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血管壁振动:栓塞修复的触发因素?

Vessel wall vibrations: trigger for embolism repair?

作者信息

Salleo Sebastiano, Trifilò Patrizia, Lo Gullo Maria Assunta

机构信息

Dipartimento di Biologia, Università di Trieste, Via L. Giorgieri 10, 34127 Trieste, Italy.

Dipartimento di Scienze della Vita 'M. Malpigli', Università di Messina, Salita Sperone 31, 98166 Messina S. Agata, Italy.

出版信息

Funct Plant Biol. 2008 Jun;35(4):289-297. doi: 10.1071/FP07239.

Abstract

Xylem embolism repair is preceded by starch depolymerisation in vessel-associated cells (VAC) of Laurus nobilis L. (laurel) twigs, but the primary signal triggering such a process is still unknown. We tested the hypothesis that conduit wall vibrations during cavitation may be sensed by VAC inducing starch-to-sugar conversion. Twigs of laurel from watered or stressed plants were exposed to ultrasound for 60 min to simulate acoustic waves emitted by cavitating conduits. Preliminary tests showed that ultrasound caused no damage to cell membrane integrity nor did they cause xylem embolism. The number of VAC with high starch content (HSC-cells) was estimated microscopically by counting the cells with more than 50% of their lumen filled with starch granules. Sonication had no effect on HSC-cells in twigs from watered plants while it induced a drop in the percentage HSC-cells from 80 to 40% in twigs from stressed plants, at the ultrasound source location. No effect was recorded in these twigs 20 mm from the ultrasound source. Sonication was a good simulator of cavitation in inducing starch depolymerisation which suggests a possible bio- physical nature for the signal initiating embolism repair.

摘要

月桂树枝条的维管束相关细胞(VAC)中淀粉解聚先于木质部栓塞修复,但触发这一过程的主要信号仍不清楚。我们测试了这样一个假设,即空化过程中导管壁的振动可能被VAC感知,从而诱导淀粉向糖的转化。将浇水或受胁迫植物的月桂树枝条暴露于超声波下60分钟,以模拟空化导管发出的声波。初步测试表明,超声波不会损害细胞膜完整性,也不会导致木质部栓塞。通过计数管腔中50%以上充满淀粉颗粒的细胞,在显微镜下估算高淀粉含量VAC(HSC细胞)的数量。超声处理对浇水植物枝条中的HSC细胞没有影响,而在受胁迫植物枝条中,在超声源位置,它导致HSC细胞的百分比从80%降至40%。在距离超声源20毫米的这些枝条中未记录到影响。超声处理是诱导淀粉解聚的空化良好模拟器,这表明启动栓塞修复的信号可能具有生物物理性质。

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