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Ear Rachis Xylem Occlusion and Associated Loss in Hydraulic Conductance Coincide with the End of Grain Filling for Wheat

机译:小麦穗粒木质部阻塞和水力传导率的损失与小麦籽粒灌浆的结束有关

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摘要

Seed dehydration is the normal terminal event in the development of orthodox seeds and is physiologically related to the cessation of grain dry mass accumulation and crop grain yield. For a better understanding of grain dehydration, we evaluated the hypothesis that hydraulic conductance of the ear decreases during the latter stages of development and that this decrease results from disruption or occlusion of xylem conduits. Whole ear, rachis, and stem nodes hydraulic conductance and percentage loss of xylem conductivity were measured from flowering to harvest-ripeness on bread wheat (Triticum aestivum L.) cv. Récital grown under controlled environments. Flag leaf transpiration, stomatal conductance, chlorophyll content and grain and ear water potentials were also measured during grain development. We show that grain dehydration was not related with whole plant physiology and leaf senescence, but closely correlated with the hydraulic properties of the xylem conduits irrigating the grains. Indeed, there was a substantial decrease in rachis hydraulic conductance at the onset of the grain dehydration phase. This hydraulic impairment was not caused by the presence of air embolism in xylem conduits of the stem internodes or rachis but by the occlusion of the xylem lumens by polysaccharides (pectins and callose). Our results demonstrate that xylem hydraulics plays a key role during grain maturation.
机译:种子脱水是正统种子发育中的正常终端事件,并且在生理上与谷物干物质积累和作物籽粒产量的停止有关。为了更好地了解谷物脱水,我们评估了以下假设:在发育的后期,耳朵的水力传导率会降低,而这种降低是由于木质部导管的破裂或阻塞引起的。在面包小麦(Triticum aestivum L.)cv上,从开花到成熟期测量全耳,穗轴和茎节的水力导度和木质部电导率的损失百分比。在可控的环境下生长葡萄藤。在谷物发育过程中,还测量了旗叶的蒸腾作用,气孔导度,叶绿素含量以及谷物和穗水势。我们表明,谷物脱水与整株生理和叶片衰老无关,但与灌溉谷物的木质部导管的水力特性密切相关。确实,在谷物脱水阶段开始时,轴的水力传导率显着降低。这种水力损害不是由于茎节间或轴的木质部导管中存在空气栓塞引起的,而是由于多糖(果胶和call质)对木质部腔的阻塞所致。我们的结果表明,木质部水力学在谷物成熟过程中起着关键作用。

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