Differential hydroxylation efficiency of the two non-heme carotene hydroxylases: dcbch1, rather than dcbch2, plays a major role in carrot taproot

HIGHLIGHTS

  • who: LT from the Agricultural University, Weigang, Nanjing, China have published the article: Differential hydroxylation efficiency of the two non-heme carotene hydroxylases: DcBCH1, rather than DcBCH2, plays a major role in carrot taproot, in the Journal: (JOURNAL)
  • what: ED the study showed that DcBCH1 and DcBCH2 were also located in the plastid ED IT (chloroplast).
  • how: These results indicated that DcBCH1 played the main function of BCH enzyme which could hydroxylate and β-carotene DcBCH1 and DcBCH2 had functional redundancy and these two DcBCHs could partially compensate for each other. Evolutionary analysis results . . .

     

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