Search Results - "Cigan, A Mark"
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Genome editing in maize directed by CRISPR–Cas9 ribonucleoprotein complexes
Published in Nature communications (16-11-2016)“…Targeted DNA double-strand breaks have been shown to significantly increase the frequency and precision of genome editing. In the past two decades, several…”
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2
Superior field performance of waxy corn engineered using CRISPR–Cas9
Published in Nature biotechnology (01-05-2020)“…We created waxy corn hybrids by CRISPR–Cas9 editing of a waxy allele in 12 elite inbred maize lines, a process that was more than a year faster than…”
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3
The heterochronic maize mutant Corngrass1 results from overexpression of a tandem microRNA
Published in Nature genetics (01-04-2007)“…Retention of juvenile traits in the adult reproductive phase characterizes a process known as neoteny, and speculation exists over whether it has contributed…”
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4
Molecular identification of the wheat male fertility gene Ms1 and its prospects for hybrid breeding
Published in Nature communications (11-10-2017)“…The current rate of yield gain in crops is insufficient to meet the predicted demands. Capturing the yield boost from heterosis is one of the few technologies…”
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5
Male Fertility Genes in Bread Wheat (Triticum aestivum L.) and Their Utilization for Hybrid Seed Production
Published in International journal of molecular sciences (01-08-2021)“…Hybrid varieties can provide the boost needed to increase stagnant wheat yields through heterosis. The lack of an efficient hybridization system, which can…”
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MS26/CYP704B is required for anther and pollen wall development in bread wheat (Triticum aestivum L.) and combining mutations in all three homeologs causes male sterility
Published in PloS one (16-05-2017)“…Development of anthers and pollen represents an important aspect of the life cycle in flowering plants. Genes contributing to anther and pollen development…”
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Complex Trait Loci in Maize Enabled by CRISPR-Cas9 Mediated Gene Insertion
Published in Frontiers in plant science (05-05-2020)“…Modern maize hybrids often contain biotech and native traits. To-date all biotech traits have been randomly inserted in the genome. Consequently, developing…”
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Technical considerations towards commercialization of porcine respiratory and reproductive syndrome (PRRS) virus resistant pigs
Published in CABI agriculture and bioscience (11-06-2022)“…Abstract The selection and introduction of disease resistance genes in livestock not only provide health benefits to animals but opportunities for breeders and…”
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A dominant mutation in mediator of paramutation2, one of three second-largest subunits of a plant-specific RNA polymerase, disrupts multiple siRNA silencing processes
Published in PLoS genetics (01-11-2009)“…Paramutation involves homologous sequence communication that leads to meiotically heritable transcriptional silencing. We demonstrate that mop2 (mediator of…”
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10
Uniform Expression and Relatively Small Position Effects Characterize Sister Transformants in Maize and Soybean
Published in Frontiers in plant science (24-10-2019)“…Development of transgenic cell lines or organisms for industrial, agricultural, or medicinal applications involves inserting DNA into the target genome in a…”
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Transcriptional gene silencing as a tool for uncovering gene function in maize
Published in The Plant journal : for cell and molecular biology (01-09-2005)“…Transcriptional gene silencing has broad applications for studying gene function in planta. In maize, a large number of genes have been identified as…”
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Targeted Mutagenesis, Precise Gene Editing, and Site-Specific Gene Insertion in Maize Using Cas9 and Guide RNA
Published in Plant physiology (Bethesda) (01-10-2015)“…Targeted mutagenesis, editing of endogenous maize (Zea mays) genes, and site-specific insertion of a trait gene using clustered regularly interspaced short…”
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13
Cas9-Guide RNA Directed Genome Editing in Soybean
Published in Plant physiology (Bethesda) (01-10-2015)“…Recently discovered bacteria and archaea adaptive immune system consisting of clustered regularly interspaced short palindromic repeats (CRISPR) and…”
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Concurrent modifications in the three homeologs of Ms45 gene with CRISPR-Cas9 lead to rapid generation of male sterile bread wheat (Triticum aestivum L.)
Published in Plant molecular biology (01-07-2018)“…Key message Hexaploid bread wheat is not readily amenable to traditional mutagenesis approaches. In this study, we show efficient utilization of CRISPR-Cas…”
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15
Transcriptional gene silencing in bread wheat (Triticum aestivum L.) and its application to regulate male fertility for hybrid seed production
Published in Plant biotechnology journal (01-11-2022)“…Summary Transcriptional gene silencing (TGS) can offer a straightforward tool for functional analysis of plant genes, particularly in polyploid species such as…”
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16
Development of a novel recessive genetic male sterility system for hybrid seed production in maize and other cross‐pollinating crops
Published in Plant biotechnology journal (01-03-2016)“…We have developed a novel hybridization platform that utilizes nuclear male sterility to produce hybrids in maize and other cross‐pollinating crops. A key…”
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Wheat ms5 male‐sterility is induced by recessive homoeologous A and D genome non‐specific lipid transfer proteins
Published in The Plant journal : for cell and molecular biology (01-08-2019)“…Summary Nuclear male‐sterile mutants with non‐conditional, recessive and strictly monogenic inheritance are useful for both hybrid and conventional breeding…”
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Targeted Mutagenesis, Precise Gene Editing, and Site-Specific Gene Insertion in Maize Using Cas9 and Guide RNA
Published in Plant physiology (Bethesda) (01-10-2015)Get full text
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19
Targeted mutagenesis of a conserved anther‐expressed P450 gene confers male sterility in monocots
Published in Plant biotechnology journal (01-03-2017)“…Summary Targeted mutagenesis using programmable DNA endonucleases has broad applications for studying gene function in planta and developing approaches to…”
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20
Cas9-Guide RNA Directed Genome Editing in Soybean
Published in Plant physiology (Bethesda) (01-10-2015)Get full text
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