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Physiological and chromosomal changes of delayed harvest soybean (Glycine max L. Merr.) seeds

机译:延迟收获大豆(Glycine Max L. Merr.)种子的生理和染色体变化

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Delayed harvests may favour the deterioration process in soybean seeds due to their exposure to adverse environmental conditions. This study was undertaken to investigate physiological and chromosomal changes of aged soybean seeds due to delayed harvest. Seeds of 'AGS-190' and 'Cikurai' were harvested at harvest maturity (HM), one week after HM (H1) and three weeks after HM (H3). Seed viability and vigour (speed of germination, mean germination, seedling vigour index, seedling length and dry weight) decreased in H3 seeds in both cultivars. Prolonged ageing conditions in the field considerably reduced the activities of catalase (CAT) and superoxide dismutase (SOD) showing the lowest level in H3 seeds regardless of cultivar. Malondialdehyde (MDA) increased with delay in harvest and the highest content was recorded in H3 seeds. There was a negative correlation between seed viability and genetic damage expressed by lower percentage of chromosomal aberrations in HM seeds of 'AGS-190' and H1 seeds of 'Cilcurai'. The percentage of chromosomal aberration was significantly higher in H3 seeds. This study indicates that field deterioration process of soybean seeds also involves the production of reactive oxygen species (ROS) through lipid peroxidation which interfere with cell mitotic activity.
机译:由于暴露于不利的环境条件,延迟收获可能有利于大豆种子中的恶化过程。本研究旨在调查由于收获延迟而导致老化大豆种子的生理和染色体变化。收获成熟度(HM)的“AGS-190”和“CIKUAI”的种子,HM(H1)后一周,HM后三周(H3)。种子活力与活力(萌发速度,平均萌发,幼苗活力指数,栽培品种H3种子中的H3种子中降低。该领域的长时间衰老条件显着降低了过氧化氢酶(猫)和超氧化物歧化酶(SOD)的活性,显示出H3种子中最低水平的无论品种。丙二醛(MDA)随着收获延迟而增加,最高含量记录在H3种子中。在“Ags-190”和“Cilcurai的H1种子的HM种子较低的染色体畸变较低的染色体畸变百分比”表达的种子活力与遗传破坏之间存在负相关性。 H3种子中染色体畸变的百分比显着高。该研究表明大豆种子的劣化过程还涉及通过干扰细胞有丝分裂活性的脂质过氧化的活性氧物质(ROS)。

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