Identification of a Prunus MAX1 Homolog as a Unique Strigol Synthase from Carlactone Bypassing 5-Deoxystrigol
Identification of a Prunus MAX1 Homolog as a Unique Strigol Synthase from Carlactone Bypassing 5-Deoxystrigol
复制标题
鉴定 Prunus MAX1 同源物为绕过 5-Deoxystrigol 的 Carlactone 的独特 Strigol 合酶
DOI:
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发表时间:
2022
期刊:
影响因子:
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通讯作者:
Yanran Li
中科院分区:
文献类型:
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作者:
Sheng Wu;Anqi Zhou;Kozue Hiugano;Akiyoshi Yoda;Xiaonan Xie;Kenji Yamane;K. Miura;T. Nomura;Yanran Li
Strigol was the first strigolactone (SL) to be discovered, but the biosynthetic pathway remains elusive. Here, through rapid gene screening using a microbial SL-producing platform, we functionally identified a strigol synthase (PpMAX1c, a cytochrome P450 711A enzyme) in Prunus that synthesizes strigol directly from the SL precursor carlactone through catalyzing multi-step oxidations and C-ring cyclization, bypassing the synthesis of 5-deoxystrigol. The function of PpMAX1c was validated through reconstructing the biosynthesis of strigol in Nicotiana benthamiana. Additional genomic analysis and functional verification confirm that peach also encodes an orobanchol synthase (PpCYP722C, a cytochrome P450 722C enzyme), which hints at the presence of both strigol-type and orobanchol-type SLs in peach and was confirmed through metabolic analysis of peach seedlings. This work highlights the catalytic diversity of the largely unexplored family of CYP711A homologs and sets the foundation to characterize the roles of different types of SLs in the economically important Prunus.
影响因子:
56.9
作者:
Alder, Adrian;Jamil, Muhammad;Al-Babili, Salim
通讯作者:
Al-Babili, Salim
影响因子:
13.6
作者:
Wu S;Ma X;Zhou A;Valenzuela A;Zhou K;Li Y
通讯作者:
Li Y