormone Receptor Glycosylation Highly Sensitive Salicylic Acid Quantification in Milligram Amounts of Plant Tissue High-Resolution Cell-Type Specific Analysis of Cytokinins in Sorted Root Cell Populations of Arabidopsis thaliana Hormone Profiling in Plant Tissues Use of Xenopus laevis Oocytes to Study Auxin Transport Characterizing Auxin Response Circuits in Saccharomyces cerevisiae by Flow Cytometry. .
