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Photophysiology and Phytochrome Content of Long-Hypocotyl Mutant and Wild-Type Cucumber Seedlings

机译:长下胚轴突变体和野生型黄瓜幼苗的光生理和植物色素含量

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摘要

Photomorphogenetic responses have been studied in a cucumber (Cucumis sativus L.) mutant (lh), which has long hypocotyls in white light (WL). While etiolated seedlings of this mutant have a similar phytochrome content and control of hypocotyl elongation as wild type, deetiolation is retarded and WL-grown seedlings show reduced phytochrome control. Spectrophotometric measurements exhibit that WL-grown tissues of the lh mutant (flower petals and Norflurazon-bleached leaves) contain 35 to 50% of the phytochrome level in the wild type. We propose that this is a consequence of a lack of light-stable phytochrome, in agreement with our hypothesis proposed on the basis of physiological experiments. The lh mutant lacks an end-of-day far-red light response of hypocotyl elongation. This enables the end-of-day far-red light response, clearly shown by the wild type, to be ascribed to the phytochrome, deficient in the lh mutant. Growth experiments in continuous blue light (BL) and continuous BL + red light (RL) show that when RL is added to BL, hypocotyl growth remains inhibited in the wild type, whereas the lh mutant exhibits significant growth promotion compared to BL alone. It is proposed that the hypocotyls fail to grow long in low fluence rate BL because photosynthesis is insufficient to sustain growth.
机译:已经在黄瓜(Cucumis sativus L.)突变体(lh)中研究了光形态发生响应,该突变体在白光(WL)中具有长的下胚轴。虽然该突变体的黄化幼苗具有与野生型相似的植物色素含量和对下胚轴伸长的控制,但脱化作用受到阻碍,并且WL生长的幼苗显示出降低的植物色素控制。分光光度法测量表明,lh突变体的WL生长组织(花瓣和诺氟拉松漂白的叶子)在野生型中含有35至50%的植物色素水平。我们提出,这是由于缺乏光稳定的植物色素所致,这与我们在生理实验基础上提出的假设相符。 lh突变体缺乏下胚轴伸长的末端远红外线响应。这使得野生型清楚显示的一天结束时的远红光响应归因于缺乏lh突变体的植物色素。在连续蓝光(BL)和连续BL +红光(RL)中的生长实验表明,当将RL添加到BL中时,野生型下胚轴的生长仍然受到抑制,而与单独的BL相比,lh突变体表现出显着的生长促进作用。有人提出,由于光合作用不足以维持生长,下胚轴不能在低通量率BL下长时间生长。

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