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首页> 外文期刊>Annals of Applied Biology >Rice reproductive development stage thermal time and calendar day intervals for six US rice cultivars in the Grand Prairie, Arkansas, over 4 years
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Rice reproductive development stage thermal time and calendar day intervals for six US rice cultivars in the Grand Prairie, Arkansas, over 4 years

机译:在阿肯色州大草原地区的六个美国水稻品种的水稻生殖发育阶段的热时间和日历日间隔,为期四年

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The rice crop's reproductive developmental timing in days and thermal time is needed for effective modelling, research interpretation and management of the crop. To obtain these data, a field study was conducted at Stuttgart, Arkansas, USA in 2007, 2008, 2009 and 2010. The study utilised data collected from randomised complete block design field experiments with three replications and six rice lines in each of the years. Averaged across years and cultivars, the degree-day-10 (DD10) intervals (thermal time units with a base temperature of 10 degrees C) for Reproductive Stages R3, R4, R5, R6, R7 and R8 were 21, 30, 19, 48, 70 and 189 degrees C-day, respectively. The average intervals in calendar days for R3, R4, R5, R6, R7 and R8 were 2.3, 3.3, 2.3, 6.0, 4.5 and 26.7 days, respectively. For R4 and R5, cultivar rankings differed over the 4 years with cultivar differences being mostly small, non-significant or inconsistent. For R6, the cultivar Cypress had either the longest or among the longest intervals. For R7, the medium grains had the longest or among the longest intervals. For R3 and R8, cultivar differences were significant with no significant year by cultivar interactions. For the R3 intervals, the primary difference was between Bengal and the five other lines. For R8, the intervals in both days and DD10 were least for Cypress, followed by Wells, followed by LaGrue and XL723 followed by the medium grains Bengal and Jupiter which had the longest intervals for R8. Consequently, the R3 interval could be generalised to five of the six lines in the study while R4, R5, R6 and R7 intervals could be generally applied with some caution. The R8 intervals were different among lines and grain types. These differences should not be ignored. The extremely short R8 interval for Cypress is likely associated with its high head rice yields across a range of environments compared to other long-grain rice cultivars and hybrids in the USA The utilisation of the rice reproductive growth stage intervals can potentially improve analysis and interpretation of field plot research, model predictions and management of the rice crop.
机译:为了有效地进行作物的建模,研究解释和管理,需要以天数和热时间为基础的水稻作物的生殖发育时间。为了获得这些数据,于2007年,2008年,2009年和2010年在美国阿肯色州斯图加特进行了田野研究。该研究利用了从随机完整区组设计田间试验中收集的数据,这些试验每年有3个重复和6个水稻系。根据年份和品种的平均值,生殖阶段R3,R4,R5,R6,R7和R8的第10天(DD10)间隔(基本温度为10摄氏度的热时间单位)为21、30、19,每天分别在48、70和189摄氏度。 R3,R4,R5,R6,R7和R8在日历日中的平均间隔分别为2.3、3.3、2.3、6.0、4.5和26.7天。对于R4和R5,在过去4年中,品种排名有所不同,品种差异主要是很小,无统计学意义或不一致的。对于R6,赛普拉斯品种最长或间隔最长。对于R7,中粒具有最长的间隔或最长的间隔。对于R3和R8,品种差异显着,而通过品种相互作用没有明显的年份。对于R3间隔,主要区别在于孟加拉和其他五条线。对于R8,赛普拉斯的两天间隔和DD10间隔最小,其次是Wells,其次是LaGrue和XL723,其次是中等颗粒的孟加拉和木星,它们的间隔最长。因此,在研究中可以将R3区间概括为六行中的五行,而通常应谨慎使用R4,R5,R6和R7区间。品系和籽粒类型之间的R8间隔不同。这些差异不容忽视。与美国其他长粒水稻品种和杂种相比,赛普拉斯极短的R8间隔可能与其在各种环境下的高稻米产量有关。利用水稻生殖生长期的间隔可以潜在地改善对水稻田间田间研究,模型预测和管理。

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