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Sprout Growth Inhibition and Photomorphogenic Development of Potato Seed Tubers (Solanum tuberosum L.) Under Different LED Light Colours

机译:不同LED浅色下马铃薯种子块茎(Solanum Tuberosum L.)的萌芽生长抑制和光致血管发育

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摘要

Green-sprouting potato seed tubers in light and elevated temperatures are vital for production in short-season climates. Using light-emitting diodes (LEDs) to inhibit sprout elongation during pre-sprouting may represent an energy-efficient alternative to traditional indoor light sources. Sprout growth inhibition and some photomorphogenic responses were therefore examined in potato cultivars exposed to LEDs of different wavelength maxima and irradiance rates. Red LED (660 nm) produced the strongest inhibition of sprout elongation at very low irradiances 10-100 nmol m(-2) s(-1), while far-red LED (735 nm) produced the strongest inhibition at higher irradiances. This inhibitory pattern was similar in all cultivars, although the degree of inhibition varied. The colour of sprouts and tuber skin remained etiolated under far-red LED, in contrast to LEDs between 380 and 660 nm which developed green colour intensity in an irradiance-dependent manner. Mixtures of red and far-red light, and pulses including red/far-red reversals did not produce stronger inhibition, except in some instances where total fluence was increased. Furthermore, green-sprouting under different LED colours did not seem to affect subsequent emergence and growth after planting. The current results suggest an involvement of multiple phytochromes in de-etiolation and sprout growth inhibition in seed potato tubers, which may be selectively utilised in LED-based green-sprouting in red and far-red wavelengths.
机译:在淡季气候下,光线和升高的温度下的绿色发芽马铃薯种子块茎是至关重要的。使用发光二极管(LED)来抑制预先发芽期间的萌芽伸长率可以代表传统室内光源的节能替代方案。因此,在暴露于不同波长最大值和辐照度率的LED的马铃薯栽培品种中检查了萌芽生长抑制和一些光学发生反应。红色LED(660nm)在非常低的辐射伸长率为10-100诺米酚M(-2)S(-1)时产生最强的萌生伸长率,而远红LED(735nm)在更高的辐射术中产生了最强的抑制。这种抑制模式在所有品种中都相似,但抑制程度变化。豆芽和块茎皮肤的颜色仍然在远红色LED下留气,与380和660nm之间的LED形成对比,其以辐照度依赖性方式开发了绿色强度。除了在一些总流量增加的情况下,红色和远红光的混合物和包括红色/远红色逆转的脉冲不会产生更强的抑制作用。此外,在不同的LED颜色下的绿色发芽似乎似乎没有影响种植后随后的出现和生长。目前的结果表明在种子马铃薯块茎中涉及多种植物植物在脱色和萌生生长抑制中,其可以选择性地利用在基于LED的红色和远红色波长的基础绿色萌芽中。

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