空间调制(Spatial Modulation, SM)技术和OFDM多模子载波索引调制(OFDMMulti-Mode Index Modulation, MM-OFDM-IM)技术分别在能量效率(Energy Efficiency,EE)和频谱效率(Spectral Efficiency,SE)上有着很大的优势。多维度索引调制技术...空间调制(Spatial Modulation, SM)技术和OFDM多模子载波索引调制(OFDMMulti-Mode Index Modulation, MM-OFDM-IM)技术分别在能量效率(Energy Efficiency,EE)和频谱效率(Spectral Efficiency,SE)上有着很大的优势。多维度索引调制技术相结合能够应用多种物理资源,应对无线通信系统对数据传输和系统容量的高需求,由此将SM与MMOFDM-IM系统灵活结合,构建基于空频结合的多模复合索引调制(OFDM-Multiple-Mode Space Frequency Composite Index Modulation,MM-OFDM-SFCIM)系统,保留传统子载波索引调制技术中的静默子载波,拓展新的复合系数维度,提高系统的SE和EE。针对系统的复杂特性,提出了基于符号能量及对数似然的联合检测算法(REML based on symbolic Energy and LLR,EL-REML)。仿真结果表明,MM-OFDM-SFCIM系统比传统的空频结合系统在SE上提高了约30%,并且MM-DFDM-SPCIM系统中提出的EL-REML算法比LLR算法在误码率上提高了3~4 dB,相比传统的ML算法,其计算复杂度更低。展开更多
The conserved DNA damage repair complex,MMS21-SMC5/6(Methyl methane sulfonate 21-Structural maintenance of chromosomes 5/6),has been extensively studied in yeast,animals,and plants.However,its role in phytopathogenic ...The conserved DNA damage repair complex,MMS21-SMC5/6(Methyl methane sulfonate 21-Structural maintenance of chromosomes 5/6),has been extensively studied in yeast,animals,and plants.However,its role in phytopathogenic fungi,particularly in the highly destructive rice blast fungus Magnaporthe oryzae,remains unknown.In this study,we functionally characterized the homologues of this complex,MoMMS21 and MoSMC5,in M.oryzae.We first demonstrated the importance of DNA damage repair in M.oryzae by showing that the DNA damage inducer phleomycin inhibited vegetative growth,infection-related development and pathogenicity in this fungus.Additionally,we discovered that MoMMS21 and MoSMC5 interacted in the nuclei,suggesting that they also function as a complex in M.oryzae.Gene deletion experiments revealed that both MoMMS21 and MoSMC5 are required for infection-related development and pathogenicity in M.oryzae,while only MoMMS21 deletion affected growth and sensitivity to phleomycin,indicating its specific involvement in DNA damage repair.Overall,our results provide insights into the roles of MoMMS21 and MoSMC5 in M.oryzae,highlighting their functions beyond DNA damage repair.展开更多
The Japanese movie“0.5mm”connects the life clips between the nursing-care helper Sawa and several old people in the form of a road movie,highlighting many thought-provoking social problems,and revealing how the elem...The Japanese movie“0.5mm”connects the life clips between the nursing-care helper Sawa and several old people in the form of a road movie,highlighting many thought-provoking social problems,and revealing how the elements of emotional abuse hidden between the old people and their relatives and friends affect people’s dignity and decency,and at the same time trying to offset the persecution from the emotional abuse with the warm kindness between the elderly and the care workers.The film’s implicit description of emotional abuse and explicit display of good deeds are blended in the quiet and mysterious narrative character,achieving the effect of synchronizing the artistic narrative rhythm with the flow of life,reflecting the unique aesthetic characteristics of Japanese films.展开更多
文摘空间调制(Spatial Modulation, SM)技术和OFDM多模子载波索引调制(OFDMMulti-Mode Index Modulation, MM-OFDM-IM)技术分别在能量效率(Energy Efficiency,EE)和频谱效率(Spectral Efficiency,SE)上有着很大的优势。多维度索引调制技术相结合能够应用多种物理资源,应对无线通信系统对数据传输和系统容量的高需求,由此将SM与MMOFDM-IM系统灵活结合,构建基于空频结合的多模复合索引调制(OFDM-Multiple-Mode Space Frequency Composite Index Modulation,MM-OFDM-SFCIM)系统,保留传统子载波索引调制技术中的静默子载波,拓展新的复合系数维度,提高系统的SE和EE。针对系统的复杂特性,提出了基于符号能量及对数似然的联合检测算法(REML based on symbolic Energy and LLR,EL-REML)。仿真结果表明,MM-OFDM-SFCIM系统比传统的空频结合系统在SE上提高了约30%,并且MM-DFDM-SPCIM系统中提出的EL-REML算法比LLR算法在误码率上提高了3~4 dB,相比传统的ML算法,其计算复杂度更低。
基金Research and Development Program of China(2023YFD1400200)the Natural Science Foundation of Fujian Province,China(2022J01125)+2 种基金the Fujian Key Laboratory for Monitoring and Integrated Management of Crop Pests,China(MIMCP-202301)the Fujian Provincial Science and Technology Key Project,China(2022NZ030014)the National Natural Science Foundation of China(NSFC31871914).
文摘The conserved DNA damage repair complex,MMS21-SMC5/6(Methyl methane sulfonate 21-Structural maintenance of chromosomes 5/6),has been extensively studied in yeast,animals,and plants.However,its role in phytopathogenic fungi,particularly in the highly destructive rice blast fungus Magnaporthe oryzae,remains unknown.In this study,we functionally characterized the homologues of this complex,MoMMS21 and MoSMC5,in M.oryzae.We first demonstrated the importance of DNA damage repair in M.oryzae by showing that the DNA damage inducer phleomycin inhibited vegetative growth,infection-related development and pathogenicity in this fungus.Additionally,we discovered that MoMMS21 and MoSMC5 interacted in the nuclei,suggesting that they also function as a complex in M.oryzae.Gene deletion experiments revealed that both MoMMS21 and MoSMC5 are required for infection-related development and pathogenicity in M.oryzae,while only MoMMS21 deletion affected growth and sensitivity to phleomycin,indicating its specific involvement in DNA damage repair.Overall,our results provide insights into the roles of MoMMS21 and MoSMC5 in M.oryzae,highlighting their functions beyond DNA damage repair.
文摘The Japanese movie“0.5mm”connects the life clips between the nursing-care helper Sawa and several old people in the form of a road movie,highlighting many thought-provoking social problems,and revealing how the elements of emotional abuse hidden between the old people and their relatives and friends affect people’s dignity and decency,and at the same time trying to offset the persecution from the emotional abuse with the warm kindness between the elderly and the care workers.The film’s implicit description of emotional abuse and explicit display of good deeds are blended in the quiet and mysterious narrative character,achieving the effect of synchronizing the artistic narrative rhythm with the flow of life,reflecting the unique aesthetic characteristics of Japanese films.