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DOCX 17 KB - Office of the Gene Technology Regulator
DOCX 17 KB - Office of the Gene Technology Regulator

... We believe that options 2 and 3 would significantly increase the regulatory burden on us from the gene technology regulatory scheme. Since the results of these technologies could be difficult to detect or prove that they were not the result of natural processes, we believe that identifying internal ...
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... translational machinery. Some of the salient features of crown gall disease were reviewed by Nester et al. (1984), and a review concerning T-DNA transfer was presented by Gelvin (2003(.******* So Agrobacterium tumefacience is one of the transgenic organism witch contains genes foreign to its own gen ...
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... offspring , because … Success Criteria: I can describe the factors that control the inheritance of traits in organisms. Warm Up: 1. List at least 3 different characteristics that you possess. This may include skills or physical features. 2. For each characteristic listed, describe where it came from ...
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Answers Lab 9 Mendelian Genetics

... They did not match perfectly. The class ratio matched closer than our group ratio. The class ratio had a larger sample size. ...
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... Three pairs of genes (at three loci on this pair of homologous chromosomes); same thing as three pairs of alleles ...
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Mendelian Genetics Practice

... 6) In guinea pigs, black coat color is dominant over white, short hair is dominant over long, and rough coat is dominant over smooth. Show the Punnett Square for a cross between a homozygous black, short-haired, rough coat guinea pig and a homozygous white, long-haired, smooth coat guinea pig. What ...
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... In pea plants, yellow seed color is dominant to green seed color. If a heterozygous pea plant is crossed with a plant that is homozygous recessive for seed color, what is the probability that the offspring will have green seeds? A. If all of the offspring of a particular cross have the genotype Yy, ...
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... In pea plants, yellow seed color is dominant to green seed color. If a heterozygous pea plant is crossed with a plant that is homozygous recessive for seed color, what is the probability that the offspring will have green seeds? A. If all of the offspring of a particular cross have the genotype Yy, ...
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... mixture of genotypes from the original parents. This greatly simplifies replicated experiments and assures that the RILs can be stored, disseminated and used by different laboratories to analyze any desired trait in any environment. QTL mapping begins with the collection of phenotypic data from the ...
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... homozygous for a transgene, might be used to develop a transgenic cultivar. However, both selection of a primary transgenic plant with stable, high level expression of the introduced gene and progeny testing, to determine the influence of genetic background, are prerequisites to such a development. ...
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Ectopic expression of the PttKN1 gene in Cardamine hirsuta

... aspen (Hu et al., 2005; Meng et al., 2009a). To investigate the gene function, it was introduced into Begonia maculata (Xu et al., 2011), carnation (Meng et al., 2009a), cockscomb (Meng et al., 2009b), coleus (Xu et al., 2013), Petunia hybrida (Hu et al., 2005) and tobacco (Ding et al., 2008; Xu et ...
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... be associated with the gene tree. Note that the list presented in the orthologue view is extracted from the gene tree data. Follow the steps below to find to use the orthologue feature of Ensembl. 1. Click on the “Orthologue” link under the Plant Compara tool of the gene-based display. This will pre ...
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... because they grow quickly, are easy to raise, and have several visible characteristics that exit in two different forms. For example, the flower color may be either white or purple. The seven characteristics that Mendel studied are shown in the diagram below. In Mendel’s pea plant experiments, Mende ...
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Lecture #6 PPT

... – Thought to be gene-for-gene (because virulent race of pathogen neutralizes this gene) – Gene-for-gene typically indicates a pathosystem in which the host and pathogen have evolved over long time periods- so what is going on in this ...
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... avoidance characteristics, and achieve increased yield in field crops (see Section III). The phytochrome A (phyA) photoreceptor has a unique ability to respond more strongly to far-red than to red light, and phyA overexpression (see Section III) has proved to be particularly effective in antagonizin ...
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Discovery and identification of a novel double

... been developed in rapeseed. However, Pol-CMS is still the relatively stable system for hybrid seed production although it conferred both a slightly temperature-sensitive MS and a more or less negative on the yield. Most of the hybrids, 13 of 22 registered were developed from Pol-CMS system. The bott ...
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Single Gene

... - Blue and green eyes stemmed from mutations that persisted Melanin synthesis confers eye color, and this is controlled by a single gene. However, a second gene controls expression of the first gene, and a mutation in this gene abolishes that control and blue eyes result. ...
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259508_Genetics__2

... - These are alternate forms of the same gene created by mutations in the genetic code. Some genes have multiple alleles, such as blood type (three alleles), but at this point let's assume that there are just two alternate forms, or alleles, for each gene. Example: plant height in peas is either tall ...
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Genetically modified crops

Genetically modified crops (GMCs, GM crops, or biotech crops) are plants used in agriculture, the DNA of which has been modified using genetic engineering techniques. In most cases the aim is to introduce a new trait to the plant which does not occur naturally in the species. Examples in food crops include resistance to certain pests, diseases, or environmental conditions, reduction of spoilage, or resistance to chemical treatments (e.g. resistance to a herbicide), or improving the nutrient profile of the crop. Examples in non-food crops include production of pharmaceutical agents, biofuels, and other industrially useful goods, as well as for bioremediation.Farmers have widely adopted GM technology. Between 1996 and 2013, the total surface area of land cultivated with GM crops increased by a factor of 100, from 17,000 square kilometers (4,200,000 acres) to 1,750,000 km2 (432 million acres). 10% of the world's croplands were planted with GM crops in 2010. In the US, by 2014, 94% of the planted area of soybeans, 96% of cotton and 93% of corn were genetically modified varieties. In recent years GM crops expanded rapidly in developing countries. In 2013 approximately 18 million farmers grew 54% of worldwide GM crops in developing countries.There is general scientific agreement that food on the market derived from GM crops poses no greater risk to human health than conventional food. GM crops also provide a number of ecological benefits. However, opponents have objected to GM crops per se on several grounds, including environmental concerns, whether food produced from GM crops is safe, whether GM crops are needed to address the world's food needs, and economic concerns raised by the fact these organisms are subject to intellectual property law.
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