Improvement of Seedling Establishment in Wet Direct Seeding of Rice using the Anaerobic Germination Tolerance Gene Derived from Weedy Photoblastic Rice

Jong‐Min Jeong, Y. Mo, Man-Kee Baek, Woo-Jae Kim, Young-chan Cho, Su-Kyung Ha, Jinhee Kim, J. Jeung, Suk‐Man Kim
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引用次数: 1

Abstract

Direct seeding is one of the rice seedling establishment methods that is increasingly being practiced by farmers to save labor and reduce costs. However, this method often causes poor germination under flooding conditions after sowing. In this study, we developed japonica elite lines with quantitative trait loci (QTL) associated with anaerobic germination (AG) tolerance to overcome poor germination and seedling establishment in wet direct seeding. The QTL introgression lines were developed from a cross between weedy photoblastic rice as the AG donor and the Nampyeong variety via phenotypic and genotypic selection. Compared to Nampyeong, the survival rates of the selected lines were improved by approximately 50% and 240% under field and greenhouse conditions, respectively. To improve selection efficiency by marker assisted selection, the QTL markers associated with AG tolerance were converted to cleaved amplified polymorphic sequence markers designed based on next-generation sequence analysis. These lines retained similar agronomic traits and yield potential to the parent, Nampyeong. Among these lines, we selected the most promising line, which exhibited high survival rate and good agricultural traits under flooding conditions and named the line as Jeonju643. This line will contribute to breeding programs aiming to develop rice cultivars adapted to wet direct seeding. This study demonstrates the successful application of marker-assisted selection to targeted introgression of anaerobic genes into a premium quality japonica rice variety.
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利用杂草光敏稻耐厌氧萌发基因改良水稻湿法直播成苗
直接播种是水稻育苗方法之一,为节约劳动力和降低成本,越来越多的农民采用这种育苗方法。然而,这种方法在播种后的洪水条件下往往导致发芽率差。本研究利用与厌氧萌发(AG)耐受性相关的数量性状位点(QTL)培育粳稻优良品系,以克服湿法直接播种中萌发差和成苗差的问题。通过表型和基因型选择,以禾草型光敏水稻为供体,与南平品种杂交获得QTL渐渗系。与南平相比,选育品系在田间和温室条件下的成活率分别提高了约50%和240%。为了提高标记辅助选择的选择效率,将与AG耐受性相关的QTL标记转化为基于下一代序列分析设计的裂解扩增多态性序列标记。这些品系保留了与亲本南平相似的农艺性状和产量潜力。在这些品系中,我们选择了在淹水条件下表现出高成活率和优良农业性状的最有前途的品系,并将其命名为全菊643。该品系将有助于培育适合湿法直接播种的水稻品种。本研究证明了标记辅助选择在厌氧基因定向渗入优质粳稻品种中的成功应用。
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