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Water relationships of castor bean (Ricinus communis L.) seeds related to final seed dry weight and physiological maturity

机译:蓖麻子(Ricinus communis L.)种子的水分关系与最终种子干重和生理成熟度有关

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Castor bean (Ricinus communis L.) seeds develop inside capsules from sequential racemes. The indeterminate growth habit causes seeds to have different developmental stages among different orders of racemes. Determining the moment of physiological maturity (PM) for the whole plant and at the crop level presents a challenge. Also, it is unclear if a relationship exists between the final seed size of different orders of racemes and the seed-filling rate, seed-filling duration, or maximum seed water content (MWCmg, absolute amount of water per seed). The aim of the present work was to study the dynamics of seed dry weight (SOW) and seed water content (absolute WCmg) with the objectives of (i) associating final SDW to its seed-filling rate, seed-filling duration and maximum WCmg; (ii) identifying the timing of PM on the basis of seed water concentration (WC%); and (iii) predicting PM at the crop level using simulation models based on plant WC% and SOW relationships. Two genotypes (FAUBA 1 and AL GUARANI 2002), contrasting in seed size and branching degree, were studied under field conditions in Buenos Aires in 2006-2007. The evolution of SOW and WCmg was followed in racemes of first (R1), second (R2) and third (R3) order, from the beginning of flowering to harvest maturity. Bi-linear functions were fitted to SDW/WC% relationships, and the model was validated. Across both genotypes and all orders of racemes, final SOW (FSDW) was associated with seed-filling duration (expressed in both days and thermal time) to a greater extent than with seed-filling rate. Also, a clear positive association between FSDW and MWCmg was observed for a broad range of seed sizes (250-600 mg seed(-1)). Physiological maturity was attained when seeds exhibited a WC% of 21.8 +/- 2.4% (n = 232; R-2 = 0.94; P < 0.001). The model was successfully validated with independent data (R-2 = 0.96). Simulations were performed to explore the effects of variations in the timing of flowering between racemes at the plant and crop level on fruit WC% at maximum yield. At the crop level, 22% WC% corresponded to 90-92% of the maximum attainable seed yields when harvest was delayed until the last growing seeds reached PM. We conclude that a relationship exists between FSDW and MWCmg, and ca. 22% of seed WC% is a good predictor of PM in castor bean at seed and crop level
机译:蓖麻子(Ricinus communis L.)种子由连续的总状花序在胶囊内发育。不确定的生长习性导致种子在不同等级的外消旋体之间具有不同的发育阶段。确定整个植物和作物水平的生理成熟时刻(PM)面临挑战。同样,尚不清楚不同阶消旋体的最终种子大小与种子填充率,种子填充持续时间或最大种子含水量(MWCmg,每颗种子的绝对水量)之间是否存在关系。本工作的目的是研究种子干重(SOW)和种子含水量(绝对WCmg)的动态,目标是(i)将最终SDW与其种子灌浆速率,灌浆持续时间和最大WCmg相关联; (ii)根据种子水浓度(WC%)确定PM的时间; (iii)使用基于植物WC%和SOW关系的模拟模型预测作物水平的PM。 2006-2007年在布宜诺斯艾利斯的田间条件下研究了两种基因型(FAUBA 1和AL GUARANI 2002),它们的种子大小和分支程度不同。从开花开始到收获成熟,SOW和WCmg的进化以第一(R1),第二(R2)和第三(R3)顺序消旋。将双线性函数拟合到SDW / WC%关系,并验证了模型。在所有基因型和外消旋的所有顺序中,最终的SOW(FSDW)与种子填充持续时间(以天数和热时间表示)的关联程度均大于种子填充率。同样,对于广泛的种子大小(250-600 mg种子(-1)),FSDW和MWCmg之间存在明显的正相关。当种子的WC%为21.8 +/- 2.4%(n = 232; R-2 = 0.94; P <0.001)时,可获得生理成熟度。该模型已通过独立数据成功验证(R-2 = 0.96)。进行模拟以探索在植物和作物水平上总状花序之间的开花时间变化对最大产量的水果WC%的影响。在作物水平上,当收获推迟到最后生长的种子达到PM时,22%WC%相当于最大可获得种子产量的90-92%。我们得出的结论是,FSDW和MWCmg之间存在关系,并且约为。在种子和农作物水平上,蓖麻中22%的种子WC%可以很好地预测PM

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