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首页> 外文期刊>Industrial Crops and Products >Effect of light, gibberellic acid and abscisic acid on germination of guayule (Parthenium argentatum Gray) seed.
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Effect of light, gibberellic acid and abscisic acid on germination of guayule (Parthenium argentatum Gray) seed.

机译:光照,赤霉素和脱落酸对番石榴(Parthenium argentatum Gray)种子发芽的影响。

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摘要

Guayule (Parthenium argentatum Gray) produces high quality, low-allergenic rubber which has commercial potential. The species has small seeds with a high level of dormancy which was investigated in a series of germination experiments. Many researchers have investigated the effect of gibberellic acid and light on guayule seed dormancy but there have been no reports on light quality. In this study, increased germination was found for yellow (82.0%) and red (65.3%) light compared to green (55.3%) and blue (25.3%) light. Effect of light quality indicates evidence of phytochrome-mediated germination and dormancy in guayule. A higher ratio of red to far-red radiation in yellow and red light activates phytochrome that stimulates production of endogenous gibberellins to promote germination. The highest level of far-red radiation found in blue light had similar inhibitory effects as complete darkness (21.3%). An intermediate level of red to far-red radiation for green light produced intermediate germination. Seed coat and light also affected germination of freshly harvested guayule seed. Embryos responded to light compared with darkness (68.0% vs. 34.7%) albeit to a much lower level than intact seed (57.3% vs. 8.6%) indicating the possible presence of inhibitors in the seed coat. Light and GA3 strongly interact to overcome dormancy in guayule and appear to act on the same pathway. The optimum concentration of GA3 for seed used in this experiment ranged from 250 to 500 ppm.
机译:Guayule( Argenatum Grey)生产具有商业潜力的高质量,低过敏性橡胶。该物种具有高度休眠的小种子,已通过一系列发芽实验对其进行了研究。许多研究人员已经研究了赤霉素和光照对愈创木瓜种子休眠的影响,但是还没有关于光照质量的报道。在这项研究中,与绿色(55.3%)和蓝色(25.3%)相比,黄色(82.0%)和红色(65.3%)光的发芽增加。光照质量的影响表明了番石榴中植物色素介导的发芽和休眠的证据。黄色和红色光中较高的红色辐射与远红外辐射的比率会激活植物色素,从而刺激内源赤霉素的产生,从而促进发芽。在蓝光中发现的最高水平的远红色辐射具有与完全黑暗相似的抑制作用(21.3%)。绿光的中间水平的红色到远红色辐射产生中间发芽。种皮和光照还影响了刚收获的红豆杉种子的发芽。胚胎对光的反应比黑暗(68.0%对34.7%)要高,尽管比完整种子低得多(57.3%对8.6%),表明种皮中可能存在抑制剂。光与GA 3 强烈相互作用,克服了愈创木瓜的休眠状态,并且似乎在同一途径上起作用。实验中所用种子的GA 3 的最佳浓度范围为250至500 ppm。

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