Garden pea productivity and qualities are hampered in zinc(Zn),boron(B),and molybdenum(Mo)deficient soil.Thus,the combination of micronutrients(i.e.,Zn,B,and Mo)and rhizobium is necessary to increase the productivity ...Garden pea productivity and qualities are hampered in zinc(Zn),boron(B),and molybdenum(Mo)deficient soil.Thus,the combination of micronutrients(i.e.,Zn,B,and Mo)and rhizobium is necessary to increase the productivity and quality of garden peas,since this management for garden peas is neglected in Bangladesh.Therefore,the present study was made to assess the effectiveness of rhizobium inoculant singly or in combination with the micronutrients(i.e.,Zn,B,and Mo)on growth,yield,nutrient uptake,and quality of garden peas.Treatments were:T_(1)=Control,T_(2)=Rhizobium inoculation at 50 g/kg seed,T_(3)=T_(2)+Zn_(3)Mo1,T_(4)=T_(2)+B_(2)Mo1,T_(5)=T_(2)+Zn_(3)B_(2),T_(6)=T_(2)+Zn_(3)B_(2)Mo1 and T_(7)=Zn_(3)B_(2)Mo1.All treatments were arranged in a randomized complete block design and repeated all treatments in three times.The application of 3 kg Zn,2 kg B,and 1 kg Mo ha^(−1)with inoculation of Rhizobium at 50 g kg^(−1)seed(T_(6))facilitated to increase of 44.8%in the green pod and 29.7%seed yield over control.The same treatment contributed to attaining the maximum nodulation(25.3 plant^(−1)),Vitamin C(43.5 mg 100 g^(−1)),protein content(22.2%),and nutrient uptake as well as accumulation in garden peas.Among all treatment combinations,treatment T_(6)was found superior to others based on microbial activities,soil fertility,and profitability.The results of the study found that the application of 3 kg Zn,2 kg B,and 1 kg Mo ha^(−1)in combination with Rhizobium inoculation(50 g kg^(−1)seed)can improve the yield and quality of garden peas.The results of the study have the potential for the areas,where there is no use of Rhizobium inoculant or Zn,B,and Mo fertilizer for cultivation of garden pea.展开更多
A new isochromanone,cladosporinisochromanone(1),accompanied by 15 known compounds(2–16)were obtained from secondary metabolites produced by marine-derived fungus Cladosporium sp.DLT-5.NMR and HRESIMS spectra elucidat...A new isochromanone,cladosporinisochromanone(1),accompanied by 15 known compounds(2–16)were obtained from secondary metabolites produced by marine-derived fungus Cladosporium sp.DLT-5.NMR and HRESIMS spectra elucidation determined the planar structure of 1.Subsequent electronic circular dichroism(ECD)experiment assigned the absolute configuration of 1.Compounds 1,2,4–6,and 10 displayed different degrees of neuroprotective activities on human neuroblastoma cells SH-SY5Y.Five compounds(1,3–5,and 13)emerged resistance to protein tyrosine phosphatase 1B(PTP1B),further kinetic analysis and molecular docking study indicated that the most potent compound 13(IC50value of 10.74±0.61μmol/L)was found as a noncompetitive inhibitor for PTP1B.Surface plasmon resonance(SPR)and molecular docking studies also demonstrated the interaction between compound 12 and Niemann-Pick C1 Like 1(NPC1L1),which has been identified as significant therapeutic target for hypercholesteremia.In addition,compounds 3,6,and 14 showed attractive inhibitory activity against the phytopathogenic fungi:Colletotrichum capsici.Therefore,library of Cladosporium metabolites is enriched and new active uses of known compounds are explored.展开更多
Background:Phyllanthus urinaria L.(P.urinaria)extract(PUE)has been used to inhibit hepatitis B virus(HBV).However,the underlying mechanism remains unclear.To investigate which PUE fractions and main components lead to...Background:Phyllanthus urinaria L.(P.urinaria)extract(PUE)has been used to inhibit hepatitis B virus(HBV).However,the underlying mechanism remains unclear.To investigate which PUE fractions and main components lead to against HBV and approach the relevant molecular mechanisms.Methods:P.urinaria was extracted with water,and then the decoction was extracted by petroleum ether,ethyl acetate,and n-butanol in turn.The HepG2.2.15 cell was treated with aqueous fraction,petroleum ether fraction,ethyl acetate fraction and n-butanol fraction,gallic acid(GA,C7H6O5)and corilagin(CL,C27H22O18),respectively.The medium was collected for hepatitis B surface antigen(HBsAg)and hepatitis B e antigen assays.Cell counting kit-8 method was used to identify cell proliferation.Also,the levels of cellular oxygen consumption,reactive oxygen species,and reduced glutathione were detected.The HBV modeling mice were treated with ethyl acetate fraction,entecavir and physiological saline,respectively.The serum was collected for HBsAg and inflammatory cytokines assays.Liver tissue metabolites were screened by LC-MS/MS method.Results:The ethyl acetate fraction(EAF)of P.urinaria could significantly inhibit HBV secretion in HepG2.2.15(P<0.05).Furthermore,two main constitutes in ethyl acetate fraction,GA and CL,could significantly inhibit HBV secretion and reduced cell proliferation(P<0.05).Also,GA and CL could increase cellular oxygen consumption,intracellular superoxide anions level,superoxide dismutase level and glutathione depletion.Compared with the Modeling group,EAF significantly decreased the expression levels of HBsAg,IL-1β,IFN-α(P<0.05).LC-MS/MS analysis results showed that EAF dramatically up-regulate hydroxyproline,maltotriose,betaine and down-regulate glutathione disulfide,taurocholate,taurochenodeoxycholate(P<0.05).Kyoto Encyclopedia of Genes and Genomes results show that the differential metabolites were mainly enriched in ATP-binding cassette transporters pathway.Conclusions:P.urinaria exhibits suppressed effects on HBV by modulating reactive oxygen species formation or metabolomics both in vitro and in vivo.These data indicate that P.urinaria may be an alternative therapeutic agent for the treatment of HBV-related hepatitis.展开更多
文摘Garden pea productivity and qualities are hampered in zinc(Zn),boron(B),and molybdenum(Mo)deficient soil.Thus,the combination of micronutrients(i.e.,Zn,B,and Mo)and rhizobium is necessary to increase the productivity and quality of garden peas,since this management for garden peas is neglected in Bangladesh.Therefore,the present study was made to assess the effectiveness of rhizobium inoculant singly or in combination with the micronutrients(i.e.,Zn,B,and Mo)on growth,yield,nutrient uptake,and quality of garden peas.Treatments were:T_(1)=Control,T_(2)=Rhizobium inoculation at 50 g/kg seed,T_(3)=T_(2)+Zn_(3)Mo1,T_(4)=T_(2)+B_(2)Mo1,T_(5)=T_(2)+Zn_(3)B_(2),T_(6)=T_(2)+Zn_(3)B_(2)Mo1 and T_(7)=Zn_(3)B_(2)Mo1.All treatments were arranged in a randomized complete block design and repeated all treatments in three times.The application of 3 kg Zn,2 kg B,and 1 kg Mo ha^(−1)with inoculation of Rhizobium at 50 g kg^(−1)seed(T_(6))facilitated to increase of 44.8%in the green pod and 29.7%seed yield over control.The same treatment contributed to attaining the maximum nodulation(25.3 plant^(−1)),Vitamin C(43.5 mg 100 g^(−1)),protein content(22.2%),and nutrient uptake as well as accumulation in garden peas.Among all treatment combinations,treatment T_(6)was found superior to others based on microbial activities,soil fertility,and profitability.The results of the study found that the application of 3 kg Zn,2 kg B,and 1 kg Mo ha^(−1)in combination with Rhizobium inoculation(50 g kg^(−1)seed)can improve the yield and quality of garden peas.The results of the study have the potential for the areas,where there is no use of Rhizobium inoculant or Zn,B,and Mo fertilizer for cultivation of garden pea.
基金Supported by the China Agriculture Research System of MOF and MARA(CARS-21)the Financial Fund of the Ministry of Agriculture and Rural Affairs,China(No.NFZX2021)the National Natural Science Foundation of China(No.81973568)。
文摘A new isochromanone,cladosporinisochromanone(1),accompanied by 15 known compounds(2–16)were obtained from secondary metabolites produced by marine-derived fungus Cladosporium sp.DLT-5.NMR and HRESIMS spectra elucidation determined the planar structure of 1.Subsequent electronic circular dichroism(ECD)experiment assigned the absolute configuration of 1.Compounds 1,2,4–6,and 10 displayed different degrees of neuroprotective activities on human neuroblastoma cells SH-SY5Y.Five compounds(1,3–5,and 13)emerged resistance to protein tyrosine phosphatase 1B(PTP1B),further kinetic analysis and molecular docking study indicated that the most potent compound 13(IC50value of 10.74±0.61μmol/L)was found as a noncompetitive inhibitor for PTP1B.Surface plasmon resonance(SPR)and molecular docking studies also demonstrated the interaction between compound 12 and Niemann-Pick C1 Like 1(NPC1L1),which has been identified as significant therapeutic target for hypercholesteremia.In addition,compounds 3,6,and 14 showed attractive inhibitory activity against the phytopathogenic fungi:Colletotrichum capsici.Therefore,library of Cladosporium metabolites is enriched and new active uses of known compounds are explored.
基金This work was supported by Natural Science Foundation of Hainan Province(Grant No.821QN0998)Key R&D Plan of Hainan Province(Grant No.ZDYF2023SHFZ116)+1 种基金Postgraduate Innovation Project of Hainan Province(Grant No.Qhyb2022-131,Qhys2022-281)supported by Hainan Province Clinical Medical Center.
文摘Background:Phyllanthus urinaria L.(P.urinaria)extract(PUE)has been used to inhibit hepatitis B virus(HBV).However,the underlying mechanism remains unclear.To investigate which PUE fractions and main components lead to against HBV and approach the relevant molecular mechanisms.Methods:P.urinaria was extracted with water,and then the decoction was extracted by petroleum ether,ethyl acetate,and n-butanol in turn.The HepG2.2.15 cell was treated with aqueous fraction,petroleum ether fraction,ethyl acetate fraction and n-butanol fraction,gallic acid(GA,C7H6O5)and corilagin(CL,C27H22O18),respectively.The medium was collected for hepatitis B surface antigen(HBsAg)and hepatitis B e antigen assays.Cell counting kit-8 method was used to identify cell proliferation.Also,the levels of cellular oxygen consumption,reactive oxygen species,and reduced glutathione were detected.The HBV modeling mice were treated with ethyl acetate fraction,entecavir and physiological saline,respectively.The serum was collected for HBsAg and inflammatory cytokines assays.Liver tissue metabolites were screened by LC-MS/MS method.Results:The ethyl acetate fraction(EAF)of P.urinaria could significantly inhibit HBV secretion in HepG2.2.15(P<0.05).Furthermore,two main constitutes in ethyl acetate fraction,GA and CL,could significantly inhibit HBV secretion and reduced cell proliferation(P<0.05).Also,GA and CL could increase cellular oxygen consumption,intracellular superoxide anions level,superoxide dismutase level and glutathione depletion.Compared with the Modeling group,EAF significantly decreased the expression levels of HBsAg,IL-1β,IFN-α(P<0.05).LC-MS/MS analysis results showed that EAF dramatically up-regulate hydroxyproline,maltotriose,betaine and down-regulate glutathione disulfide,taurocholate,taurochenodeoxycholate(P<0.05).Kyoto Encyclopedia of Genes and Genomes results show that the differential metabolites were mainly enriched in ATP-binding cassette transporters pathway.Conclusions:P.urinaria exhibits suppressed effects on HBV by modulating reactive oxygen species formation or metabolomics both in vitro and in vivo.These data indicate that P.urinaria may be an alternative therapeutic agent for the treatment of HBV-related hepatitis.