光热商描述了热阴胁迫对油菜籽产量的综合影响

G. M. Rivelli, N. V. Gómez, A. Mantese, D. Miralles, L. Abeledo, Deborah Paola Rondanini
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引用次数: 2

摘要

有证据表明,遮荫和高温胁迫分别对油菜籽产量产生负面影响,但两种胁迫的联合效应尚未得到研究。本研究旨在(i)评估单用和复合胁迫对花发育、种子产量和品质的影响,(ii)量化复合胁迫的效应(加性、增效、拮抗),以及(iii)检验光热商(PTQ,太阳辐射/温度比)在预测受胁迫油菜籽作物种子产量方面的应用。在阿根廷布宜诺斯艾利斯进行了两项田间试验,分别采用高温日间温度胁迫(25-30°C, 1000 ~ 1500 h)、高温(- 80%辐照度)和高温+高温联合胁迫,以及无高温胁迫(20°C, 100%辐照度)作物。长时间和短时间的高温胁迫和高温胁迫对花的发育(花和荚减少,胚珠变小)和种子产量(相对于C降低- 40%到- 90%)都有强烈的影响。在长时间胁迫下,高温胁迫和高温胁迫联合对种子产量和油浓度有不利的协同效应,而在短时间胁迫下主要观察到拮抗作用。我们认为,PTQ(开花后100 ~ 500°Cd的累积值)充分总结了花后非生物胁迫对油菜种子生产力的不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photothermal Quotient Describes the Combined Effects of Heat and Shade Stresses on Canola Seed Productivity
There is evidence of the negative effects on canola seed yield caused by shading (SH) and high temperature stress (HT) separately, but the combined effect of both stresses has not been studied. This work aimed to (i) evaluate the effects of SH and HT stresses, alone and combined, on floral development, seed yield and quality, (ii) quantify the resulting effect (additive, synergistic, antagonistic) of combined stresses, and (iii) examine the utility of the photothermal quotient (PTQ, solar radiation/temperature ratio) to predict seed yield in stressed canola crops. Two field experiments were performed in Buenos Aires (Argentina) applying HT daytime temperature stress (25–30 °C from 1000 to 1500 h), SH (−80% irradiance), and SH + HT combined stresses, with C unstressed (20 °C and 100% irradiance) crops. Long and short duration SH and HT strongly affected floral development (fewer flowers and pods, with smaller ovules) and seed yield (reduction from −40 to −90% respect to C). Combined SH + HT exhibited detrimental synergistic effects on seed yield and oil concentration for long duration stresses, whereas antagonistic effects were mainly observed for short stresses. We conclude that the PTQ (cumulative from 100 to 500 °Cd after flowering) summarizes adequately the detrimental effects of combined post-flowering abiotic stresses on canola seed productivity.
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