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高光降低了番茄木质部对果实生长的贡献。

High light decreases xylem contribution to fruit growth in tomato.

机构信息

Laboratory of Plant Ecology, Department of Applied Ecology and Environmental Biology, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, B-9000, Gent, Belgium.

出版信息

Plant Cell Environ. 2015 Mar;38(3):487-98. doi: 10.1111/pce.12411. Epub 2014 Aug 27.

Abstract

Recently, contradicting evidence has been reported on the contribution of xylem and phloem influx into tomato fruits, urging the need for a better understanding of the mechanisms involved in fruit growth. So far, little research has been performed on quantifying the effect of light intensity on the different contributors to the fruit water balance. However, as light intensity affects both transpiration and photosynthesis, it might be expected to induce important changes in the fruit water balance. In this study, tomato plants (Solanum lycopersicum L.) were grown in light and shade conditions and the fruit water balance was studied by measuring fruit growth of girdled and intact fruits with linear variable displacement transducers combined with a model-based approach. Results indicated that the relative xylem contribution significantly increased when shading lowered light intensity. This resulted from both a higher xylem influx and a lower phloem influx during the daytime. Plants from the shade treatment were able to maintain a stronger gradient in total water potential between stem and fruits during daytime, thereby promoting xylem influx. It appeared that the xylem pathway was still functional at 35 days after anthesis and that relative xylem contribution was strongly affected by environmental conditions.

摘要

最近,有关木质部和韧皮部流入对番茄果实的贡献的相互矛盾的证据已经被报道,这促使人们需要更好地理解参与果实生长的机制。到目前为止,很少有研究定量研究光强对果实水分平衡不同贡献者的影响。然而,由于光强会同时影响蒸腾和光合作用,因此它可能会导致果实水分平衡发生重要变化。在这项研究中,番茄植株(Solanum lycopersicum L.)在光照和遮荫条件下生长,并通过使用线性可变位移传感器结合基于模型的方法来测量环割和完整果实的果实生长,从而研究了果实水分平衡。结果表明,当遮荫降低光强时,木质部的相对贡献显著增加。这是由于白天木质部流入量增加和韧皮部流入量减少所致。来自遮荫处理的植物能够在白天维持茎和果实之间总水势梯度更强,从而促进木质部流入。木质部途径似乎在授粉后 35 天仍能发挥作用,并且相对木质部贡献强烈受到环境条件的影响。

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