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Analysis of the Tomato Fruit Growth Response to Temperature and Plant Fruit Load in Relation to Cell Division Cell Expansion and DNA Endoreduplication

机译:番茄果实对温度和果实负荷的生长响应与细胞分裂细胞扩增和DNA内复制的关系分析

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摘要

• Background and Aims To better understand the regulation of fruit growth in response to environmental factors, the effects of temperature and plant fruit load on cell number, cell size and DNA endoreduplication were analysed.• Methods Plants were grown at 20/20 °C, 25/25 °C and 25/20 °C dayight temperatures, and inflorescences were pruned to two (‘2F’) or five (‘5F’) flowers.• Key Results and Conclusions Despite a lower fruit growth rate at 20/20 °C, temperature did not affect final fruit size because of the compensation between cell number and size. The higher cell number at 20/20 °C (9·0 × 106 against 7·9 × 106 at 25/25 °C and 7·7 × 106 at 25/20 °C) resulted from an extended period of cell division, and the smaller cell size was due to a shorter period of expansion rather than a lower expansion rate. By contrast, the lower fruit growth rate and size of 5F fruits compared with 2F fruits resulted from the slow down of cell expansion, whereas the number of cells was hardly affected in the proximal fruit. However, within the inflorescence the decreasing gradient of fruit size from proximal to distal fruits was due to a decrease in cell number with similar cell size. Fruit size variations within each treatment were always positively correlated to variations in cell number, but not in cell size. Negative correlations between cell size and cell number suggested that cells of tomato pericarp can be seen as a population of competing sinks. Mean ploidy was slightly delayed and reduced in 5F fruits compared with 2F fruits. It was highest at 25/25 °C and lowest at 25/20 °C. Treatments did not affect ploidy and cell size in similar ways, but within each treatment, positive correlations existed between mean ploidy and cell size, though significant only in the 2F-25/20 treatment.
机译:•背景和目的为了更好地理解水果对环境因素的调节,分析了温度和水果负荷对细胞数量,细胞大小和DNA核内复制的影响。•方法植物在20/20°C下生长, 25/25°C和25/20°C白天/晚上的温度,花序修剪成两朵('2F')或五朵('5F')花。•主要结果和结论尽管20 / 20°C,温度不会影响最终的果实大小,因为细胞数量和大小之间存在补偿。在20/20°C时较高的单元数(9·0×10 6 相对于25/25°C和7·7×10时的7·9×10 6 在25/20°C时 6 )是由于细胞分裂时间延长所致,而较小的细胞大小是由于扩增时间较短而不是较低的扩增速率所致。相比之下,与2F水果相比,5F水果的水果生长速率和大小较低是由于细胞膨胀的减慢而引起的,而近端水果中的细胞数量几乎不受影响。然而,在花序内,果实大小从近端到远端的减小的梯度是由于具有相似细胞大小的细胞数量的减少。每次处理中的果实大小变化始终与细胞数量变化呈正相关,但与细胞大小无关。细胞大小和细胞数量之间的负相关关系表明,番茄果皮的细胞可以看作是竞争性水槽的种群。与2F水果相比,5F水果的平均倍性稍有延迟,并有所减少。它在25/25°C时最高,而在25/20°C时最低。处理不会以相似的方式影响倍性和细胞大小,但是在每种处理中,平均倍性和细胞大小之间存在正相关关系,尽管仅在2F-25 / 20处理中显着。

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