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1 odified by whole genome duplication (causing allopolyploidy).
2 tant, especially after chromosomal doubling (allopolyploidy).
3 ompletely homologous (homoeologous) genomes (allopolyploidy).
4      Two of these events were inferred to be allopolyploidy.
5 xa for comparing the longer term outcomes of allopolyploidy.
6 d by chromosome doubling, a process known as allopolyploidy.
7 o genomic processes that occur subsequent to allopolyploidy.
8 methods, and explicitly tested scenarios for allopolyploidy.
9 , epigenetic and transcriptomic responses to allopolyploidy.
10 he species sampled are the result of genetic allopolyploidy and result from 28 distinct tetraploidy e
11  Nicotiana section Repandae, which arose via allopolyploidy (approximately 5 million years ago) invol
12                           Autopolyploidy and allopolyploidy are common in many plants and some animal
13                 Molecular data indicate that allopolyploidy arose independently in temperate (AABB) a
14 ana is an excellent system in which to study allopolyploidy because half of the species are allotetra
15 ter and wider corolla tubes, suggesting that allopolyploidy could provide an escape from specialist p
16 v provided conclusive evidence for segmental allopolyploidy in B. decumbens, with strong preferential
17 r history of human-induced hybridization and allopolyploidy in the Swiss Alps.
18         The role of polyploidy, particularly allopolyploidy, in plant diversification is a subject of
19                                              Allopolyploidy involves hybridization and duplication of
20                                              Allopolyploidy is an evolutionary and mechanistically in
21                                              Allopolyploidy is an important process during plant evol
22        This underestimation of the extent of allopolyploidy is due in at least three cases to homogen
23                                              Allopolyploidy is formed by combining two or more diverg
24                                              Allopolyploidy is often associated with increased photos
25                      A putative advantage of allopolyploidy is the possibility of differential select
26              Nascent fibre evolution, before allopolyploidy, is elucidated by comparison of spinnable
27 explained by autopolyploidy or, if there was allopolyploidy, it happened within the Californian redwo
28 se in net diversification rate; nonetheless, allopolyploidy itself is a major mode of speciation.
29 nto genome function gained from the study of allopolyploidy may be applicable to hybrids of any type
30                          We hypothesize that allopolyploidy may have increased the likelihood of bene
31                                              Allopolyploidy often triggers phenotypic novelty and gen
32                Here, we study the effects of allopolyploidy on floral morphology in Nicotiana, using
33 awaiian species may reflect the influence of allopolyploidy or of selection and adaptive divergence.
34 ain genomes from different parental species (allopolyploidy) or include multiple sets of the same gen
35 pproximately 60 million years (Myr) ago, and allopolyploidy reuniting divergent Gossypium genomes app
36 vide evidence for the selective advantage of allopolyploidy through the fixation of intergenomic hete
37                                      Genetic allopolyploidy was documented using the characteristic p
38 ne interspecific hybridization, resulting in allopolyploidy; whereas homoploid hybrid speciation was
39 k for utilizing transcriptome data to detect allopolyploidy, which is important as it may have differ
40 badense genome advances our understanding of allopolyploidy, which will help improve cotton fiber qua

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