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Water Relations of Seed Development and Germination in Muskmelon (Cucumis melo L.)

机译:香瓜(Cucumis melo L.)种子发育与萌发的水分关系

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摘要

The initiation of radicle growth during seed germination may be driven by solute accumulation and increased turgor pressure, by cell wall relaxation, or by weakening of tissues surrounding the embryo. To investigate these possibilities, imbibition kinetics, water contents, and water (Ψ) and solute (ψs) potentials of intact muskmelon (Cucumis melo L.) seeds, decoated seeds (testa removed, but a thin perisperm/endosperm envelope remains around the embryo), and isolated cotyledons and embryonic axes were measured. Cotyledons and embryonic axes excised and imbibed as isolated tissues attained water contents 25 and 50% greater, respectively, than the same tissues hydrated within intact seeds. The effect of the testa and perisperm on embryo water content was due to mechanical restriction of embryo swelling and not to impermeability to water. The Ψ and ψs of embryo tissues were measured by psychrometry after excision from imbibed intact seeds. For intact or decoated seeds and excised cotyledons, Ψ values were >−0.2 MPa just prior to radicle emergence. The Ψ of excised embryonic axes, however, averaged only −0.6 MPa over the same period. The embryonic axis apparently is mechanically constrained within the testa/perisperm, increasing its total pressure potential until axis Ψ is in equilibrium with cotyledon Ψ, but reducing its water content and resulting in a low Ψ when the constraint is removed. There was no evidence of decreasing ψs or increasing turgor pressure (Ψ-ψs) prior to radicle growth for either intact seeds or excised tissues. Given the low relative water content of the axes within intact seeds, cell wall relaxation would be ineffective in creating a Ψ gradient for water uptake. Rather, axis growth may be initiated by weakening of the perisperm, thus releasing the external pressure and creating a Ψ gradient for water uptake into the axis. The perisperm envelope contains a cap of small, thin-walled endosperm cells adjacent to the radicle tip. We hypothesize that weakening or separation of cells in this region could initiate radicle expansion.
机译:种子萌发过程中胚根生长的开始可能是由于溶质的积累和膨大压力的增加,细胞壁的松弛或胚胎周围组织的变弱所致。为了研究这些可能性,完整的甜瓜种子(黄瓜),去壳种子(除去睾丸,但胚乳/胚乳薄的包膜很薄)的吸水动力学,含水量以及水(Ψ)和溶质(ψs)势),并测量了分离的子叶和胚轴。子叶和胚轴被切除并吸收,因为分离的组织所含水量分别比完整种子中水合的相同组织高25%和50%。睾丸和胚乳对胚胎含水量的影响是由于胚胎肿胀的机械限制而不是不透水。从吸收的完整种子中切除后,通过干湿法测定胚胎组织的Ψ和ψ。对于完整或去皮的种子和切下的子叶,在胚根出现之前,Ψ值> -0.2 MPa。但是,在同一时期内,切除的胚胎轴的Ψ平均值仅为-0.6 MPa。胚轴显然受机械限制在睾丸/胚乳内,增加了其总压力,直到轴with与子叶equilibrium平衡为止,但是减少了水分含量,并且当去除约束时,其胚轴较低。对于完整的种子或切除的组织,没有迹象表明在胚根生长之前ψs降低或膨大压力(Ψ-ψs)升高。鉴于完整种子内轴的相对含水量较低,细胞壁松弛对建立水吸收的1/3梯度将无效。相反,轴的生长可能是由于精子的弱化而引发的,从而释放了外部压力并为水吸收到轴上形成了一个Ψ梯度。胚乳被膜包含一个与胚根尖端相邻的小而薄壁的胚乳细胞。我们假设该区域中细胞的弱化或分离可以引发胚根膨胀。

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