首页> 美国卫生研究院文献>Plant Physiology >Selected Components of the Shade-Avoidance Syndrome Are Displayed in a Normal Manner in Mutants of Arabidopsis thaliana and Brassica rapa Deficient in Phytochrome B.
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Selected Components of the Shade-Avoidance Syndrome Are Displayed in a Normal Manner in Mutants of Arabidopsis thaliana and Brassica rapa Deficient in Phytochrome B.

机译:在缺乏植物色素B的拟南芥和芸苔突变体中以正常方式显示了避色综合症的选定成分。

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摘要

Several growth parameters associated with the phytochrome-mediated shade avoidance syndrome have been measured in seedlings and mature plants of a wild-type and a hy3 mutant of Arabidopsis thaliana deficient in phytochrome B. Growth parameters were compared in plants grown in either white light (high red:far-red [R:FR] ratio) or white light plus added far-red (FR) light (low R:FR ratio). Wild-type Arabidopsis exhibited increased hypocotyl and petiole extension under a low, compared with a high, R:FR ratio. The hy3 mutant did not respond to low R:FR ratio by increase in hypocotyl or petiole length. Extension growth of wild-type plants was stimulated by brief end-of-day FR pulses, but similar treatment had no effect on extension growth of hy3 mutant plants. However, some responses to low R:FR ratio seen in the wild-type plants were also evident in the hy3 mutants. The number of days to bolting, the developmental stage at bolting, the leaf area, and the specific stem weight (weight per unit of length) all decreased in the wild-type and hy3 seedlings in response to low R:FR ratio. Low R:FR ratio caused a larger decrease in leaf area and specific stem weight in the mutant seedlings than in wild-type seedlings. The effects of low R:FR ratio on leaf area and specific stem weight were opposite to those of the hy3 lesion, which resulted in increased leaf area and specific stem weight in comparison with the wild type. Both leaf area and specific stem weight responses to low R:FR ratio also were unchanged in the ein mutant of Brassica rapa, known to be deficient in phytochrome B. These responses represent components of the shade-avoidance syndrome, and, consequently, the results indicate that phytochrome B cannot be solely responsible for the perception of R:FR ratio and the induction of shade-avoidance responses. The hypothesis is proposed that different phytochromes may be responsible for the regulation of extension growth and the regulation of lateral or radial expansion.
机译:已在缺乏植物色素B的野生型和拟南芥hy3突变体的幼苗和成熟植物中测量了与植物色素介导的避光综合征相关的几个生长参数。比较了在两种白光(高红色:远红色[R:FR]比率)或白光加上添加的远红色(FR)光线(低R:FR比率)。与高的R:FR比相比,野生型拟南芥在较低的水平下表现出增加的下胚轴和叶柄延伸。 hy3突变体对下胚轴或叶柄长度的增加不响应低的R:FR比。短暂的一天结束时的FR脉冲刺激了野生型植物的延伸生长,但是类似的处理对hy3突变植物的延伸生长没有影响。但是,在hy3突变体中,野生型植株对低R:FR比的某些反应也很明显。响应低的R:FR比,野生型和hy3幼苗的抽ing天数,抽ing发育阶段,叶面积和特定茎重(每单位长度的重量)均减少。与野生型幼苗相比,低的R:FR比导致突变幼苗的叶面积和比茎重减少更大。低R:FR比对叶面积和比重的影响与hy3病害相反,与野生型相比,导致叶面积和比重增加。对低R:FR比的甘蓝型油菜ein突变株,叶面积和特定茎重响应均未发生变化,该突变体已知缺乏植物色素B。这些响应代表避阴综合征的组成部分,因此,结果指出,植物色素B不能完全负责R:FR比的感知和避免阴影响应。提出了这样的假设,即不同的植物色素可能负责扩展生长的调控以及横向或径向扩展的调控。

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