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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

Muskmelon (Cucumis melo L.) seeds are germinable 15 to 20 days before fruit maturity and are held at relatively high water content within the fruit, yet little precocious germination is observed. To investigate two possible factors preventing precocious germination, the inhibitory effects of abscisic acid and osmoticum on muskmelon seed germination were determined throughout development. Seeds were harvested at 5-day intervals from 30 to 65 days after anthesis (DAA) and incubated either fresh or after drying on factorial combinations of 0, 1, 3.3, 10, or 33 micromolar abscisic acid (ABA) and 0, −0.2, −0.4, −0.6, or −0.8 megapascals polyethylene glycol 8000 solutions at 30°C. Radicle emergence was scored at 12-hour intervals for 10 days. In the absence of ABA, the water potential (Ψ) required to inhibit fresh seed germination by 50% decreased from −0.3 to −0.8 megapascals between 30 and 60 DAA. The Ψ inside developing fruits was from 0.4 to 1.4 megapascals lower than that required for germination at all stages of development, indicating that the fruit Ψ is sufficiently low to prevent precocious germination. At 0 megapascal, the ABA concentration required to inhibit germination by 50% was approximately 10 micromolar up to 50 DAA and increased to >33 micromolar thereafter. Dehydration improved subsequent germination of immature seeds in ABA or low Ψ. There was a linear additive interaction between ABA and Ψ such that 10 micromolar ABA or −0.5 megapascal osmotic potential resulted in equivalent, and additive, reductions in germination rate and percentage of mature seeds. Abscisic acid had no effect on embryo solute potential or water content, but increased the apparent minimum turgor required for germination. ABA and osmoticum appear to influence germination rates and percentages by reducing the embryo growth potential (turgor in excess of a minimum threshold turgor) but via different mechanisms. Abscisic acid apparently increases the minimum turgor threshold, while low Ψ reduces turgor by reducing seed water content.
机译:香瓜(Cucumis melo L.)种子可在果实成熟前15到20天发芽,并在果实中保持较高的水分含量,但观察到的早熟发芽很少。为了研究防止早熟发芽的两个可能因素,在整个发育过程中确定了脱落酸和渗透压对甜瓜种子发芽的抑制作用。花后(DAA)30至65天以5天的间隔收获种子,并在新鲜或干燥后在0、1、3.3、10或33微摩尔脱落酸(ABA)和0,-0.2的因子组合下孵育,-0.4,-0.6或-0.8兆帕的聚乙二醇8000溶液在30°C下。每隔12小时对胚根出现进行评分,持续10天。在不使用ABA的情况下,抑制新鲜种子萌发50%所需的水势(Ψ)在30至60 DAA之间从-0.3兆帕降低到-0.8兆帕。在所有发育阶段,正在发育的果实中的than比发芽所需的低0.4至1.4兆帕,表明果实Ψ足够低,可以防止早熟发芽。在0兆帕斯卡下,抑制发芽50%所需的ABA浓度约为10微摩尔,直至50 DAA,此后增加至> 33微摩尔。脱水改善了ABA或低Ψ中未成熟种子的随后发芽。 ABA与between之间存在线性加性相互作用,因此10微摩尔ABA或-0.5兆帕渗透压可能导致发芽率和成熟种子百分率降低,且累加率降低。脱落酸对胚的溶质势或含水量没有影响,但是增加了发芽所需的表观最小膨松度。 ABA和渗透压似乎通过降低胚胎生长潜能(超过最小阈值膨大的膨大)而影响发芽率和百分率,但机制不同。脱落酸显然增加了最低膨大阈值,而低Ψ通过降低种子含水量降低了膨大。

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