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Clade I contained only type strain sequences, and the generated sequences were grouped into clade II.
We inferred four well-supported clades, where Clade I contained only samples from Antarctica (Fig. 3).
Group I contained only PoGO J composed of animal, plant and fungus genes.
Cluster I contained only Candidatus Scalindua species, while the other three anammox genera together formed cluster II.
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This results in N self-adjoint Fredholm integral equations, the non-trivial solutions of which predict eigensolutions of P. As a consequence, a periodic structure P with period N will have exactly N eigenvalues lying between two consecutive eigenvalues of the substructure S i), if the interface I(i) contains only one degree of freedom.
Let us assume we have a training set ({hat{G}}^{l}) defined by a set of precedent pairs ({{widehat{x}}_i,y_{i}}, i = 1,n;{widehat{x}}_i in {mathbb {R}}^mathbf{m},y_{i}in {-1,+1},) where the image feature vector i contains only boosted features that have been generated using the procedure described above.
For founders, s i contains only i, while for non-founders, s i contains i, m i and f i.
For markers transmitted only through females, the selection matrix (Equation B1) reduces to S ˜ = S 1 ⊗ … S l, with S i containing only the female selection parameter σf, i, and the recombination matrix R ˜ = R 1 ⊗ … R l contains the crossover rates for females alone.
Then, it finds an independent set I containing only the feasible channel assignments (ij,b) from the map such that no OBU pairs interfere with each other transmissions.
Clade I contains only the Rhabdolaimidae, the genus Syringolaimus and Campydora demonstrans.
Clade I contains only the newly discovered vesicular nucleotide transporter, VNut [ 8].
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