Strigolactones (SLs) regulate plant development and induce seed germination in obligate root parasitic weeds, e.g. spp. Because organic synthesis of natural SLs is laborious, there is a large need for easy-to-synthesize and efficient analogs. Here, we investigated the effect of a structural modification of the D-ring, a conserved structural element in SLs. We synthesized and investigated the activity of two analogs, MP13 and MP26, which differ from previously published AR8 and AR36 only in the absence of methylation at C-3'. The de-methylated MP13 and MP26 were much more efficient in regulating plant development and inducing seed germination, compared with AR8. Hydrolysis assays performed with purified SL receptor and docking of AR8 and MP13 to the corresponding active site confirmed and explained the higher activity. Field trials performed in a naturally -infested African farmer's field unraveled MP13 as a promising candidate for combating by inducing germination in host's absence. Our findings demonstrate that methylation of the C-3' in D-ring in SL analogs has a negative impact on their activity and identify MP13 and, particularly, MP26 as potent SL analogs with simple structures, which can be employed to control , a major threat to global food security.
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http://dx.doi.org/10.3389/fpls.2019.00353 | DOI Listing |
Chemosphere
December 2024
Department of Chemical and Materials Engineering, National University of Kaohsiung, Kaohsiung 81148, Taiwan. Electronic address:
Visible light photocatalysts hold great promise for water purification, yet research on highly efficient, non-toxic photocatalysts is limited. This study synthesized novel g-CN/AlOOH photocatalytic nanocomposites via thermal condensation, enhancing adsorption and visible light degradation by 36-fold and 11-fold, respectively, compared to g-CN alone. The nanocomposites achieved a 98% removal rate of methyl orange under xenon lamp irradiation (>400 nm) for 1 hour.
View Article and Find Full Text PDFActa Crystallogr E Crystallogr Commun
October 2024
Department of Chemistry, Taras Shevchenko National University of Kyiv, Volodymyrska str. 64/13, 01601 Kyiv, Ukraine.
The structures of the title compounds 2-hy-droxy-'-methyl-acetohydrazide, , and 2-hy-droxy--methyl-acetohydrazide, , both CHNO, as regioisomers differ in the position of the methyl group relative to the N atoms in 2-hy-droxy-acetohydrazide. In the structure of , the 2-hy-droxy-acetohydrazide core [OH-C-C(=O)-NH-NH] is almost planar and the methyl group is rotated relative to this plane. As opposed to , in the structure of all non-hydrogen atoms lie in the same plane.
View Article and Find Full Text PDFActa Crystallogr E Crystallogr Commun
October 2024
Department of Chemistry and Biochemistry Lamar University, 4400 MLK Blvd Beaumont Texas 77710 USA.
The mercury(II) halide complex [1,3-di--butyl-2,4-bis-(-butyl-amino)-1,3,2λ,4λ-di-aza-diphosphetidine-2,4-diselone-κ ,']di-iodido-mercury(II),-di-methyl-formamide monosolvate, [HgI(CHNPSe)]·CHNO or ()HgI, , containing -[( BuNH)(Se)P(μ-N Bu)P(Se)(NH Bu)] () was synthesized and structurally characterized. The crystal structure of confirms the chelation of chalcogen donors to HgI with a natural bite angle of 112.95 (2)°.
View Article and Find Full Text PDFMicrosyst Nanoeng
December 2024
School of Materials Science and Engineering, Changchun University of Science and Technology, 130022, Changchun, China.
This study introduces a multifunctional device based on CuO/g-CN monitoring and purification p-n heterojunctions (MPHs), seamlessly integrating surface-enhanced Raman scattering (SERS) detection with photocatalytic degradation capabilities. The SERS and photocatalytic performances of the CuO in various morphologies, g-CN nanosheets (NSs) and CuO/g-CN MPHs with different g-CN mass ratios were systematically evaluated, with a particular emphasis on the CuO/g-CN-0.2 MPH, where g-CN constituted 20% of the total mass.
View Article and Find Full Text PDFOrg Lett
December 2024
Xiangya International Academy of Translational Medicine, Central South University, Changsha, Hunan 410013, China.
β-Rubromycin () has a unique O-methylated naphthoquinone moiety and is an efficient inhibitor of human telomerase. Through and investigations, we elucidated the biosynthetic tailoring steps of compound , which involve the carboxyl terminal via successive oxidizations by RubU and RubO1/RubO2, O-methylation of the carboxyl terminal by RubX, and reduction of C-3' hydroxyl by RubK. The final tautomerization of the naphthoquinone moiety is mediated by RubO, which anchors the transitional intermediate through O-methylation to form the naphthoquinone tautomer.
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