Institute of Biotechnology, Acharya NG Ranga Agricultural University, Rajendranagar, Hyderabad, Andhra Pradesh, 500030, India.
Indian Institute of Rice Research, Rajendranagar, Hyderabad, Andhra Pradesh, 500030, India.
Plant Cell Rep. 2018 Apr;37(4):677-687. doi: 10.1007/s00299-018-2260-2. Epub 2018 Jan 31.
A major dwarfing region for plant height, asd1, was identified employing the next-generation sequencing-based QTL-Seq approach from a dwarf mutant and is demonstrated to be responsible for the dwarf nature with least penalty on yield in rice. The yield plateauing of modern rice is witnessed since many decades due to the narrow genetic base owing to the usage of a single recessive gene, i.e., semi-dwarf-1 (sd-1) for development of short-statured varieties throughout the world. This calls for the searching of alternate sources for short stature in rice. To this end, we made an attempt to uncover yet another, but valuable dwarfing gene employing next-generation sequencing (NGS)-based QTL-Seq approach. Here, we have identified a major QTL governing plant height on chromosome 1, i.e., alternate semi-dwarf 1 (asd1) from an F mapping population derived from a cross between a dwarf mutant, LND384, and a tall landrace, INRC10192. Fine mapping of asd1 region employing sequence-based indel markers delimited the QTL region to 67.51 Kb. The sequencing of the QTL region and gene expression analysis predicted a gene that codes for IWS1 (C-terminus family protein). Furthermore, marker-assisted introgression of the asd1 into tall landrace, INRC10192, reduced its plant height substantially while least affecting the yield and its component traits. Hence, this novel dwarfing gene, asd1, has profound implications in rice breeding.
一个主要的矮化区域为株高,asd1,通过利用基于下一代测序的 QTL-Seq 方法从一个矮化突变体中鉴定出来,被证明是负责矮化性质的,对水稻产量的影响最小。由于遗传基础狭窄,由于单一隐性基因(即半矮化基因 1(sd-1))的使用,现代水稻的产量已经停滞不前了几十年,这种情况在全世界都用于培育矮化品种。这就需要在水稻中寻找替代的矮化基因。为此,我们试图利用基于下一代测序(NGS)的 QTL-Seq 方法来揭示另一个有价值的矮化基因。在这里,我们已经在染色体 1 上鉴定出一个主要的控制株高的 QTL,即替代半矮化基因 1(asd1),它来自一个由矮化突变体 LND384 和一个高秆地方品种 INRC10192 杂交而成的 F 作图群体。利用基于序列的插入缺失标记对 asd1 区域进行精细定位,将 QTL 区域限定在 67.51 Kb 内。对 QTL 区域的测序和基因表达分析预测了一个编码 IWS1(C 端家族蛋白)的基因。此外,将 asd1 基因通过标记辅助导入高秆地方品种 INRC10192 中,大大降低了其株高,而对产量及其组成性状的影响最小。因此,这个新的矮化基因 asd1 在水稻育种中具有深远的意义。