首页> 外文期刊>Plant physiology >GENETIC REGULATION OF DEVELOPMENT IN SORGHUM BICOLOR .10. GREATLY ATTENUATED PHOTOPERIOD SENSITIVITY IN A PHYTOCHROME-DEFICIENT SORGHUM POSSESSING A BIOLOGICAL CLOCK BUT LACKING A RED LIGHT-HIGH IRRADIANCE RESPONSE
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GENETIC REGULATION OF DEVELOPMENT IN SORGHUM BICOLOR .10. GREATLY ATTENUATED PHOTOPERIOD SENSITIVITY IN A PHYTOCHROME-DEFICIENT SORGHUM POSSESSING A BIOLOGICAL CLOCK BUT LACKING A RED LIGHT-HIGH IRRADIANCE RESPONSE

机译:。高粱发育的遗传调控.10。在缺乏生物钟但缺乏红色高光辐射响应的植物色素缺乏的高粱中,光衰减敏感性大大降低

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The role of a light-stable, 123-kD phytochrome in the biological clock, in photoperiodic flowering and shoot growth in extended photoperiods, and in the red light-high irradiance response was studied in Sorghum bicolor using a phytochrome-deficient mutant, 58M (ma(3)(R) ma(3)(R)), and a near-isogenic wild-type cultivar, 100M (Ma(3) Ma(3)). Since chlorophyll a/b-binding protein mRNA and ribulose bisphosphate carboxylase small subunit mRNA cycled in a circadian fashion in both 58M and 100M grown in constant light, the 123-kD phytochrome absent from 58M does not appear necessary for expression or entrainment of a functional biological clock. Although 58M previously appeared photoperiod insensitive in 12-h photoperiods, extending the photoperiod up to 24 h delayed floral initiation for up to 2 weeks but did not much affect shoot elongation. Thus, although 58M flowers early in intermediate photoperiods, a residual photoperiod sensitivity remains that presumably is not due to the missing 123-kD phytochrome. Since rapid shoot elongation persists in 58M under extended photoperiods despite delayed floral initiation, long photoperiods uncouple those processes. The observed absence of a red light-high irradiance response in 58M, in contrast to the presence of the response in 100M, strengthens the suggestion that the 123-kD phytochrome missing from 58M is a phyB. [References: 38]
机译:在高粱双色中,使用缺乏植物色素的突变体58M(123M)研究了光稳定的123 kD植物色素在生物钟中,在周期性光周期中的光周期开花和枝条生长以及在红光-高辐照度响应中的作用。 ma(3)(ma)ma(3)(r))和近等基因野生型品种100M(Ma(3)Ma(3))。由于叶绿素a / b结合蛋白mRNA和核糖二磷酸羧化酶小亚基mRNA均以昼夜节律的方式在恒定光照下以58M和100M循环生长,因此58M缺失的123-kD植物色素似乎对于功能性蛋白的表达或夹带没有必要。生物钟。尽管58M以前在12小时的光周期中对光周期不敏感,但将光周期延长到24小时可将花期延迟最多2周,但对芽伸长没有太大影响。因此,尽管58M在中等光周期的早期开花,但残留的光周期敏感性仍然可能不是由于缺少123-kD植物色素而引起的。尽管花期延迟,尽管在延长的光周期下,快速的枝条伸长仍能持续58M,所以长的光周期解开了这些过程。与在100M中存在响应相反,在58M中观察到不存在红光-高辐照度响应,这进一步增强了这样的建议,即58M缺失的123-kD植物色素是phyB。 [参考:38]

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