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1 nesis screen (phenotype-based mutagenesis or forward genetics).
2 germline mutagenesis and positional cloning (forward genetics).
3 ng epidermal barrier formation identified by forward genetics.
4 sis for functional genome annotation through forward genetics.
5 and behavior will likely continue to rely on forward genetics.
6 hat have resulted from these applications of forward genetics.
7 using mouse reverse genetics and Drosophila forward genetics.
8 gene knockdown, and the advent of RNAi-based forward genetics.
9 lear non-coding RNAs have been refractory to forward genetics.
10 ain were developed by genome engineering and forward genetics.
11 T-DNA insertion collection with traditional forward genetics.
12 s become the rate limiting step in mammalian forward genetics.
13 tional consequences of mutations obtained by forward genetics.
15 reen for complex I defects, we isolated, via forward genetics, amc1-7 nuclear mutants (for assembly o
20 ide a model system in which a combination of forward genetics and live-cell imaging can allow researc
25 nas aeruginosa but instead conduct classical forward genetics and select for mutations in a single ge
26 generation of Indel markers will enhance the forward genetics and the overall usage of the Tnt1 mutan
27 de, including the identification of genes by forward genetics and the study of natural ionomic variat
31 ere we develop an alternative to the classic forward genetics approach for dissecting complex disease
33 nd milder in C57BL/6 (B6) mice has allowed a forward genetics approach for the identification of gene
41 RNA interference (RNAi) presents a powerful forward genetics approach to dissect virus-host cell int
44 This study illustrates the power of this forward genetics approach to identify atypical virulence
49 insertional mutagenesis is a high-throughput forward genetics approach to randomly disrupt (trap) hos
63 ion networks can be disentangled by applying forward genetics approaches simultaneously to the host a
66 t endomembranes, namely optical tweezers and forward genetics approaches, which are based either on t
67 S, a TM mutation recently identified through forward genetics as a cell culture-adaptive mutation.
68 sis WAVE-DAMPENED 2 (WVD2) was identified by forward genetics as an activation-tagged allele that cau
69 al advances have recently opened the door to forward genetics as well as extremely efficient and prec
71 es the power with which RNA interference and forward genetics can be used to expose the dependencies
79 e results clearly demonstrate the utility of forward genetics for the discovery of novel genes and pa
80 newal, and illustrates the power of RNAi and forward genetics for the systematic study of self-renewa
81 However, their utility for phenotype-driven forward genetics has been hampered by the difficulty of
82 out an active circulation and amenability to forward genetics has led to the identification of numero
84 eferred to as Cacng2) has been identified by forward genetics in a spontaneous mouse mutant with atax
88 ith a novel genetic composition generated by forward genetics in combination with topoisomerase inhib
89 the rate-limiting step, inhibiting unbiased forward genetics in even the most tractable model organi
90 indings illustrate the power and efficacy of forward genetics in identifying ASD genes and highlight
91 ighlight the potential for GWA to complement forward genetics in identifying the genetic basis of eco
92 tential to remove a major roadblock to using forward genetics in Leishmania, understanding Leishmania
99 ased discovery of causal genetic lesions via forward genetics in patients who have a rare disease elu
103 commonly relied on the classical methods of forward genetics, integration of different genomics data
105 ved to be responsible for these disorders, a forward genetics method of gene discovery was used to id
106 the conventional cloning approach and makes forward genetics more feasible and powerful in molecular
116 isolated through a confocal microscopy-based forward genetics screen of the Golgi in Arabidopsis thal
117 mpensate for PUFA-deficiency, we performed a forward genetics screen to isolate novel fat-2(wa17) sup
120 nce to biotrophic fungal pathogens, we did a forward-genetics screen using Medicago truncatula Tnt1 r
123 utation cloning will enable broader usage of forward genetics screens and have significant impacts in
125 had been identified previously in extensive forward genetics screens using induced mutants, suggesti
128 are considered primarily through the lens of forward genetics, starting at the organismal level and p
129 nthesis of alpha-(1,3)-glucan, we employed a forward genetics strategy to isolate physically marked m
132 quired for reverse-genetics studies than for forward-genetics studies, but genetic analysis is suffic
133 abilities such as efficient transposon-based forward-genetics technologies for Anopheles mosquitoes n
137 etter understand the genetic factors we used forward genetics to discover genes that have not previou
138 a powerful vertebrate model system for using forward genetics to elucidate mechanisms of early develo
139 actors that limit viral replication, we used forward genetics to enrich for a murine norovirus (MNV)
145 ls of idiopathic autism, serving as a potent forward genetics tool to dissect the complexity of autis
146 ene silencing, is a widely used reverse- and forward-genetics tool in plant functional genomics.
148 B than type I or type III strains, and using forward genetics we found that this difference is a resu
154 advantages of in vivo imaging, the power of forward genetics, well-established high efficiency for t
155 s, together with both classical and chemical forward genetics, were consistent with flux through the
156 approach combines the strength of Drosophila forward genetics with detailed in vivo imaging of ddaC n
157 study in Drosophila, synthesizing classical forward genetics with DNA microarrays, brings us closer
158 Here, we generated reassortant reoviruses by forward genetics with enhanced infective and cytotoxic p