Exact linearization and control of a mobile robot for the inspection of soil resources in Solanum tuberosum crops. [PDF]
Pulido-Aponte Á, Garzón-Castro CL.
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Molecular Insights into the Role of Sterols in Microtuber Development of Potato Solanum tuberosum L. [PDF]
Herrera-Isidron L+5 more
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Metagenomic analysis of endophytic bacteria in seed potato (Solanum tuberosum). [PDF]
Rajapaksha RWPM+3 more
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Ubiquitin Ligase U-Box51 Positively Regulates Drought Stress in Potato (Solanum tuberosum L.). [PDF]
Wei M+6 more
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Silencing of miR169a improves drought stress by enhancing vascular architecture, ROS scavenging, and photosynthesis of <i>Solanum tuberosum</i> L. [PDF]
Lei Z+7 more
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Transcriptome sequencing and screening of anthocyanin related genes in purple potato tubers (Solanum tuberosum L.). [PDF]
Wu X+8 more
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Rate of double reduction and genetic variability in yield, quality, and senescence related traits in tetraploid potato (<i>Solanum tuberosum L.</i>). [PDF]
Yousaf MF+6 more
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Influence of Nutrient Medium Components on In Vitro Tuberization of Solanum tuberosum L. and Subsequent Minituber Production in Aeroponic and Greenhouse Conditions. [PDF]
Melyan GH+14 more
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Genome-wide characterization of Solanum tuberosum UGT gene family and functional analysis of StUGT178 in salt tolerance. [PDF]
Ma Y+12 more
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The biosynthesis of sterols in Solanum tuberosum
Archives of Biochemistry and Biophysics, 1964The incorporation of mevalonic acid-2-C 14 into the Katahdin variety of Solanum tuberosum was studied for an extended period of growth. The largest incorportion into the major sterols, stigmasterol and β-sitosterol, occurred in 1 week. Incorporation into β-sitosterol started sooner and occurred to a greater degree than in the case of stigmasterol.
David F. Johnson+2 more
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