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首页> 外文期刊>Bangladesh Journal of Scientific and Industrial Research >Effect of mutagenic agents on seed germination and vegetative growth of mustard (Brassica rapa)
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Effect of mutagenic agents on seed germination and vegetative growth of mustard (Brassica rapa)

机译:诱变剂对芥菜种子萌发和营养生长的影响

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The experiment was conducted to study the effect of mutagens (physical and chemical) on seed germination along with root and shoot lengths of two locally collected varieties of Brassica rapa denoted as variety-1 and variety-2 in in vitro condition. Seeds were treated with various concentrations of mutagenic agents; physical (gamma radiation), chemical (sodium azide) and combined (gamma radiation + sodium azide). The doses of gamma radiation were 100Gy and 200Gy, sodium azide concentrations were 100, 300 and 500ppm and for combination, 100Gy and 200Gy gamma irradiated seeds were further treated with 100, 300 and 500ppm sodium azide solution. After 7 days observation, 100% seed germination obtained from 100Gy gamma irradiated seeds of variety-1 and 500ppm sodium azide treated seeds of variety- 2. 100% seed germination was also found in 7 days in physical and chemical mutagen combinedly treated seeds of variety-1 from 100Gy gamma radiation + 100ppm sodium azide, 100Gy gamma radiation + 300ppm sodium azide and 200Gy gamma radiation + 100ppm sodium azide and in variety-2, from 100Gy gamma radiation + 500ppm sodium azide and 200Gy gamma radiation + 500ppm sodium azide. Maximum increased root length (avg. 3.8cm) was obtained from variety-1 combined treated (200Gy gamma radiation + 300ppm sodium azide) seeds and minimum decreased root length (avg. 1.0cm) was from variety-2 combined treated (100Gy gamma radiation + 100ppm sodium azide) seeds. Maximum increased shoot length (avg. 4.7cm) was obtained from variety-1 combined treated (200Gy gamma radiation + 100ppm sodium azide) seeds and minimum decreased shoot length (avg. 1.4cm) was obtained from variety-2 combined treated (100Gy gamma radiation + 100ppm sodium azide) seeds. DOI: http://dx.doi.org/10.3329/bjsir.v48i4.18274 Bangladesh J. Sci. Ind. Res. 48(4), 253-256, 2013
机译:进行了该实验,以研究诱变剂(物理和化学)对种子萌发的影响,以及在体外条件下两个本地采集的甘蓝型油菜品种品种1和品种2的根和茎长。用各种浓度的诱变剂处理种子;物理(伽马射线辐射),化学(叠氮化钠)和混合(伽马射线+叠氮化钠)。 γ射线的剂量分别为100Gy和200Gy,叠氮化钠的浓度分别为100、300和500ppm,并结合使用100、300和500ppm的叠氮化钠溶液进一步处理100Gy和200Gyγ射线辐照的种子。观察7天后,从1号品种的100Gyγ射线辐照种子和2号品种的500ppm叠氮化钠处理过的种子中获得100%种子发芽,在7天的物理和化学诱变联合处理过的各种种子中也发现了100%种子发芽。 -1从100Gy伽马射线+ 100ppm叠氮化钠,100Gy伽马射线+ 300ppm叠氮化钠和200Gy伽马射线+ 100ppm叠氮化钠开始;在第2种中,从100Gy伽马射线+ 500ppm叠氮化钠和200Gy伽马射线+ 500ppm叠氮化钠开始。从品种1联合处理(200Gyγ射线+ 300ppm叠氮化钠)种子获得的最大根长增加(平均3.8cm),从品种2联合处理(100Gyγ射线)获得的最小根长减少(平均1.0cm) + 100ppm叠氮化钠)种子。从品种1联合处理(200Gyγ射线+ 100ppm叠氮化钠)种子中获得最大的芽长(平均4.7cm),从品种2联合处理(100Gyγ)获得最小的芽长(平均1.4cm)。辐射+ 100ppm叠氮化钠)种子。 DOI:http://dx.doi.org/10.3329/bjsir.v48i4.18274 Bangladesh J. Sci。工业研究48(4),253-256,2013

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