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To our knowledge, this is the most saturated map in conifers and trees in general.
The linkage map we have constructed is the second most saturated map on cassava reported so far [ 10].
The most saturated map has been recently developed from a set of F1 progeny of a cross between a globe artichoke and a cultivated cardoon genotypes [ 14].
This is by far the most saturated map constructed in a B-genome diploid peanut, and also represents the first intraspecific map of a B-genome species.
For example, Sun et al. [ 2] constructed an ultradense genetic map containing 13,351 SRAP markers in B. napus, which is the most saturated map in Brassica species that has ever been constructed.
The size of the watermelon genome is 425 Mbp [ 14] and the map defined herein represents average physical intervals of 317 Kb per marker, making it the most saturated map of watermelon to date.
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The interspecific and intraspecific genetic maps developed with the CottonSNP63K represent the most saturated maps developed for cotton to date.
The composite map represents the most saturated linkage map yet produced in Eucalyptus.
Compared to previously reported Cucurbita maps [ 13, 38– 40, 62– 65], this map had much higher marker density and fewer gaps, making it the most saturated genetic map in Cucurbita species reported to date.
We used SRAP to construct an ultradense genetic map with 10,960 independent genetic loci in B. rapa that is the most saturated genetic map ever constructed in this species.
For comparison, markers from the most saturated genetic map [44] were re-clustered according to the origin of the markers used in the map and only those that were developed from fiber cells were statistically analyzed.
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