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Water Relations of Seed Development and Germination in Muskmelon (Cucumis melo L.) 1: I. Water Relations of Seed and Fruit Development

机译:香瓜种子发育和萌发的水分关系1:I.种子和果实发育的水分关系

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摘要

Total water potential (ψ), solute potential, and turgor potential of field-grown muskmelon (Cucumis melo L.) fruit tissue (pericarp) and seeds were determined by thermocouple psychrometry at 5-day intervals from 10 to 65 days after anthesis (DAA). Fruit maturity occurred between 44 and 49 DAA, and seed germination ability developed between 35 and 45 DAA. Pericarp ψ was essentially constant at approximately −0.75 megapascal (MPa) from 10 to 25 DAA, then decreased to a minimum value of −1.89 MPa at 50 DAA before increasing to −1.58 MPa at 65 DAA. Seed ψ remained relatively constant at approximately −0.5 MPa from 10 to 30 DAA then decreased to −2.26 MPa at 50 to 60 DAA before increasing to −2.01 MPa at 65 DAA. After a rapid increase to 20 DAA, seed fresh weight declined until 30 DAA due to net water loss, despite continuing dry weight gain. As fruit and seed growth rates decreased, turgor potential initially increased, then declined to small values when growth ceased. A disequilibrium in ψ was measured between seeds and pericarp both early and late in development. From 20 to 40 DAA, the ψ gradient was from the seed to the tissue, coinciding with water loss from the seeds. From 50 to 65 DAA, seed ψ decreased, causing a reversal of the ψ gradient and a slight increase in seed water content. The partitioning of solutes between symplast and apoplast may create and maintain ψ gradients between the pericarp and seed. The low solute potential within the pericarp due to solute accumulation and loss of cellular compartmentation during ripening and sensecence may be involved in prevention of precocious germination of mature seeds.
机译:在开花后10天至65天之间,每隔5天用热电偶干湿法测定田间种植的甜瓜(Cucumis melo L.)果实组织(果皮)和种子的总水势(ψ),溶质势和膨胀势。 )。果实成熟发生在44至49 DAA之间,种子发芽能力在35至45 DAA之间发展。果皮ψ从10到25 DAA基本恒定在大约-0.75兆帕(MPa),然后在50 DAA下降到最小值-1.89 MPa,然后在65 DAA上升到-1.58 MPa。种子ψ从10到30 DAA在-0.5 MPa左右保持相对恒定,然后在50到60 DAA下降到-2.26 MPa,然后在65 DAA上升到-2.01 MPa。快速增加至20 DAA后,尽管净失水持续增加,但由于净失水,种子鲜重下降至30 DAA。随着水果和种子生长速度的降低,膨大潜力开始增加,然后在停止增长时下降到很小的水平。在发育的早期和晚期,在种子和果皮之间测量到ψ的不平衡。从20到40 DAA,ψ梯度从种子到组织,与种子的水分流失相吻合。从50 DAA到65 DAA,种子ψ降低,导致ψ梯度反转,种子含水量略有增加。溶质在共质体和质外体之间的分配可能会在果皮和种子之间产生并保持ψ梯度。由于在成熟和感官过程中溶质积聚和细胞分隔丢失,果皮内的溶质潜力低可能与防止成熟种子过早发芽有关。

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