Publications by authors named "Chenshan Xu"

Article Synopsis
  • Microtubules (MT) are constructed from α-tubulin and β-tubulin, and their dynamic behavior, influenced by microtubule-associated proteins (MAPs), is vital for cellular functions.
  • Researchers created a dual-transgene vector to co-express rice α-tubulin and various MAPs using the pCambia1301 plasmid and Gibson assembly techniques.
  • The developed vector successfully co-expressed different MAPs with α-tubulin in rice leaves, confirming its effectiveness for studying the interaction between tubulin/MT and MAPs.
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Background: Endoscopic retrograde cholangiopancreatography (ERCP) has become a routine endoscopic procedure that is essential for diagnosing and managing various conditions, including gallstone extraction and the treatment of bile duct and pancreatic tumors. Despite its efficacy, post-ERCP infections - particularly those caused by carbapenem-resistant Enterobacterales (CRE) - present significant risks. These risks highlight the need for accurate predictive models to enhance postprocedural care, reduce the mortality risk associated with post-ERCP CRE sepsis, and improve patient outcomes in the context of increasing antibiotic resistance.

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Grain notching is a common deformation that decreases rice (Oryza sativa) quality; however, the underlying molecular basis causing grain notching remains unclear. We report mechanisms underlying grain notching in Small and notched grain (Sng) mutants, which contained an arginine to histidine substitution at amino acid position 422 (R422H) of the α-tubulin protein OsTUBA3. The R422H mutation decreased cell length and increased cell width/height of glumes and caryopses, but led to elongated caryopses compressed within shortened glumes, thus giving rise to notched and small grains.

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Taking 3-year old potted 'Shuguang' nectarine (Prunus persica var. nectariana cv. Shuguang) as test material, this paper studied the effects of high temperature (50 degrees C, HT) and hydrogen cyanamide (HC) on the floral bud respiratory metabolism of the tree during its natural dormancy.

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