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γ射线辐照对红豆草(Onobrychis viciifolia Scop.)的植物化学特性、有丝分裂行为及营养成分的刺激作用。

Stimulatory effects of gamma irradiation on phytochemical properties, mitotic behaviour, and nutritional composition of sainfoin (Onobrychis viciifolia Scop.).

作者信息

Mohajer Sadegh, Taha Rosna Mat, Lay Ma Ma, Esmaeili Arash Khorasani, Khalili Mahsa

机构信息

Institute of Biological Sciences, Faculty of Science, University of Malaya, 50603 Kuala Lumpur, Malaysia.

Department of Analytical Chemistry, Chemistry and Chemical Engineering Research Center, Tehran 14968-13151, Iran.

出版信息

ScientificWorldJournal. 2014;2014:854093. doi: 10.1155/2014/854093. Epub 2014 Jul 23.

Abstract

Sainfoin (Onobrychis viciifolia Scop. Syn. Onobrychis sativa L.) is a bloat-safe forage crop with high levels of tannins, which is renowned for its medicinal qualities in grazing animals. Mutagenesis technique was applied to investigate the influence of gamma irradiation at 30, 60, 90, and 120 Gy on mitotic behavior, in vitro growth factors, phytochemical and nutritional constituents of sainfoin. Although a percentage of plant necrosis and non-growing seed were enhanced by irradiation increment, the germination speed was significantly decreased. It was observed that gamma irradiated seeds had higher value of crude protein and dry matter digestibility compared to control seeds. Toxicity of copper was reduced in sainfoin irradiated seeds at different doses of gamma rays. Anthocyanin content also decreased in inverse proportion to irradiation intensity. Accumulation of phenolic and flavonoid compounds was enhanced by gamma irradiation exposure in leaf cells. HPLC profiles differed in peak areas of the two important alkaloids, Berberine and Sanguinarine, in 120 Gy irradiated seeds compared to control seeds. There were positive correlations between irradiation dose and some abnormality divisions such as laggard chromosome, micronucleus, binucleated cells, chromosome bridge, and cytomixis. In reality, radiocytological evaluation was proven to be essential in deducing the effectiveness of gamma irradiation to induce somaclonal variation in sainfoin.

摘要

红豆草(红豆草属红豆草种,学名Onobrychis viciifolia Scop. 同义词Onobrychis sativa L.)是一种含高单宁的抗膨胀性饲用作物,以其对放牧动物的药用特性而闻名。应用诱变技术研究了30、60、90和120戈瑞的γ射线辐照对红豆草有丝分裂行为、体外生长因子、植物化学和营养成分的影响。尽管随着辐照剂量增加,植物坏死和种子不生长的比例有所增加,但发芽速度显著降低。观察到γ射线辐照种子的粗蛋白和干物质消化率值高于对照种子。不同剂量γ射线辐照的红豆草种子中铜的毒性降低。花青素含量也与辐照强度成反比下降。γ射线辐照使叶片细胞中酚类和黄酮类化合物的积累增加。与对照种子相比,120戈瑞辐照种子中两种重要生物碱小檗碱和血根碱的高效液相色谱图谱峰面积不同。辐照剂量与一些异常分裂如落后染色体、微核、双核细胞、染色体桥和细胞融合之间存在正相关。实际上,放射细胞学评估被证明对于推断γ射线辐照诱导红豆草体细胞克隆变异的有效性至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb02/4132327/f0f7c9760d6a/TSWJ2014-854093.001.jpg

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