Laser Assisted Microdissection, an Efficient Technique to Understand Tissue Specific Gene Expression Patterns and Functional Genomics in Plants

被引:0
作者
Vibhav Gautam
Ananda K. Sarkar
机构
[1] National Institute of Plant Genome Research (NIPGR),
来源
Molecular Biotechnology | 2015年 / 57卷
关键词
Laser assisted microdissection (LAM); RNA isolation; Gene expression; Genomics; Transcriptomics;
D O I
暂无
中图分类号
学科分类号
摘要
Laser assisted microdissection (LAM) is an advanced technology used to perform tissue or cell-specific expression profiling of genes and proteins, owing to its ability to isolate the desired tissue or cell type from a heterogeneous population. Due to the specificity and high efficiency acquired during its pioneering use in medical science, the LAM technique has quickly been adopted for use in many biological researches. Today, it has become a potent tool to address a wide range of questions in diverse field of plant biology. Beginning with comparative transcriptome analysis of different tissues such as reproductive parts, meristems, lateral organs, roots etc., LAM has also been extensively used in plant-pathogen interaction studies, proteomics, and metabolomics. In combination with next generation sequencing and proteomics analysis, LAM has opened up promising opportunities in the area of large scale functional studies in plants. Ever since the advent of this technique, significant improvements have been achieved in term of its instrumentation and method, which has made LAM a more efficient tool applicable in wider research areas. Here, we discuss the advancement of LAM technique with special emphasis on its methodology and highlight its scope in modern research areas of plant biology. Although we put emphasis on use of LAM in transcriptome studies, which is mostly used, we also discuss its recent application and scope in proteome and metabolome studies.
引用
收藏
页码:299 / 308
页数:9
相关论文
共 301 条
  • [1] Martin C(2001)Shaping in plant cells Current Opinion in Plant Biology 4 540-549
  • [2] Bhatt K(2010)Proteomics: A pragmatic perspective Nature Biotechnology 28 695-709
  • [3] Baumann K(2010)Fluorescence-activated cell sorting in plant developmental biology Methods in Molecular Biology 655 313-319
  • [4] Mallick P(2012)A powerful method for transcriptional profiling of specific cell types in eukaryotes: laser-assisted microdissection and RNA sequencing PLoS One 7 e29685-406
  • [5] Kuster B(2005)Be more specific! Laser-assisted microdissection of plant cells Trends in Plant Science 10 397-125
  • [6] Iyer-Pascuzzi AS(2010)Laser capture microdissection in the tissue biorepository Journal of Biomolecular Techniques: JBT 21 120-488
  • [7] Benfey PN(2008)Laser capture microdissection in the genomic and proteomic era: Targeting the genetic basis of cancer International Journal of Clinical and Experimental Pathology 1 475-2438
  • [8] Schmid MW(2009)Gene expression analyses of neurons, astrocytes, and oligodendrocytes isolated by laser capture microdissection from human brain: detrimental effects of laboratory humidity Journal of Neuroscience Research 87 2430-940
  • [9] Schmidt A(2007)Transcriptional profiling of the Plant Physiology 143 924-1462
  • [10] Klostermeier UC(2009) embryo PLoS Genetics 5 e1000476-408