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在充足氮肥条件下,过表达核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)的转基因水稻植株中,光合增强、寿命延长以及旗叶面积增大提高了产量。

Photosynthetic Enhancement, Lifespan Extension, and Leaf Area Enlargement in Flag Leaves Increased the Yield of Transgenic Rice Plants Overproducing Rubisco Under Sufficient N Fertilization.

作者信息

Tanaka Marin, Keira Mamoru, Yoon Dong-Kyung, Mae Tadahiko, Ishida Hiroyuki, Makino Amane, Ishiyama Keiki

机构信息

Graduate School of Agricultural Science, Tohoku University, 468-1 Aramaki-Aoba, Aoba-ku, Sendai, 980-8572, Japan.

出版信息

Rice (N Y). 2022 Feb 9;15(1):10. doi: 10.1186/s12284-022-00557-5.

Abstract

BACKGROUND

Improvement in photosynthesis is one of the most promising approaches to increase grain yields. Transgenic rice plants overproducing Rubisco by 30% (RBCS-sense rice plants) showed up to 28% increase in grain yields under sufficient nitrogen (N) fertilization using an isolated experimental paddy field (Yoon et al. in Nat Food 1:134-139, 2020). The plant N contents above-ground sections and Rubisco contents of the flag leaves were higher in the RBCS-sense plants than in the wild-type rice plants during the ripening period, which may be reasons for the increased yields. However, some imprecise points were left in the previous research, such as contributions of photosynthesis of leaves below the flag leaves to the yield, and maintenance duration of high photosynthesis of RBCS-sense rice plants during ripening periods.

RESULT

In this research, the photosynthetic capacity and canopy architecture were analyzed to explore factors for the increased yields of RBCS-sense rice plants. It was found that N had already been preferentially distributed into the flag leaves at the early ripening stage, contributing to maintaining higher Rubisco content levels in the enlarged flag leaves and extending the lifespan of the flag leaves of RBCS-sense rice plants throughout ripening periods under sufficient N fertilization. The higher amounts of Rubisco also improved the photosynthetic activity in the flag leaves throughout the ripening period. Although the enlarged flag leaves of the RBCS-sense rice plants occupied large spatial areas of the uppermost layer in the canopy, no significant prevention of light penetration to leaves below the flag leaves was observed. Additionally, since the CO assimilation rates of lower leaves between wild-type and RBCS-sense rice plants were the same at the early ripening stage, the lower leaves did not contribute to an increase in yields of the RBCS-sense rice plants.

CONCLUSION

We concluded that improvements in the photosynthetic capacity by higher leaf N and Rubisco contents, enlarged leaf area and extended lifespan of flag leaves led to an increase in grain yields of RBCS-sense rice plants grown under sufficient N fertilization.

摘要

背景

提高光合作用是提高粮食产量最具前景的方法之一。在使用隔离试验稻田并充分施氮的情况下,过量表达1,5-二磷酸核酮糖羧化酶(Rubisco)30%的转基因水稻植株(RBCS正义水稻植株)的谷物产量提高了28%(Yoon等人,《自然·食品》,2020年,第1卷,第134 - 139页)。在成熟期,RBCS正义植株地上部分的植物氮含量和旗叶的Rubisco含量高于野生型水稻植株,这可能是产量增加的原因。然而,先前的研究存在一些不精确之处,例如旗叶以下叶片的光合作用对产量的贡献,以及RBCS正义水稻植株在成熟期高光合作用的维持持续时间。

结果

在本研究中,分析了光合能力和冠层结构,以探究RBCS正义水稻植株产量增加的因素。研究发现,在充分施氮的情况下,氮在早熟期已优先分配到旗叶中,这有助于在整个成熟期维持RBCS正义水稻植株扩大的旗叶中较高的Rubisco含量水平,并延长旗叶的寿命。较高的Rubisco含量也在整个成熟期提高了旗叶的光合活性。尽管RBCS正义水稻植株扩大的旗叶占据了冠层最上层的较大空间区域,但未观察到对旗叶以下叶片的光穿透有显著阻碍。此外,由于在早熟期野生型和RBCS正义水稻植株下部叶片的CO2同化率相同,下部叶片对RBCS正义水稻植株的产量增加没有贡献。

结论

我们得出结论,在充分施氮条件下生长的RBCS正义水稻植株,通过较高的叶片氮和Rubisco含量、扩大的叶面积以及延长的旗叶寿命来提高光合能力,从而导致谷物产量增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9537/8828814/0054c19f5e6b/12284_2022_557_Fig1_HTML.jpg

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