Publications by authors named "Chaoyang Luo"

Mercury has caused severe harm to the environment and human health. A novel biological screen method was developed and identified a Hg chelator BDTH2. Both biological and chemical methods demonstrated BDTH2 displayed a high specificity and strong binding capacity for Hg.

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Article Synopsis
  • Birds vary greatly in size, making them key for studying how evolution adapts traits like body size, but the genetic factors involved are still not well understood.
  • This study examined 15 genes linked to body size in birds, showing notable adaptive evolution in these genes across different bird lineages, especially highlighting the IGF2BP1 gene's connection to larger body sizes.
  • The research uncovered distinct evolutionary patterns and convergent evolution in genes associated with body size, providing new insights into the genetic mechanisms driving size adaptations in birds.
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In order to understand the molecular insights within the Terebellida, the complete mitochondrial genome of Loimia arborea was sequenced. The mitochondrial genome is 16,023 bp, with 13 protein-coding genes (PCGs), 23 transfer RNA (tRNA) genes, two ribosomal RNA (rRNA) genes, and a non-coding region (D-loop). Notably, two adjacent copies of methionine tRNA genes (trnMs) were detected.

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To cope with the damage from oxidative stress caused by hypoxia, mammals have evolved a series of physiological and biochemical traits, including antioxidant ability. Although numerous research studies about the mechanisms of hypoxia evolution have been reported, the molecular mechanisms of antioxidase-related genes in mammals living in different environments are yet to be completely understood. In this study, we constructed a dataset comprising 7 antioxidase-related genes (, , , , , , and ) from 43 mammalian species to implement evolutionary analysis.

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In transferable black-box attacks, adversarial samples remain adversarial across multiple models and are more likely to attack unknown models. From this view, acquiring and exploiting multiple models is the key to improving transferability. For exploiting multiple models, existing approaches concentrate on differences among models but ignore the underlying complex dependencies.

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Background: Autoimmune hypophysitis (AH) is a primary autoimmune inflammatory disorder of the pituitary gland, which usually presents as a mass in the sella turcica. Systemic lupus erythematosus (SLE) is another inflammatory disorder in which the immune system attacks healthy cells and tissues throughout the body. Although both diseases are autoimmune disorders, they rarely coexist, and the relationship between them is unclear.

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