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通过在水稻中的表达分析评估 γ-射线诱变在株高和成熟天数方面的功效。

Assessment of efficacy of mutagenesis of gamma-irradiation in plant height and days to maturity through expression analysis in rice.

机构信息

Department of Plant Breeding and Genetics, Agricultural College and Research Institute, Tamil Nadu Agricultural University, Killikulam, Tuticorin, Tamil Nadu, India.

Visiting Scientist (SERB-National Post-Doctoral Fellow), IRRI-South Asia Hub, ICRISAT, Patancheru, Hyderabad, India.

出版信息

PLoS One. 2021 Jan 15;16(1):e0245603. doi: 10.1371/journal.pone.0245603. eCollection 2021.

Abstract

Introduction of semi-dwarfism and early maturity in rice cultivars is important to achieve improved plant architecture, lodging resistance and high yield. Gamma rays induced mutations are routinely used to achieve these traits. We report the development of a semi-dwarf, early maturing and high-yielding mutant of rice cultivar 'Improved White Ponni', a popular cosmopolitan variety in south India preferred for its superior grain quality traits. Through gamma rays induced mutagenesis, several mutants were developed and subjected to selection up to six generations (M6) until the superior mutants were stabilized. In the M6 generation, significant reduction in days to flowering (up to 11.81% reduction) and plant height (up to 40% reduction) combined with an increase in single plant yield (up to 45.73% increase) was observed in the mutant population. The cooking quality traits viz., linear elongation ratio, breadthwise expansion ratio, gel consistency and gelatinization temperature of the mutants were similar to the parent variety Improved White Ponni. The genetic characterization with SSR markers showed variability between the semi-dwarf-early mutants and the Improved White Ponni. Gibberellin responsiveness study and quantitative real-time PCR showed a faulty gibberellin pathway and epistatic control between the genes such as OsKOL4 and OsBRD2 causing semi-dwarfism in a mutant. These mutants have potential as new rice varieties and can be used as new sources of semi-dwarfism and earliness for improving high grain quality rice varieties.

摘要

半矮化和早熟在水稻品种中的引入对于实现改良的植株结构、抗倒伏性和高产非常重要。伽马射线诱导突变通常用于实现这些特性。我们报告了一种半矮化、早熟和高产的水稻品种“改良白蓬尼”突变体的开发,该品种是印度南部流行的世界性品种,因其优良的谷物品质特性而受到青睐。通过伽马射线诱导诱变,开发了几种突变体,并进行了多达六代(M6)的选择,直到优良的突变体得到稳定。在 M6 代,突变体群体中观察到开花时间(最多减少 11.81%)和株高(最多减少 40%)的显著减少,同时单株产量(最多增加 45.73%)增加。突变体的烹饪品质特性,如线性伸长率、横向膨胀率、凝胶稳定性和胶凝温度,与亲本品种改良白蓬尼相似。SSR 标记的遗传特征表明,半矮化-早期突变体与改良白蓬尼之间存在可变性。赤霉素反应性研究和定量实时 PCR 表明,突变体中的赤霉素途径存在缺陷,以及 OsKOL4 和 OsBRD2 等基因之间的上位性控制,导致突变体出现半矮化。这些突变体具有作为新水稻品种的潜力,可作为改良高谷物品质水稻品种的半矮化和早熟的新来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c785/7810314/1ef07accb13f/pone.0245603.g001.jpg

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