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干旱胁迫导致的结荚损失与大豆生殖结构的水分状况和脱落酸含量有关。

Loss of pod set caused by drought stress is associated with water status and ABA content of reproductive structures in soybean.

作者信息

Liu Fulai, Andersen Mathias N, Jensen Christian R

机构信息

The Royal Veterinary and Agricultural University, Department of Agricultural Sciences, Laboratory for Agrohydrology and Bioclimatology, Højbakkegaard Allé 9, DK-2630 Taastrup, Denmark. Corresponding author; email:

Department of Crop Physiology and Soil Science, Danish Institute of Agricultural Sciences, Research Centre Foulum, PO Box 50, DK-8830 Tjele, Denmark.

出版信息

Funct Plant Biol. 2003 Mar;30(3):271-280. doi: 10.1071/FP02185.

Abstract

Drought stress occurring during flowering and early pod expansion decreases pod set in soybean (Glycine max L. Merr.). The failure of pod set may be associated with changes in water status and ABA content in soybean reproductive structures under drought stress. To test this, pot experiments in an environmentally-controlled greenhouse were conducted, in which soybeans were exposed to drought stress around anthesis. In a preliminary experiment (Expt. I), irrigation was withheld at -6 (D1), -4 (D2) and -2 (D3) to 11 days after anthesis (DAA), then the droughted plants were re-watered to control levels until physiological maturity. Pod set percentage, seed yield and yield components were recorded. In the main experiment (Expt. II), irrigation was withheld from -11 to 10DAA. During the drying cycle, parts of the droughted plants were re-watered at 0, 3, 5, 7 and 10 DAA and kept well-watered until physiological maturity. In Expt. II, water status, ABA contents in xylem sap, leaves, flowers and pods were measured at 0, 3, 5, 7 and 10 DAA. The water potential in the flowers and pods was always lower than the leaf water potential. Turgor was decreased in leaves by drought 3 DAA, but remained at control levels in flowers and pods. Compared with well-watered plants, in severely droughted plants (10 DAA), xylem [ABA] increased about 60-fold; leaf [ABA] increased 9-fold; pod [ABA] increased 6-fold. During soil drying, flower and pod [ABA] was linearly correlated with xylem [ABA] and leaf [ABA], indicating that root-originated ABA and/or leaf ABA were the likely sources of ABA accumulated in the flowers and pods. In Expt. I, pod set and seed number per pod was unaffected by drought stress, while seed yield and individual seed weight was significantly decreased by drought. In Expt. II, significant reductions in pod set and seed yield were observed when re-watering the droughted plants at 3-5 DAA, re-watering the droughted plants later than this stage resulted in a similar pod set. Collectively, these results suggest that drought-induced decrease in water potential and increase in ABA content in flowers and pods at critical developmental stage (3-5 DAA) contribute to pod abortion in soybean.

摘要

开花期和豆荚早期膨大期发生的干旱胁迫会降低大豆(Glycine max L. Merr.)的结荚率。结荚失败可能与干旱胁迫下大豆生殖结构中水分状况和脱落酸(ABA)含量的变化有关。为了验证这一点,在环境可控的温室中进行了盆栽试验,使大豆在花期前后遭受干旱胁迫。在初步试验(试验I)中,在开花后(DAA)第-6天(D1)、-4天(D2)和-2天(D3)至11天停止灌溉,然后对受旱植株重新浇水至对照水平,直至生理成熟。记录结荚率、种子产量和产量构成因素。在主要试验(试验II)中,在开花后第-11天至10天停止灌溉。在干旱周期中,部分受旱植株在开花后第0、3、5、7和10天重新浇水,并保持充分浇水直至生理成熟。在试验II中,在开花后第0、3、5、7和10天测量水分状况、木质部汁液、叶片、花朵和豆荚中的脱落酸含量。花朵和豆荚中的水势始终低于叶片水势。干旱3天后,叶片膨压降低,但花朵和豆荚中的膨压保持在对照水平。与充分浇水的植株相比,在严重干旱的植株中(开花后第10天),木质部[脱落酸]增加约60倍;叶片[脱落酸]增加9倍;豆荚[脱落酸]增加6倍。在土壤干旱期间,花朵和豆荚中的[脱落酸]与木质部[脱落酸]和叶片[脱落酸]呈线性相关,表明根源脱落酸和/或叶片脱落酸可能是花朵和豆荚中积累的脱落酸的来源。在试验I中,结荚率和每荚种子数不受干旱胁迫影响,而种子产量和单粒种子重量因干旱显著降低。在试验II中,当在开花后第3-5天对受旱植株重新浇水时,观察到结荚率和种子产量显著降低,在此阶段之后对受旱植株重新浇水会导致类似的结荚率。总体而言,这些结果表明,在关键发育阶段(开花后第3-5天),干旱导致花朵和豆荚中水势降低和脱落酸含量增加,这是造成大豆豆荚败育的原因。

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