2007•Journal of Jilin University(Science Edition)Requires access

Molecular Analysis of High Pressure Induced Barley DNA Structure and Effect of High Pressure on Germination of Barley Seed

Qingfeng Guan

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Abstract

Barley seeds were treated under different high hydrostatic pressures and were kept for 2 h.Compared with those of control,both germination rate and seedling rate decreased considerably with pressure increasing,all barley seeds were dead after treatment under 200 MPa.The above results show that high hydrostatic pressure could affect the seeds germination,seedling growth.Plant growth was inhibited for treated barley during the early growth stage of seedling.The genetic variation of different high hydrostatic pressure treated barley seeds was investigated by RAPD and ISSR analysis,21 ISSR and 19 RAPD primers generated 391 and 229 bands respectively,of which 49.93% and 58.59% were polymorphic respectively.For P2 and P3,112 and 113 bands were generated,ISSR analysis indicates that the mean absolute distance coefficient between the original breed and P2 is 0.136 1,while that between the original breed and P3 is 0.116 5.RAPD analysis demonstrates that the mean absolute distance coefficient between the original breed and P2 is 0.151 3,while that between the original breed and P3 is 0.195 9.ISSR and RAPD analyses of these two mutants and the original breeds reveal that there are significantly polymorphism between the two mutants and the original breed.

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Barley seeds were treated under different high hydrostatic pressures and were kept for 2 h.Compared with those of control,both germination rate and seedling rate decreased considerably with pressure increasing,all barley seeds were dead after treatment under 200 MPa.The above results show that high hydrostatic pressure could affect the seeds germination,seedling growth.Plant growth was inhibited for treated barley during the early growth stage of seedling.The genetic variation of different high hydrostatic pressure treated barley seeds was investigated by RAPD and ISSR analysis,21 ISSR and 19 RAPD primers generated 391 and 229 bands respectively,of which 49.93% and 58.59% were polymorphic respectively.For P2 and P3,112 and 113 bands were generated,ISSR analysis indicates that the mean absolute distance coefficient between the original breed and P2 is 0.136 1,while that between the original breed and P3 is 0.116 5.RAPD analysis demonstrates that the mean absolute distance coefficient between the original breed and P2 is 0.151 3,while that between the original breed and P3 is 0.195 9.ISSR and RAPD analyses of these two mutants and the original breeds reveal that there are significantly polymorphism between the two mutants and the original breed.

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Available abstract

Barley seeds were treated under different high hydrostatic pressures and were kept for 2 h.Compared with those of control,both germination rate and seedling rate decreased considerably with pressure increasing,all barley seeds were dead after treatment under 200 MPa.The above results show that high hydrostatic pressure could affect the seeds germination,seedling growth.Plant growth was inhibited for treated barley during the early growth stage of seedling.The genetic variation of different high hydrostatic pressure treated barley seeds was investigated by RAPD and ISSR analysis,21 ISSR and 19 RAPD primers generated 391 and 229 bands respectively,of which 49.93% and 58.59% were polymorphic respectively.For P2 and P3,112 and 113 bands were generated,ISSR analysis indicates that the mean absolute distance coefficient between the original breed and P2 is 0.136 1,while that between the original breed and P3 is 0.116 5.RAPD analysis demonstrates that the mean absolute distance coefficient between the original breed and P2 is 0.151 3,while that between the original breed and P3 is 0.195 9.ISSR and RAPD analyses of these two mutants and the original breeds reveal that there are significantly polymorphism between the two mutants and the original breed.

Key concepts: Germination, RAPD, Seedling, Breed, Biology, Hydrostatic pressure, Horticulture, Hordeum vulgare

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Molecular Analysis of High Pressure Induced Barley DNA Structure and Effect of High Pressure on Germination of Barley Seed — Research Paper | ScholarLens