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砧木根系水力与接穗活力之间的关系:根水通道蛋白扮演什么角色?

The relationship between root hydraulics and scion vigour across Vitis rootstocks: what role do root aquaporins play?

机构信息

USDA-ARS, Crops Pathology and Genetics Research Unit, Davis, CA 95616, USA.

出版信息

J Exp Bot. 2012 Nov;63(18):6445-55. doi: 10.1093/jxb/ers312. Epub 2012 Nov 7.

Abstract

Vitis vinifera scions are commonly grafted onto rootstocks of other grape species to influence scion vigour and provide resistance to soil-borne pests and abiotic stress; however, the mechanisms by which rootstocks affect scion physiology remain unknown. This study characterized the hydraulic physiology of Vitis rootstocks that vary in vigour classification by investigating aquaporin (VvPIP) gene expression, fine-root hydraulic conductivity (Lp(r)), % aquaporin contribution to Lp(r), scion transpiration, and the size of root systems. Expression of several VvPIP genes was consistently greater in higher-vigour rootstocks under favourable growing conditions in a variety of media and in root tips compared to mature fine roots. Similar to VvPIP expression patterns, fine-root Lp(r) and % aquaporin contribution to Lp(r) determined under both osmotic (Lp(r)(Osm)) and hydrostatic (Lp(r)(Hyd)) pressure gradients were consistently greater in high-vigour rootstocks. Interestingly, the % aquaporin contribution was nearly identical for Lp(r)(Osm) and Lp(r)(Hyd) even though a hydrostatic gradient would induce a predominant flow across the apoplastic pathway. In common scion greenhouse experiments, leaf area-specific transpiration (E) and total leaf area increased with rootstock vigour and were positively correlated with fine-root Lp(r). These results suggest that increased canopy water demands for scion grafted onto high-vigour rootstocks are matched by adjustments in root-system hydraulic conductivity through the combination of fine-root Lp(r) and increased root surface area.

摘要

葡萄接穗通常被嫁接到其他葡萄品种的砧木上,以影响接穗活力并提供对土壤传播的病虫害和非生物胁迫的抗性;然而,砧木影响接穗生理学的机制仍不清楚。本研究通过研究水通道蛋白(VvPIP)基因表达、细根水力传导性(Lp(r))、水通道蛋白对 Lp(r)的贡献百分比、接穗蒸腾和根系大小,对活力分类不同的葡萄砧木的水力生理学进行了表征。在各种介质和根尖中,与成熟细根相比,在有利生长条件下,几种 VvPIP 基因在高活力砧木中的表达始终更高。与 VvPIP 表达模式相似,在渗透(Lp(r)(Osm))和静水压力(Lp(r)(Hyd))梯度下确定的细根 Lp(r)和水通道蛋白对 Lp(r)的贡献百分比在高活力砧木中始终更高。有趣的是,尽管静水压力梯度会诱导质外体途径的主要流动,但水通道蛋白对 Osm 和 Hyd 的贡献百分比几乎相同。在常见的温室实验中,叶面积特异性蒸腾(E)和总叶面积随砧木活力的增加而增加,与细根 Lp(r)呈正相关。这些结果表明,嫁接到高活力砧木上的接穗对树冠水分的需求增加,通过细根 Lp(r)和增加的根表面积的组合,根系水力传导性得到了调整。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7df8/3504504/ec4592e7a721/exbotj_ers312_f0005.jpg

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