首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Source and sink limitations in vascular flows in peach fruit
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Source and sink limitations in vascular flows in peach fruit

机译:桃果实中血管流动的源和汇限制

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摘要

The daily patterns of vascular and transpiration flows to and from peach fruit were compared between heavily-thinned (LCL) and unthinned (HCL) trees, in order to assess when these flows were limited by resource availability (source-limited) or by the genetic potential of the fruit (sink-limited) during the day. Minute variations in fruit growth and in phloem, xylem, and transpiration flows were determined at cell division (stage I) and at cell expansion (stage III) during fruit development on several fruit per treatment., using highly sensitive fruit gauges. During cell expansion, the thinning treatments were also compared for their effects on fruit water potential. At stage I, no difference between treatments was found in any of the flows, suggesting that fresh matter (FM) import from phloem and xylem is sink-limited during early fruit development. At stage III, HCL fruit were smaller and had higher specific transpiration rates during the day. Xylem flow did not show any source limitations due to high crop load. However, it was "sink-strengthened" in the afternoon, in HCL, as these fruit reached lower water potentials during the day. Phloem flow to HCL fruit was source-limited during the afternoon, and at night, due to fruit-to-fruit competition. However, HCL fruit appeared to take advantage of their lower water potential at midday, when they showed higher rates of phloem flow. Although daily growth in HCL fruit undergoes periods of source limitation, this study showed how, at certain times of day, fruit may be more active sinks in attracting resources in high cropping conditions than at low crop loads.
机译:在浓密树和稀疏树之间比较了桃果实进出的血管和蒸腾作用的每日模式,以便评估这些流速何时受到资源可利用性(来源有限)或遗传因素的限制。白天水果的潜力(有限的下沉)。使用高度敏感的水果测量仪,在每种处理的几种水果上,在水果分裂过程中的细胞分裂(I期)和细胞膨胀(III期)时,确定了果实生长以及韧皮部,木质部和蒸腾流的微小变化。在细胞扩增期间,还比较了间苗处理对果实水势的影响。在第一阶段,在任何流量中都没有发现处理之间的差异,这表明从韧皮部和木质部中导入的新鲜物质(FM)在果实早期发育过程中受汇的限制。在第三阶段,HCL果实较小,白天的蒸腾速率较高。由于高的农作物负荷,木质部流没有显示任何来源限制。但是,在下午,盐渍海带在“水槽加强了”,因为这些果实在白天达到较低的水势。由于水果与水果之间的竞争,到下午和晚上,流向盐渍水果的韧皮部来源受到限制。但是,盐渍果实在中午表现出较高的韧皮部流动速率时似乎利用了其较低的水势。尽管HCL水果的日生长经历了源限制期,但这项研究表明,在一天的某些时候,在高种植条件下,水果可能比在低作物负荷下更活跃地吸引资源。

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