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Titlebook: Genetics and Genomics of Cotton; Andrew H. Paterson Book 2009 Springer-Verlag New York 2009 DNA.biodiversity.bioinformatics.cotton.ecosyst

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Bridging Traditional and Molecular Genetics in Modifying Cottonseed Oild interest in improving the nutritional and functional properties of the cotton seed oil. The nutritional and industrial value of cottonseed oil, like other vegetable oils, is determined by its fatty acid profile. Conventional genetics and breeding approaches to altering fatty acid composition have
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Genetics and Genomics of Cotton978-0-387-70810-2Series ISSN 2363-9601 Series E-ISSN 2363-961X
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Wie der Dauerwaldgedanke entstand,ology, provides the necessary underpinnings for effective utilization of cotton genetic resources, and guides exploration of the genomic basis of morphological diversity in the genus. More than 50 species of . are distributed in arid to semi-arid regions of the tropics and subtropics. Included are f
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https://doi.org/10.1007/978-3-0348-6087-1 Section two describes the origin and development of modern improved germplasm pools, beginning with Sea Island cottons developed in the Caribbean and the coastal Southeast of the United States in the late 18th century. The origins and development of the Egyptian and Amercian Pima germplasm pools ar
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https://doi.org/10.1007/978-3-322-91615-0r inherent ability to withstand drought. Diploid cottons are also known for their ability to resist sucking pests such as hoppers, white flies, thrips and aphids, and leaf curl virus. Before the spread of . in Asia, diploids were grown widely, but gradually replaced due to short, coarse and weak fib
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https://doi.org/10.1007/978-3-322-88910-2imple sequence repeats [SSRs]) are robust and, coupled with their co-dominant expression, make them the current marker of choice for phylogenetic/evolutionary studies, development of genome maps and the identification of DNA markers linked to desirable traits for use in marker-assisted selection (MA
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https://doi.org/10.1007/978-3-642-92675-4f this variation was attributable to the repetitive DNA fractions, and subsequent cloning and sequencing studies have revealed specific DNA elements and families that contribute to this variation. The relationship between physical quantity of DNA and genetic distance (recombination fraction) in a re
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