Jinjiang oyster Crassostrea ariakensis,a species with economic and ecological value,is distributed along the estuaries and coasts of East Asia.With the decline in natural resources,the conservation and aquaculture of ...Jinjiang oyster Crassostrea ariakensis,a species with economic and ecological value,is distributed along the estuaries and coasts of East Asia.With the decline in natural resources,the conservation and aquaculture of this species is urgent.However,studies characterizing their shell shape remain scarce.We investigated the morphological differences in the shells of wild Jinjiang oysters from six populations(Qinzhou,Shanghai,Nantong,Qingdao,and Binzhou hard or muddy bottom)along the coast of China.The color of the shell and adductor muscle scar showed associations with temperature gradient along its geographical distribution.Oyster shape was defined by shell height to shell length ratio,and the ratio varies among geographic locations of the populations.They were found nearly round(Qinzhou and Nantong populations),oval(Qingdao and Binzhou populations),or water-droplet-shaped(Shanghai population).Binzhou populations living on muddy substrates are more elongated than those on hard substrate.In addition,we developed a method to measure the cavity volume in oysters.Correlation and path analysis showed that shell height significantly influenced cavity volume.The synergistic effect of the two factors(the height,length,and width of the shell in pairs)on the cavity volume resulted in differences between northern and southern groups:samples from the southern group(Qinzhou and Shanghai)showed correlation between shell height and shell width,while those from the northern group(Nantong,Qingdao,and Binzhou)showed correlation between shell height and shell length.All populations showed significant correlation between shell height and cavity height,and shell length and cavity length,while the correlation between shell width and cavity width was minimal,which may have been resulted from uneven shell thickness.The linear equation for shell height and cavity volume under different ratios of shell height to length was obtained.In this study,we determined that shell height has the most influence on cavity volume,and specific cavity volu展开更多
[Objective] The aim was to explore a new sampling approach to obtain genomic DNA of marine shellfish,as well as to provide reference for the molecular biology research on precious shellfish.[Method] Meretrix meretrix,...[Objective] The aim was to explore a new sampling approach to obtain genomic DNA of marine shellfish,as well as to provide reference for the molecular biology research on precious shellfish.[Method] Meretrix meretrix,Atrina pectinata,Perna viridis,Crassostrea hongkongensis and Scapharca kagoshimensis were used as experimental materials and the genomic DNA of adductor muscle was taken as reference to extract the genomic DNA of shell cavity fluids with the conventional phenol-chloroform method.And then biophotometer,agarose gel electrophoresis,amplification and sequencing of the target fragments were used to examine the quality of genomic DNA.At the same time,the phylogenic tree was constructed to verify the reality of source contributions.[Result] The quality of genomic DNA of shell cavity fluids extracted by the phenol-chloroform method was better than the genomic of adductor muscle.The genomic DNA extracted by this method showed less content of protein,polyphenol and pigment,which could completely meet the demands of amplification and sequencing of the target fragments.Through the phylogenic tree,it was verified that the source contributions of shell cavity fluids were not come from foreign pollutions.[Conclusion] It is completely feasible to obtain the genomic DNA from shell cavity fluids,which could be applied in the target fragments amplification.展开更多
A forming method named powder cavity flexible forming was proposed. It is a forming technology which uses powder medium instead of rigid punch or die to form sheet metals. Cup shells were successfully obtained by this...A forming method named powder cavity flexible forming was proposed. It is a forming technology which uses powder medium instead of rigid punch or die to form sheet metals. Cup shells were successfully obtained by this technology. The theoretical calculation equation of forming load was obtained through mechanical analysis and the stress state in cup shells was analyzed by finite element simulation. The results show that powder cavity flexible forming technology can improve the forming limit of sheet metal. Compared with rigid die forming process, the thickness reduction in the punch fillet area significantly decreases and the drawing ratio increases from 1.8 to 2.2. The thinning compressive stress in the bottom of cup shell emerges, which makes the bottom of the cup shell in three-dimensional stress state and the stress in punch fillet region decrease due to powder reaction force, which can effectively inhibit the sever thinning of the sheet and prevent the generation of fracture defects.展开更多
基金Supported by the Key R&D Program Project of Shandong Province (No.2021LZGC029)the Strategic Priority Research Program of the Chinese Academy of Sciences (No.XDA23050402)+3 种基金the Young Elite Scientists Sponsorship Program by China Association of Science and Technology (No.2021QNRC001)the Technology and the Modern Agroindustry Technology Research System (No.CARS-49)the Innovation Capacity Improvement Project of Small and Medium-Sized Technology-Based Enterprise of Shandong Province (No.2022TSGC1125)the Key Technology Research and Industrialization Demonstration Projects of Qingdao,China (No.22-3-3-hygg-2-hy)。
文摘Jinjiang oyster Crassostrea ariakensis,a species with economic and ecological value,is distributed along the estuaries and coasts of East Asia.With the decline in natural resources,the conservation and aquaculture of this species is urgent.However,studies characterizing their shell shape remain scarce.We investigated the morphological differences in the shells of wild Jinjiang oysters from six populations(Qinzhou,Shanghai,Nantong,Qingdao,and Binzhou hard or muddy bottom)along the coast of China.The color of the shell and adductor muscle scar showed associations with temperature gradient along its geographical distribution.Oyster shape was defined by shell height to shell length ratio,and the ratio varies among geographic locations of the populations.They were found nearly round(Qinzhou and Nantong populations),oval(Qingdao and Binzhou populations),or water-droplet-shaped(Shanghai population).Binzhou populations living on muddy substrates are more elongated than those on hard substrate.In addition,we developed a method to measure the cavity volume in oysters.Correlation and path analysis showed that shell height significantly influenced cavity volume.The synergistic effect of the two factors(the height,length,and width of the shell in pairs)on the cavity volume resulted in differences between northern and southern groups:samples from the southern group(Qinzhou and Shanghai)showed correlation between shell height and shell width,while those from the northern group(Nantong,Qingdao,and Binzhou)showed correlation between shell height and shell length.All populations showed significant correlation between shell height and cavity height,and shell length and cavity length,while the correlation between shell width and cavity width was minimal,which may have been resulted from uneven shell thickness.The linear equation for shell height and cavity volume under different ratios of shell height to length was obtained.In this study,we determined that shell height has the most influence on cavity volume,and specific cavity volu
基金Supported by Director Foundation of Guangxi Key Laboratory of Marine Biotechnology (GKLMBT-D0801)~~
文摘[Objective] The aim was to explore a new sampling approach to obtain genomic DNA of marine shellfish,as well as to provide reference for the molecular biology research on precious shellfish.[Method] Meretrix meretrix,Atrina pectinata,Perna viridis,Crassostrea hongkongensis and Scapharca kagoshimensis were used as experimental materials and the genomic DNA of adductor muscle was taken as reference to extract the genomic DNA of shell cavity fluids with the conventional phenol-chloroform method.And then biophotometer,agarose gel electrophoresis,amplification and sequencing of the target fragments were used to examine the quality of genomic DNA.At the same time,the phylogenic tree was constructed to verify the reality of source contributions.[Result] The quality of genomic DNA of shell cavity fluids extracted by the phenol-chloroform method was better than the genomic of adductor muscle.The genomic DNA extracted by this method showed less content of protein,polyphenol and pigment,which could completely meet the demands of amplification and sequencing of the target fragments.Through the phylogenic tree,it was verified that the source contributions of shell cavity fluids were not come from foreign pollutions.[Conclusion] It is completely feasible to obtain the genomic DNA from shell cavity fluids,which could be applied in the target fragments amplification.
基金Project(E2017203046)supported by the Natural Science Foundation of Hebei Province,China
文摘A forming method named powder cavity flexible forming was proposed. It is a forming technology which uses powder medium instead of rigid punch or die to form sheet metals. Cup shells were successfully obtained by this technology. The theoretical calculation equation of forming load was obtained through mechanical analysis and the stress state in cup shells was analyzed by finite element simulation. The results show that powder cavity flexible forming technology can improve the forming limit of sheet metal. Compared with rigid die forming process, the thickness reduction in the punch fillet area significantly decreases and the drawing ratio increases from 1.8 to 2.2. The thinning compressive stress in the bottom of cup shell emerges, which makes the bottom of the cup shell in three-dimensional stress state and the stress in punch fillet region decrease due to powder reaction force, which can effectively inhibit the sever thinning of the sheet and prevent the generation of fracture defects.