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将吸收较长波长的叶绿素添加到作物中,可以使其光合生产力提高26%。

Addition of longer wavelength absorbing chlorophylls into crops could increase their photosynthetic productivity by 26.

作者信息

Wang Yu, Oliver Thomas J, Croce Roberta, Long Stephen P

机构信息

School of Life Sciences, Nanjing University, Nanjing, Jiangsu, China.

Carl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign, Urbana, IL, USA.

出版信息

Nat Commun. 2025 Aug 26;16(1):7933. doi: 10.1038/s41467-025-62885-6.

Abstract

Crop leaves absorb approximately 90% of visible photons (400 - 700 nm) but transmit or reflect most far-red (FR) photons (700 - 800 nm). However, some cyanobacteria use FR photons up to 800 nm by incorporating chlorophyll (Chl) d or/and f into their photosystems. Here, we use a 3D canopy model to evaluate whether introducing these pigments could improve photosynthetic performance of field grown soybean. We simulate photon absorption and CO assimilation show that the introduction of Chl d and f would significantly enhance photosynthesis, especially in the lower canopy, where visible light is depleted and FR light is abundant. When FR absorption is regulated by phytochrome-sensed FR/red (FR/R) photon ratio, the benefit is further increased, with canopy CO assimilation improving up to 26%, without increasing the risk of photodamage. These results show that introducing FR-absorbing Chls into crops could have great value in boosting productivity.

摘要

作物叶片吸收大约90%的可见光光子(400 - 700纳米),但透射或反射大部分远红光(FR)光子(700 - 800纳米)。然而,一些蓝细菌通过将叶绿素(Chl)d或/和f纳入其光系统来利用高达800纳米的FR光子。在这里,我们使用三维冠层模型来评估引入这些色素是否可以提高田间种植大豆的光合性能。我们模拟光子吸收和CO同化表明,引入Chl d和f将显著增强光合作用,特别是在冠层下部,那里可见光匮乏而FR光丰富。当FR吸收受光敏色素感知的FR/红光(FR/R)光子比率调节时,益处进一步增加,冠层CO同化提高多达26%,而不会增加光损伤风险。这些结果表明,将吸收FR的叶绿素引入作物对提高生产力可能具有巨大价值。

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