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首页> 外文期刊>Environmental and experimental botany >Stem girdling uncouples soybean stomatal conductance from leaf water potential by enhancing leaf xylem ABA concentration
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Stem girdling uncouples soybean stomatal conductance from leaf water potential by enhancing leaf xylem ABA concentration

机译:茎环状脱位叶片气孔电位通过增强叶片Xylem ABA浓度

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摘要

To understand the impact of shoot-to-root ABA transport on water potential of, and xylem ABA concentration in, different plant tissues during soil drying, soybean (Glycine max cv. Siverka) plants were subjected to drought and girdling in a factorial experiment. Girdling was achieved by surgically excising the phloem tissue from just above the cotyledonary node. After girdling and withholding water, ABA concentrations were determined in xylem saps extracted from individual leaves, detached shoots and de-topped roots, after measuring stomatal conductance (g(s)), tissue water potentials, and root ABA concentrations. Soil drying decreased water potential throughout the plant and approximately doubled xylem ABA concentrations, coinciding with stomatal closure. Girdling slightly enhanced water potential, especially in droughted plants. Girdling diminished the soil-drying induced increase in xylem sap ABA concentration, and completely prevented root tissue ABA accumulation. Furthermore, girdling decreased root ABA concentration and increased leaf xylem ABA concentration of well-watered (WW) plants. Stomatal conductance declined linearly with leaf water potential only in intact plants, while g(s) declined as leaf xylem ABA concentration increased, independently of girdling. Thus shoot to root ABA transport not only determines (soil-drying induced) root ABA accumulation, but also limits ABA accumulation in the shoot to maintain stomatal opening of WW plants.
机译:为了了解土壤干燥期间不同植物组织的射击对ABA运输对水电潜力的影响,在土壤干燥期间,大豆(甘氨酸Max CV.Sirecka)植物在阶乘实验中进行干旱和环导。通过携带从子叶节点上方,通过手术切除Phloem组织来实现环状。在围绕颈叶和扣留水之后,在从单个叶片中提取的木质SAP中测定ABA浓度,在测量气孔导率(G(S)),组织水电位和根ABA浓度之后。土壤干燥在整个植物中减少了水潜力,大约加倍Xylem ABA浓度,与气孔闭合重合。 Girdly略微增强水势,特别是在旱植物中。 Girdling降低了木质SAP ABA浓度的土壤干燥诱导的增加,并且完全防止了根组织ABA积累。此外,GRICDLED降低了根部ABA浓度和升高的浇水(WW)植物的叶片XYLEM ABA浓度。对于仅在完整的植物中,气孔电导仅与叶水潜力线性下降,而G(S)随着叶片Xylem ABA浓度的增加而越来越多地涉及Girdly。因此,射击到root aba运输不仅决定(干燥诱导)根ABA积累,还限制了ABA积累以保持WW植物的气孔开口。

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