水稻矮杆小粒突变体 dsg7 的图位克隆
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江苏徐淮地区淮阴农业科学研究所

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淮安市自然科学研究计划(HAB201719); 淮安市农业科学研究院院长科研(HNY201702);江苏省环洪泽湖生态农业生物技术重点实验室自主研发课题项目(17HZHL009)


Map-based Cloning of Dwarf and Small Grain Mutant dsg7 in Rice
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Huaiyin Institute of Agricultural Sciences in Xuhuai Region of Jiangsu

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Key Project of Huaian City Science and Technology (HAB201719);Dean’s Foundation of Huaian Academy of Agricultural Sciences(HNY201702);Independent Research and Development Project of Jiangsu Key Laboratory for Eco-Agricultural Biotechnology around Hongze Lake(17HZHL009)

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    摘要:

    水稻是世界上最重要的作物之一,株高是决定水稻产量的重要因素,不断发掘新的水稻株高调控基因,阐明水稻株高调控机理具有重要的意义。本研究中我们在Kitaake的EMS (甲基磺酸乙酯)诱变后代中筛选到一个矮杆小粒突变体dsg7,与Kitaake相比,dsg7株高变矮,千粒重下降。通过叶鞘切片观察证实,由于细胞数目减少导致小粒表型的出现。利用图位克隆,将DSG7定位到第七染色体长臂237kb的区间内,经过生物信息学分析和测序证实Os07g0616000为突变基因,编码一个植物中广泛存在的蛋白。本研究证实DSG7参与水稻株高发育调控,为阐明水稻株高调控提供新的理论基础,有助于水稻株高发育分子机制的进一步阐释。

    Abstract:

    Plant height is an important agronomic trait that determines the grain yield of rice, which is one of the most important food crops worldwide. However, the molecular mechanism underlying rice height remained further investigated. In this study, we characterized a rice dwarf and small grain mutant designated dsg7 (dwarf and small grain 7) from Kitaake with seed treated by ethyl methane sulfonate (EMS). Compared with Kitaake, dsg7 showed 22% and 21% reduction on the plant height and 1000-grain weight. Histological observations showed that the dwarf phenotype was mainly due to a defect in cell proliferation. By deploying the map-based cloning strategy, the gene was finally mapped between markers DM6 and DM8 on chromosome 7, with a physical distance of 237 kb. One base pair deletion of Os07g0616000 was found, and this gene served as the best candidate. Thus, this result suggested that DSG7 might be essential for plant height development in rice and its biological function remained to be investigated in the future.

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王迪,王健,李刚,等.水稻矮杆小粒突变体 dsg7 的图位克隆[J].植物遗传资源学报,2019,20(5):1247-1254.

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  • 收稿日期:2018-12-19
  • 最后修改日期:2019-06-13
  • 录用日期:2019-03-01
  • 在线发布日期: 2019-09-17
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