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γ射线辐照处理的组织学和生理学效应。

Histological and Physiological Effects of Treatment of with Gamma Radiation.

作者信息

Kisvarga Szilvia, Hamar-Farkas Dóra, Horotán Katalin, Solti Ádám, Simon Edina, Ördögh Máté, Neményi András, Boronkay Gábor, Orlóci László

机构信息

Ornamental Plant and Green System Management Research Group, Institute of Landscape Architecture, Urban Planning and Garden Art, Hungarian University of Agriculture and Life Sciences (MATE), 1223 Budapest, Hungary.

Department of Floriculture and Dendrology, Institute of Landscape Architecture, Urban Planning and Garden Art, Hungarian University of Agriculture and Life Sciences (MATE), 1223 Budapest, Hungary.

出版信息

Plants (Basel). 2023 Jun 8;12(12):2245. doi: 10.3390/plants12122245.

Abstract

The breeding of resistant, high-yield, decorative ornamental plant varieties may be impacted by climate change in the future. The use of radiation induces mutations in plants, thereby increasing the genetic variability of plant species. has long been a very popular species in urban green space management. The goal is to examine whether gamma mutation breeding can be applied to the breeding stock. Specifically, differences were measured between the M1 and M2 generations, as well as the effect of different radiation doses belonging to the same generation. Morphological measurements showed that gamma radiation has an effect on the measured parameters in several cases (larger crop size, faster development, larger number of trichomes). Physiological measurements (examination of chlorophyll and carotenoid content, POD activity, and APTI) also showed a beneficial effect of radiation, especially at higher doses (30 Gy), for both tested generations. The treatment was also effective in the case of 45 Gy, but this radiation dose resulted in lower physiological data. The measurements show that gamma radiation has an effect on the strain and may play a role in breeding in the future.

摘要

抗性强、高产、观赏性佳的观赏植物品种的培育未来可能会受到气候变化的影响。利用辐射诱导植物发生突变,从而增加植物物种的遗传变异性。长期以来,它一直是城市绿地管理中非常受欢迎的物种。目标是研究伽马诱变育种是否可应用于种畜。具体而言,测量了M1和M2代之间的差异,以及同一代不同辐射剂量的影响。形态学测量表明,伽马辐射在几种情况下对所测量参数有影响(作物尺寸更大、发育更快、毛状体数量更多)。生理测量(叶绿素和类胡萝卜素含量、POD活性和APTI检测)也表明辐射具有有益效果,尤其是对于两个受试代别而言,在较高剂量(30 Gy)时效果更佳。45 Gy的处理也有效,但该辐射剂量导致生理数据较低。测量结果表明,伽马辐射对该菌株有影响,未来可能在育种中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0fb/10301621/17027c789a75/plants-12-02245-g001.jpg

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