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Titlebook: Brassicas and Legumes From Genome Structure to Breeding; Toshiyuki Nagata,Satoshi Tabata Book 2003 Springer-Verlag Berlin Heidelberg 2003

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Ichnology: Mammalian/Mammal-Like Footprints,ng its sequencing relatively simple. Thus the whole genome sequence of this plant has been determined. In addition, the short generation time of this plant helped ease the analysis of its genetic traits. . is considered to be a model plant among angiosperms.
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Bhawanisingh G. Desai,Suruchi Chauhan repetitive sequences was assumed to be low. Its short life cycle (average 60 days) and prodigious seed production are the characteristics which make this small plant an ideal model organism in which to analyze metabolism, development, stress responses, and disease resistance in all the flowering plants
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https://doi.org/10.1007/978-3-658-44518-8tion of selfed seeds in the F. seeds due to instability of self-incompatibility, many seed companies still adopt self-incompatibility because of their higher yield of the F. hybrid seeds than the use of the male sterility.
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https://doi.org/10.1007/978-3-658-44518-8ity, small genome size (432 Mb, Pedrosa et al. 2002; 442 Mb, Ito et al. 2000; 494Mb, Kawasaki and Murakami 2000), short life cycle, and high transformability with . (Handberg and Stougaard 1992; Stiller et al. 1997).
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https://doi.org/10.1007/978-981-33-4381-8tic “clubs” for which the disease is named (Fig. 1). These clubs inhibit nutrient and water transport, stunt the growth of the plant, and increase the susceptibility to wilting. Later on, the clubbed roots decay, weakening the support of the plant.
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https://doi.org/10.1007/978-3-658-44518-8ed in this organism. Nevertheless, other plant species have their own characteristics and advantages for the study of individual biological phenomena. Further, comparison of knowledge from . and that from other plant species is a promising approach for obtaining universal knowledge on the genetic systems in all plants.
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