Synthesis and crystal structure of 5,17-di-amino-11-<i>tert</i>-butyl-25,26,27,28-tetra-prop-oxy-23-[(tri-phenyl-meth-yl)amino]-calix[4]arene di-chloro-methane monosolvate. [PDF]
Alekseev I +4 more
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Cellular Neurophysiology C37‐C58, PC19‐PC32 [PDF]
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A PtS-like 4<sup>2</sup>.8<sup>4</sup> topology arising from the self-assembly of square-planar nodes <i>via</i> organotin units: synthesis and crystal structure of the metal-organic framework {[(PhCH<sub>2</sub>)<sub>3</sub>Sn]<sub>2</sub>Ni(CN)<sub>4</sub>} <sub><i>n</i></sub>. [PDF]
Mothi Paul E, Stoeckli-Evans H.
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Chromosome architecture affects virulence and competitiveness in <i>Agrobacterium tumefaciens</i> C58. [PDF]
Aliu E +8 more
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Linear Chromosome-generating System of Agrobacterium tumefaciens C58 [PDF]
Wai Mun Huang +8 more
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Crystal structures of an azo-benzene-bridged aza-18-crown-6 cryptand and a sodium complex thereof. [PDF]
Schwab C, Kreidt E.
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Anaerobic respiration diversification in Agrobacterium fabrum C58
Anaerobic respiration may be an essential trait in lifestyle, environment colonization and survival. Until now, the only confirmed anaerobic respiration in Agrobacterium spp. is denitrification. Interestingly, this pathway is unequally widespread among Agrobacteria.
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Bacillus strains from Tunisian Sabkhas as promising biocontrol agents for several plant diseases in the Mediterranean. [PDF]
Ben Gharsa H +4 more
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Comparative transcriptomics reveals context- and strain-specific regulatory programmes of <i>Agrobacterium</i> during plant colonization. [PDF]
Wu Y, Chang HY, Wu CH, Lai EM, Kuo CH.
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