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补充发光二极管间歇光照通过提高光合光利用效率和调节根系活性促进番茄果实生长。

Supplemental Light-Emitting Diode Inter-Lighting Increases Tomato Fruit Growth Through Enhanced Photosynthetic Light Use Efficiency and Modulated Root Activity.

作者信息

Paponov Martina, Kechasov Dmitry, Lacek Jozef, Verheul Michel J, Paponov Ivan A

机构信息

Division of Food Production and Society, Norwegian Institute of Bioeconomy Research (NIBIO), Ås, Norway.

Institute of Experimental Botany, Czech Academy of Sciences, Prague, Czechia.

出版信息

Front Plant Sci. 2020 Jan 10;10:1656. doi: 10.3389/fpls.2019.01656. eCollection 2019.

Abstract

We investigated the effect of supplemental LED inter-lighting (80% red, 20% blue; 70 W m; light period 04:00-22:00) on the productivity and physiological traits of tomato plants (Flavance F1) grown in an industrial greenhouse with high pressure sodium (HPS) lamps (235 W m, 420 µmol m s at canopy). Physiological trait measurements included diurnal photosynthesis and fruit relative growth rates, fruit weight at specific positions in the truss, root pressure, xylem sap hormone and ion compositions, and fruit quality. In the control treatment with HPS lamps alone, the ratio of far-red to red light (FR:R) was 1.2 at the top of the canopy and increased to 5.4 at the bottom. The supplemental LED inter-lighting decreased the FR:R ratio at the middle and low positions in the canopy and was associated with greener leaves and higher photosynthetic light use efficiency (PLUE) in the leaves in the lower canopy. The use of LED inter-lighting increased the biomass and yield by increasing the fruit weight and enhancing plant growth. The PLUE of plants receiving supplemental LED light decreased at the end of the light period, indicating that photosynthesis of the supplemented plants at the end of the day might be limited by sink capacity. The supplemental LED lighting increased the size of fruits in the middle and distal positions of the truss, resulting in a more even size for each fruit in the truss. Diurnal analysis of fruit growth showed that fruits grew more quickly during the night on the plants receiving LED light than on unsupplemented control plants. This faster fruit growth during the night was related to an increased root pressure. The LED treatment also increased the xylem levels of the phytohormone jasmonate. Supplemental LED inter-lighting increased tomato fruit weight without affecting the total soluble solid contents in fruits by increasing the total assimilates available for fruit growth and by enhancing root activity through an increase in root pressure and water supply to support fruit growth during the night.

摘要

我们研究了补充LED补光(80%红光、20%蓝光;70 W/m²;光照时段为04:00 - 22:00)对在配备高压钠灯(HPS)(235 W/m²,冠层处420 μmol/m²·s)的工业温室中种植的番茄植株(Flavance F1)的生产力和生理特性的影响。生理特性测量包括昼夜光合作用和果实相对生长速率、果穗中特定位置的果实重量、根压、木质部汁液激素和离子成分以及果实品质。在仅使用HPS灯的对照处理中,冠层顶部远红光与红光的比例(FR:R)为1.2,在底部增加到5.4。补充LED补光降低了冠层中部和下部位置的FR:R比例,并与下部冠层叶片更绿以及更高的光合光利用效率(PLUE)相关。使用LED补光通过增加果实重量和促进植株生长提高了生物量和产量。接受补充LED光的植株在光照时段结束时PLUE下降,表明补充光照的植株在一天结束时的光合作用可能受到库容量的限制。补充LED补光增加了果穗中部和远端位置果实的大小,使果穗中每个果实的大小更加均匀。果实生长的昼夜分析表明,接受LED光的植株上的果实夜间生长速度比未补充光照的对照植株更快。夜间果实这种更快的生长与根压增加有关。LED处理还增加了植物激素茉莉酸在木质部中的水平。补充LED补光通过增加可用于果实生长的总同化物,并通过增加根压和水分供应来增强根系活性以支持夜间果实生长,从而增加了番茄果实重量,而不影响果实中的总可溶性固形物含量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c284/6965351/20a7c8b48e8d/fpls-10-01656-g001.jpg

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