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首页> 外文期刊>Cytology and genetics >Pleiotropic effects of gibberellin-sensitive and giberrellin-insensitive dwarfing genes in bread wheat of the southern step region of the Black Sea
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Pleiotropic effects of gibberellin-sensitive and giberrellin-insensitive dwarfing genes in bread wheat of the southern step region of the Black Sea

机译:赤霉素敏感和赤霉素不敏感的矮化基因在黑海南部阶地面包小麦中的多效性效应

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Investigation of the pleiotropic effects of GA-sensitive (Rht8) and GA-insensitive (Rht-B1 and Rht-D1) winter bread wheat dwarfing genes and the gene that determines the response of plants to photoperiod-Ppd-D1-were carried out for 3 years in the southern step region of the Black Sea bank on five different genetic backgrounds. It is shown that, in addition to direct effects on plant height, GA-sensitive and GA-insensitive dwarfing genes have pleiotropic effects on all studied traits except the number of fertile spikelets. Presence of the dwarfing genes in the genotype of tall forms led to the decrease of stem and ear length, and, at the same time, to the increase of ear density. The number of spikelets per spike decreased due to sterile spikelets, whereas the number of fertile spikelets did not change. There was a significant increase in the number of grains per ear as a result of increasing of spikelets in ears. The number and weight of grains did not decrease, even though the plants were characterized by a smaller number of productive tillers. The presence of Rht8x allele on genetic background of variety Stepnyak resulted in a significant decrease of plants productivity. However, in combination with Ppd-D1a allele, plants with Rht8x increased the potential productivity and surpassed the parental form (Rht8x Ppd-D1a). The presence of Rht-Ble allele resulted in reduction of weight of kernels from the main ear and 1000-kernels weight, increase of l/h, and left the number of seeds per spikelet stable in comparison with Rht8x.
机译:对GA敏感(Rht8)和GA不敏感(Rht-B1和Rht-D1)冬小麦矮化基因以及决定植物对光周期-Ppd-D1-反应的基因进行了多效性研究。在五种不同的遗传背景下,在黑海银行南段地区生活了3年。结果表明,除对株高的直接影响外,对GA敏感和对GA不敏感的矮化基因对所有研究性状均具有多效性,但可育小穗的数量除外。高大体型的基因型中矮化基因的存在导致茎和耳长的减少,同时导致耳朵密度的增加。由于无菌小穗,每个小穗的小穗数量减少,而可育小穗的数量没有变化。由于耳朵中小穗的增加,每只耳朵的谷物数量显着增加。即使植物的特征在于少量的生产分smaller,谷物的数量和重量也没有减少。 Rht8x等位基因在Stepnyak品种遗传背景中的存在导致植物生产力显着下降。但是,与Ppd-D1a等位基因结合,具有Rht8x的植物提高了潜在生产力,并超过了亲本形式(Rht8x Ppd-D1a)。与Rht8x相比,Rht-Ble等位基因的存在导致主穗粒重减少和1000粒重,l / h增加,并且每个小穗的种子数保持稳定。

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