磷酸酶互作蛋白2(Phosphatase-interacting protein 2,PSTPIP2)和溶质载体家族6成员18(Solute carrier family 6 member 18,SLC6A18)基因在动物先天性自身免疫中发挥着重要的作用。为探讨PSTPIP2基因g.43165308C>T位点和SLC6A18基因g...磷酸酶互作蛋白2(Phosphatase-interacting protein 2,PSTPIP2)和溶质载体家族6成员18(Solute carrier family 6 member 18,SLC6A18)基因在动物先天性自身免疫中发挥着重要的作用。为探讨PSTPIP2基因g.43165308C>T位点和SLC6A18基因g.8294767T>C位点多态性与牦牛免疫性状的关联性,本研究对189头娘亚牦牛的PSTPIP2基因g.43165308C>T位点和SLC6A18基因g.8294767T>C位点进行了PCR扩增,并利用PARMS SNP分型,采用IBM SPSS Statistics 26.0软件分析了不同基因位点与牦牛免疫球蛋白、炎症标志物及细胞因子等免疫性状的关联性。结果表明,PSTPIP2基因g.43165308C>T位点存在CC、CT和TT三种基因型,优势等位基因和基因型分别是C和CC,其频率分别为0.720和0.534。PSTPIP2基因g.43165308C>T位点属于中度多态位点,且处于Hardy-Weinberg平衡状态(P>0.05)。SLC6A18基因g.8294767T>C位点存在CC、TC和TT三种基因型,优势等位基因和基因型分别是T和TT,其频率分别为0.796和0.660。SLC6A18基因g.8294767T>C位点属于中度多态位点,且处于Hardy-Weinberg不平衡状态(P<0.05)。关联分析结果表明,PSTPIP2基因g.43165308C>T位点与牦牛免疫球蛋白A(IgA)、免疫球蛋白M(IgM)、C反应蛋白(CRP)、白介素-2(IL-2)、白介素-4(IL-4)、白介素-6(IL-6)、肿瘤坏死因子-α(TNF-α)均呈显著相关(P<0.05);SLC6A18基因g.8294767T>C位点与C反应蛋白(CRP)、白介素-4(IL-4)、干扰素-γ(IFN-γ)均呈显著相关(P<0.05)。综上所述,PSTPIP2和SLC6A18基因的多态性与牦牛免疫性状显著相关,这两个基因可能是影响牦牛免疫性状的潜在候选基因。展开更多
To explore the formation mechanism of anisotropy in Ti-6Al-4V alloy fabricated by selective laser melting(SLM),the compressive mechanical properties,microhardness,microstructure,and crystallographic orientation of the...To explore the formation mechanism of anisotropy in Ti-6Al-4V alloy fabricated by selective laser melting(SLM),the compressive mechanical properties,microhardness,microstructure,and crystallographic orientation of the alloy across different planes were investigated.The anisotropy of SLM-fabricated Ti-6Al-4V alloys was analyzed,and the electron backscatter diffraction technique was used to investigate the influence of different grain types and orientations on the stress-strain distribution at various scales.Results reveal that in room-temperature compression tests at a strain rate of 10^(-3) s^(-1),both the compressive yield strength and microhardness vary along the deposition direction,indicating a certain degree of mechanical property anisotropy.The alloy exhibits a columnar microstructure;along the deposition direction,the grains appear equiaxed,and they have internal hexagonal close-packed(hcp)α/α'martensitic structure.α'phase has a preferential orientation approximately along the<0001>direction.Anisotropy arises from the high aspect ratio of columnar grains,along with the weak texture of the microstructure and low symmetry of the hcp crystal structure.展开更多
The fatigue crack growth rate of a novel Ti-6Al-4V-1Mo titanium alloy,which is developed for laser directed energy deposition technique,was investigated before and after cyclic heat treatment(CHT).Changes in microstru...The fatigue crack growth rate of a novel Ti-6Al-4V-1Mo titanium alloy,which is developed for laser directed energy deposition technique,was investigated before and after cyclic heat treatment(CHT).Changes in microstructure,fracture surfaces,and crack growth paths were analyzed before and after CHT.Results indicate that in the stable crack growth region,the growth rates for the as-deposited and cyclic heat-treated specimens follow the relationships da/dN=1.8651×10^(−8)(ΔK)^(3.2271)and da/dN=1.4112×10^(−8)(ΔK)^(3.1125),respectively.Compared with that at the as-deposited state,the microstructure after CHT is transformed from a uniform basket-weave microstructure to a dual-phase microstructure consisting of near-sphericalαandβ-transformed matrix phases.The cyclic process also disrupts the continuity of the grain boundaryα(αGB)at the primaryβ-phase grain boundary.The coarsening of primaryαand the disruption ofαGB continuity are the primary factors to release stress concentration and promote crack deflection,thereby decreasing the fatigue crack growth rate.Additionally,the increased occurrence of crack branching,secondary cracking,and crack bridging in cyclic heat-treated specimens further reduces the crack driving force and slows the fatigue crack growth rate.展开更多
文摘磷酸酶互作蛋白2(Phosphatase-interacting protein 2,PSTPIP2)和溶质载体家族6成员18(Solute carrier family 6 member 18,SLC6A18)基因在动物先天性自身免疫中发挥着重要的作用。为探讨PSTPIP2基因g.43165308C>T位点和SLC6A18基因g.8294767T>C位点多态性与牦牛免疫性状的关联性,本研究对189头娘亚牦牛的PSTPIP2基因g.43165308C>T位点和SLC6A18基因g.8294767T>C位点进行了PCR扩增,并利用PARMS SNP分型,采用IBM SPSS Statistics 26.0软件分析了不同基因位点与牦牛免疫球蛋白、炎症标志物及细胞因子等免疫性状的关联性。结果表明,PSTPIP2基因g.43165308C>T位点存在CC、CT和TT三种基因型,优势等位基因和基因型分别是C和CC,其频率分别为0.720和0.534。PSTPIP2基因g.43165308C>T位点属于中度多态位点,且处于Hardy-Weinberg平衡状态(P>0.05)。SLC6A18基因g.8294767T>C位点存在CC、TC和TT三种基因型,优势等位基因和基因型分别是T和TT,其频率分别为0.796和0.660。SLC6A18基因g.8294767T>C位点属于中度多态位点,且处于Hardy-Weinberg不平衡状态(P<0.05)。关联分析结果表明,PSTPIP2基因g.43165308C>T位点与牦牛免疫球蛋白A(IgA)、免疫球蛋白M(IgM)、C反应蛋白(CRP)、白介素-2(IL-2)、白介素-4(IL-4)、白介素-6(IL-6)、肿瘤坏死因子-α(TNF-α)均呈显著相关(P<0.05);SLC6A18基因g.8294767T>C位点与C反应蛋白(CRP)、白介素-4(IL-4)、干扰素-γ(IFN-γ)均呈显著相关(P<0.05)。综上所述,PSTPIP2和SLC6A18基因的多态性与牦牛免疫性状显著相关,这两个基因可能是影响牦牛免疫性状的潜在候选基因。
基金National Natural Science Foundation of China(51504138,51674118,52271177)Hunan Provincial Natural Science Foundation of China(2023JJ50181)Supported by State Key Laboratory of Materials Processing and Die&Mould Technology,Huazhong University of Science and Technology(P2024-022)。
文摘To explore the formation mechanism of anisotropy in Ti-6Al-4V alloy fabricated by selective laser melting(SLM),the compressive mechanical properties,microhardness,microstructure,and crystallographic orientation of the alloy across different planes were investigated.The anisotropy of SLM-fabricated Ti-6Al-4V alloys was analyzed,and the electron backscatter diffraction technique was used to investigate the influence of different grain types and orientations on the stress-strain distribution at various scales.Results reveal that in room-temperature compression tests at a strain rate of 10^(-3) s^(-1),both the compressive yield strength and microhardness vary along the deposition direction,indicating a certain degree of mechanical property anisotropy.The alloy exhibits a columnar microstructure;along the deposition direction,the grains appear equiaxed,and they have internal hexagonal close-packed(hcp)α/α'martensitic structure.α'phase has a preferential orientation approximately along the<0001>direction.Anisotropy arises from the high aspect ratio of columnar grains,along with the weak texture of the microstructure and low symmetry of the hcp crystal structure.
基金National Key Research and Development Program of China(2024YFB4610803)。
文摘The fatigue crack growth rate of a novel Ti-6Al-4V-1Mo titanium alloy,which is developed for laser directed energy deposition technique,was investigated before and after cyclic heat treatment(CHT).Changes in microstructure,fracture surfaces,and crack growth paths were analyzed before and after CHT.Results indicate that in the stable crack growth region,the growth rates for the as-deposited and cyclic heat-treated specimens follow the relationships da/dN=1.8651×10^(−8)(ΔK)^(3.2271)and da/dN=1.4112×10^(−8)(ΔK)^(3.1125),respectively.Compared with that at the as-deposited state,the microstructure after CHT is transformed from a uniform basket-weave microstructure to a dual-phase microstructure consisting of near-sphericalαandβ-transformed matrix phases.The cyclic process also disrupts the continuity of the grain boundaryα(αGB)at the primaryβ-phase grain boundary.The coarsening of primaryαand the disruption ofαGB continuity are the primary factors to release stress concentration and promote crack deflection,thereby decreasing the fatigue crack growth rate.Additionally,the increased occurrence of crack branching,secondary cracking,and crack bridging in cyclic heat-treated specimens further reduces the crack driving force and slows the fatigue crack growth rate.