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Effects of nanoparticle treatments on propagation of Prunus mahaleb L. by seed
germination percentage growth characteristics proline relative water content seed dormancy survival
2018/3/6
We examined the effects of nanoparticles (NPs) of TiO2 and ZnO at 0.5, 1, 2 or 3% concentrations for 10, 20, and
30 min in stratified seeds of Prunus mahaleb Linnaeus. Then, seedlings produced were i...
Vegetative propagation of Cherry laurel (Prunus laurocerasus L.) using semi-hardwood cuttings
Prunus laurocerasus L. vegetative propagation rooting Indol-3-butyric acid
2011/1/13
This study was conducted to investigate the effects of different IBA doses on rooting capacity of Cherry laurel (Prunus laurocerasus L.) types in greenhouse conditions under mist propagation unit in 2...
Cultivar Identification and Genetic Fingerprinting of Some Apricot (Prunus armeniaca) Cultivars Using Biochemical and Molecular Markers
Apricot genetic fingerprint RAPD SSR markers
2010/11/15
DNA fingerprinting proved to be very important in the case of rootstocks since it is difficult
to distinguish little morphological differences among them. In the present study the genetic polymorphis...
Identification of the S-genotypes of several sweet cherry (Prunus avium L.) cultivars by AS-PCR and pollination
Self-incompatibility Prunus avium S-RNase AS-PCR pollination test
2011/1/10
Comparison of Yield,Dry Matter Distribution and Trunk Cross-Sectional Area of 15 Peach Cultivars Grafted onto Prunus tomentosa Thunb. Rootstocks
Dry Matter Distribution Trunk Cross Peach Cultivars Rootstocks
2009/7/13
To find peach scion cultivars that are productive and compatible with Prunus tomentosa rootstocks, yield, dry matter distribution and trunk cross sectional area were examined using 15 cultivars of sev...
In Vitro Propagation of Mature Japanese Apricot (Prunus mume Sieb. et Zucc.)
Japanese Apricot Propagation Root formation plantlets
2009/7/13
Winter buds taken from mature trees of Japanese Apricot (Prunus mume Sieb. et Zucc.) were successfully established in culture on woody plant (WP) agar medium supplemented with 4.4 μM benzyladenine (BA...
Interspecific Crossing between Sweet Cherry (Prunus avium L.) and Ornamental Cherry (Prunus × yedoensis Matsum.)
cross compatibility embryo culture interspecific hybrid morphological traits RAPD-analysis
2009/7/9
This report illustrates interspecific crossings between 7 cultivars of sweet cherries (P. avium L.) and 1 cultivar of ornamental cherry (P. × yedoensis Matsum.). Our objective is to obtain hybrids tha...
我们在以前的研究中克隆了2个桃MADS box 基因, PpMADS4和PpMADS6, 它们分别为AGAMOUS (AG)和FRUITFULL (FUL)的同源基因, 本研究把它们进一步转入拟南芥中分析它们的功能. 转基因结果表明, 这2个基因都能导致拟南芥早花, 二级花序减少, 出现顶端花, 但PpMADS4与PpMADS6对拟南芥花器官有截然不同的影响. PpMADS4引起转基因植株花器官同...
甜樱桃 (Prunus avium)品种 S基因型鉴定
甜樱桃 自交不亲和 S-RNase基因(S 基因 ) S基因型
2008/1/25
摘要 根据蔷薇科S-RNase基因(S基因)高度保守区C2 和RC4区设计一对特异引物PruC2 和PruC4R,对甜樱桃品种的基因组DNA进行S基因特异PCR扩增。克隆S基因的扩增片段,核酸序列在GenBank 上搜索,确定了4种S基因扩增片段的核酸序列和大小。结果表明,在琼脂糖凝胶上位置相同的扩增带其核酸序列相同,是同一种S基因。4种S基因扩增片段的大小分别是: S1 为 677 bp, S...
In vitro rooting of PR 204/84 rootstock (Prunus persica x P. amygdalus) as influenced by mineral concentration of the culture medium and exposure to darkness for a period
adventitious roots indole-3-butyric acid irradiance Prunus micropropagation rhizogenesis
2010/1/13
Reduction of the mineral concentration of MS medium to half the normal value increased the rooting percentage of PR 204/84 explants when IBA concentration was 2.5 μM, and mean root number when IBA con...