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拟南芥的昼夜温度响应:对赤霉素和生长素含量、细胞大小、形态及开花时间的影响

Day and night temperature responses in Arabidopsis: effects on gibberellin and auxin content, cell size, morphology and flowering time.

作者信息

Thingnaes Elin, Torre Sissel, Ernstsen Arild, Moe Roar

机构信息

Department of Horticulture and Crop Sciences, Agricultural University of Norway, N-1432 As, Norway.

出版信息

Ann Bot. 2003 Oct;92(4):601-12. doi: 10.1093/aob/mcg176. Epub 2003 Aug 15.

Abstract

The effect of 16 different day (DT) and night (NT) temperature combinations (DT and NT 12, 17, 22 and 27 degrees C) on rosette leaf growth, flower stem elongation and flowering time in Arabidopsis thaliana Ler was investigated. Final leaf length decreased with increasing NT due to a combination of reduced elongation period and reduced elongation rate. Final stem length increased with increasing DT due to increased elongation rate, and decreased with increasing NT due to a decrease in elongation period. Under NT 27 degrees C, however, stem elongation rate increased greatly, resulting in the same final stem length as under NT 12 degrees C. The transition to flowering was accelerated by increasing NT. A linear regression analysis was performed to clarify the relationship between final leaf length, final stem length and flowering time with DIF (DT minus NT) and/or ADT (average daily temperature). For all three variables, the effect of DIF depended on ADT and vice versa. The relationship of final stem length with DIF also depended on the temperature range. Increased cell volume in flower stems developing at DT/NT 22/12 degrees C gave rise to longer and thicker stems compared with stems developing at DT/NT 12/22 degrees C. GC-MS analysis (gas chromatography-mass spectrometry) showed that the endogenous level of IAA was 56 % higher in stems grown under DT/NT 22/12 degrees C compared with DT/NT 12/22 degrees C. Of the 12 gibberellins analysed, however, only the level of non-bioactive GA29 was affected by the temperature treatment.

摘要

研究了16种不同的日温(DT)和夜温(NT)组合(DT和NT分别为12、17、22和27摄氏度)对拟南芥Ler莲座叶生长、花茎伸长和开花时间的影响。由于伸长周期缩短和伸长率降低,最终叶片长度随夜温升高而减小。由于伸长率增加,最终茎长度随日温升高而增加,而由于伸长周期缩短,最终茎长度随夜温升高而减小。然而,在27摄氏度的夜温下,茎伸长率大幅增加,导致最终茎长度与12摄氏度夜温下相同。夜温升高加速了开花转变。进行线性回归分析以阐明最终叶片长度、最终茎长度和开花时间与日较差(DT减去NT)和/或日均温度(ADT)之间的关系。对于所有三个变量,日较差的影响取决于日均温度,反之亦然。最终茎长度与日较差的关系也取决于温度范围。与在DT/NT 12/22摄氏度下发育的茎相比,在DT/NT 22/12摄氏度下发育的花茎细胞体积增加,导致茎更长更粗。气相色谱-质谱联用(GC-MS)分析表明,与DT/NT 12/22摄氏度相比,在DT/NT 22/12摄氏度下生长的茎中内源生长素(IAA)水平高56%。然而,在所分析的12种赤霉素中,只有非生物活性的GA29水平受温度处理的影响。

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Arabidopsis, the Rosetta stone of flowering time?拟南芥,开花时间的罗塞塔石碑?
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