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Radiobiological effects of nitrogen ion implantation on upland cotton (Gossypium hirsutum L.) pollen grains

机译:氮离子注入对陆地棉花粉粒的辐射生物学效应

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To study the radiobiological effects of low-energy nitrogen ions on plant cells, nitrogen ions of various energies (10, 20 and 30 keV) were implanted into pollen grains of the upland cotton (Gossypium hirsutum L.) cultivar 'Lumian 21'. The effects of irradiation on the pollen grains were assessed in terms of the ultrastructural changes in the exine and interior walls of the pollen grains, the germination rate, the number of pollen tubes in styles after pollination, the extent of the tip-focussed Ca2+ gradient and ultrastructural changes in F-actin in pollen tubes that developed from the treated pollen grains germinated in liquid medium. Nitrogen ions passed through the pollen grains by etching, penetrated the exine and interior walls, and destroyed cell structures in pollen grains. As the ion implantation energy increased, more pollen grains were destroyed, and the pollen grain germination rate and the number and length of pollen tubes decreased. Damaging effects were also observed with respect to the tip-focussed Ca2+ gradient and F-actin in pollen tubes. Treatment with 20- and 30-keV nitrogen ions caused the disappearance of the tip-focussed Ca2+ gradient in pollen tubes and affected the entire length of the tube. The function and structure of pollen tubes with respect to pollination and fertilisation may be affected by the changes in the ultrastructure of the pollen grains and the gene expression profile of pollen tubes after pollen grains are irradiated by nitrogen ions.
机译:为了研究低能氮离子对植物细胞的放射生物学效应,将各种能量(10、20和30 keV)的氮离子植入陆地棉(Go棉)品种“ um面21”的花粉粒中。根据花粉粒外壁和内壁的超微结构变化,发芽率,授粉后花粉管的数量,花粉尖端的Ca2 +梯度程度来评估辐照对花粉粒的影响。花粉管中F-肌动蛋白的超微结构变化是由液体培养基中发芽的处理过的花粉粒形成的。氮离子通过蚀刻穿过花粉颗粒,穿透外壁和内壁,并破坏了花粉颗粒中的细胞结构。随着离子注入能量的增加,更多的花粉粒被破坏,花粉粒的发芽率和花粉管的数量和长度减少。还观察到花粉管中尖端聚焦的Ca2 +梯度和F-肌动蛋白的破坏作用。用20keV和30keV的氮离子处理导致花粉管中尖端聚焦的Ca2 +梯度消失,并影响了管的整个长度。花粉管的功能和结构对于授粉和受精的影响可能受花粉粒超微结构的变化以及用氮离子照射花粉粒后花粉管基因表达谱的影响。

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