Anda belum login :: 23 Nov 2024 04:24 WIB
Home
|
Logon
Hidden
»
Administration
»
Collection Detail
Detail
A genome-wide transgenic RNAi library for conditional gene inactivation in Drosophila
Oleh:
Dietzl, Georg
;
Chen, Doris
;
Schnorrer, Frank
;
Su, Kuan-Chung
;
Barinova, Yulia
;
Fellner, Michaela
;
Gasser, Beate
;
Kinsey, Kaolin
;
Oppel, Silvia
;
Scheiblauer, Susanne
;
Couto, Africa
;
Marra, Vincent
;
Keleman, Krystyna
;
Dickson, Barry J
Jenis:
Article from Journal - ilmiah internasional
Dalam koleksi:
NATURE (keterangan: ada di Proquest) vol. 448 no. 7150 (Jul. 2007)
,
page 151.
Ketersediaan
Perpustakaan FK
Nomor Panggil:
N01.K.2007.07
Non-tandon:
1 (dapat dipinjam: 0)
Tandon:
tidak ada
Lihat Detail Induk
Isi artikel
Forward genetic screens in model organisms have provided important insights into numerous aspects of development, physiology and pathology. With the availability of complete genome sequences and the introduction of RNA-mediated gene interference (RNAi), systematic reverse genetic screens are now also possible. Until now, such genome-wide RNAi screens have mostly been restricted to cultured cells and ubiquitous gene inactivation in Caenorhabditis elegans. This powerful approach has not yet been applied in a tissue-specific manner. Here we report the generation and validation of a genome-wide library of Drosophila melanogaster RNAi transgenes, enabling the conditional inactivation of gene function in specific tissues of the intact organism. Our RNAi transgenes consist of short gene fragments cloned as inverted repeats and expressed using the binary GAL4/UAS system. We generated 22,270 transgenic lines, covering 88% of the predicted protein-coding genes in the Drosophila genome. Molecular and phenotypic assays indicate that the majority of these transgenes are functional. Our transgenic RNAi library thus opens up the prospect of systematically analysing gene functions in any tissue and at any stage of the Drosophila lifespan.
Opini Anda
Klik untuk menuliskan opini Anda tentang koleksi ini!
Kembali
Process time: 0.015625 second(s)