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两个影响水稻(Oryza sativa L.)收获指数并有助于高产的新数量性状位点。

Two Novel QTLs for the Harvest Index that Contribute to High-Yield Production in Rice (Oryza sativa L.).

作者信息

Saito Hiroki, Fukuta Yoshimichi, Obara Mitsuhiro, Tomita Asami, Ishimaru Tsutomu, Sasaki Kazuhiro, Fujita Daisuke, Kobayashi Nobuya

机构信息

Tropical Agriculture Research Front (TARF), Japan International Research Center for Agricultural Sciences (JIRCAS), Okinawa, 907-0002, Japan.

Japan International Research Center for Agricultural Sciences (JIRCAS), Ibaraki, 305-8686, Japan.

出版信息

Rice (N Y). 2021 Feb 10;14(1):18. doi: 10.1186/s12284-021-00456-1.

Abstract

BACKGROUND

The harvest index (HI) is a measure of the biological success of forming harvestable products. However, our understanding of the genetic basis of HI in rice (Oryza sativa L.) is limited, because it is a complex trait consisting of various yield-related traits and physiological attributes. YTH183 is a high-yielding line with large panicles and high HI derived from a cross between the Indica Group variety IR 64 and the NPT line IR 69093-41-2-3-2 (YP5).

RESULTS

Here, we detected two novel QTLs for HI, designated qHI5.1 on chromosome 5 and qHI8.1 on chromosome 8, by using 155 recombinant inbred lines (RILs) derived from the cross between IR 64 and YTH183. The YTH183 allele at qHI5.1 contributed to a wide grain, resulting in heavy grain weight and panicle weight, and was consistently effective under the different environmental conditions of subtropical (Ishigaki) and temperate (Tsukuba) regions. Genetic polymorphism revealed that qHI5.1 was identical to GSE5/GW5, which is known to control the grain weight. On the other hand, although qHI8.1 functioned additively with qHI5.1 for higher HI, it did not show any significant effect on grain or panicle weight. In addition, its effects on HI were shown only in the first seasons at Ishigaki but not at Tsukuba or in the second season at Ishigaki.

CONCLUSION

Our results indicate that qHI5.1 controls the grain size, regardless of whether environmental conditions are of subtropical or temperate regions, while qHI8.1 might be involved in controlling the physiological processes of source ability or the translocation of photosynthesis products from vegetative organs to grains depending on environmental conditions during the maturing stage. These QTLs will be useful genetic resources for future breeding programs to break through the ceiling of maximum yield in Indica Group varieties.

摘要

背景

收获指数(HI)是衡量形成可收获产品生物学成功程度的指标。然而,我们对水稻(Oryza sativa L.)中HI的遗传基础了解有限,因为它是一个由各种产量相关性状和生理特性组成的复杂性状。YTH183是一个高产株系,具有大穗和高收获指数,它源自籼稻品种IR 64与NPT株系IR 69093 - 41 - 2 - 3 - 2(YP5)的杂交。

结果

在此,我们通过使用由IR 64与YTH183杂交产生的155个重组自交系(RIL),检测到两个新的HI相关QTL,分别命名为位于第5染色体上的qHI5.1和位于第8染色体上的qHI8.1。qHI5.1处的YTH183等位基因导致谷粒宽大,从而使粒重和穗重增加,并且在亚热带(石垣岛)和温带(筑波)地区的不同环境条件下均持续有效。遗传多态性分析表明,qHI5.1与已知控制粒重的GSE5/GW5相同。另一方面,虽然qHI8.1与qHI5.1对更高的HI具有加性作用,但它对粒重或穗重没有任何显著影响。此外,它对HI的影响仅在石垣岛的第一季表现出来,而在筑波或石垣岛的第二季未表现出影响。

结论

我们的结果表明,qHI5.1控制粒大小,无论环境条件是亚热带还是温带地区,而qHI8.1可能参与控制源能力的生理过程或在成熟阶段根据环境条件控制光合产物从营养器官向谷粒的转运。这些QTL将是未来育种计划中突破籼稻品种最大产量上限的有用遗传资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d048/7876197/0b3fb109329e/12284_2021_456_Fig1_HTML.jpg

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