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Molecular Mapping of QTLs Associated with Lodging Resistance in Dry Direct-Seeded Rice (Oryza sativa L.)

机译:水稻干直播稻抗倒伏相关QTL的分子图谱研究

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摘要

Dry direct-seeded rice (DSR) is an alternative crop establishment method with less water and labor requirement through mechanization. It provides better opportunities for a second crop during the cropping season and therefore, a feasible alternative system to transplanted lowland rice. However, lodging is one of the major constraints in attaining high yield in DSR. Identification of QTLs for lodging resistance and their subsequent use in improving varieties under DSR will be an efficient breeding strategy to address the problem. In order to map the QTLs associated with lodging resistance, a set of 253 BC3F4 lines derived from a backcross between Swarna and Moroberekan were evaluated in two consecutive years. A total of 12 QTLs associated with lodging resistance traits [culm length (qCL), culm diameter (qCD), and culm strength (qCS)] were mapped on chromosomes 1, 2, 6, and 7 using 193 polymorphic SNP markers. Two major and consistent effect QTLs, namely qCD1.1 (with R2 of 10%) and qCS1.1 (with R2 of 14%) on chromosome 1 with id1003559 being the peak SNP marker (flanking markers; id1001973-id1006772) were identified as a common genomic region associated with important lodging resistance traits. In silico analysis revealed the presence of Gibberellic Acid 3 beta-hydroxylase along with 34 other putative candidate genes in the marker interval region of id1001973-id1006772. The positive alleles for culm length, culm diameter, and culm strength were contributed by the upland adaptive parent Moroberekan. Our results identified significant positive correlation between lodging related traits (culm length diameter and strength) and grain yield under DSR, indicating the role of lodging resistant traits in grain yield improvement under DSR. Deployment of the identified alleles influencing the culm strength and culm diameter in marker assisted introgression program may facilitate the lodging resistance under DSR.
机译:干式直播稻(DSR)是一种替代作物的种植方法,通过机械化可以减少水和劳动力的需求。在种植季节,它为第二季作物提供了更好的机会,因此,是低地水稻移植的可行替代系统。然而,倒伏是在DSR中获得高产量的主要限制之一。鉴定具有抗倒伏性的QTL及其随后在DSR下用于改良品种的QTL将是解决该问题的有效育种策略。为了绘制与抗倒伏性相关的QTL,在连续两年中评估了从Swarna和Moroberekan之间回交衍生的253条BC3F4品系。使用193个多态性SNP标记在染色体1、2、6和7上共绘制了12个与抗倒性相关的QTL [茎长度(qCL),茎直径(qCD)和茎强度(qCS)]。在ID1003559的1号染色体上有两个主要且一致的效应QTL,即qCD1.1(R 2 为10%)和qCS1.1(R 2 为14%) SNP峰标记(侧翼标记; id1001973-id1006772)被鉴定为与重要抗倒伏性状相关的常见基因组区域。在计算机分析中发现,在id1001973-id1006772的标记间隔区域中存在赤霉素3β-羟化酶以及34个其他推定的候选基因。茎长度,茎直径和茎强度的正等位基因由高地适应性亲本Moroberekan贡献。我们的研究结果表明,在DSR下倒伏相关性状(茎长直径和强度)与籽粒产量之间存在显着的正相关,表明在DSR下倒伏抗性特性在提高谷物产量中的作用。在标记辅助的渐渗程序中,已鉴定的等位基因的部署会影响茎杆强度和茎杆直径,这可能有助于DSR条件下的抗倒伏性。

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