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Salt stress affects xylem differentiation of grey poplar (Populus × canescens)

木质部 开枪 形成层 植物 脱落酸 盐度 光合作用 化学 生物 园艺 渗透压 生物化学 生态学 基因 有机化学
作者
María Escalante‐Pérez,Silke Lautner,Uwe Nehls,Anita Selle,Markus Teuber,Jörg‐Peter Schnitzler,Thomas Teichmann,Payam Fayyaz,Wolfram Hartung,Andrea Polle,Jörg Fromm,Rainer Hedrich,Peter Ache
出处
期刊:Planta [Springer Science+Business Media]
卷期号:229 (2): 299-309 被引量:84
标识
DOI:10.1007/s00425-008-0829-7
摘要

In this study the impact of salt stress on the physiology and wood structure of the salt-sensitive Populus x canescens was investigated. Two weeks of salt stress altered wood anatomy significantly. The xylem differentiation zone was reduced and the resulting vessels exhibited reduced lumina. To understand this phenomenon, ion composition, levels of corresponding transcripts and of the stress hormone ABA were analysed. With increasing sodium and chloride concentrations, a general reduction of potassium was found in roots and shoots, but not in leaves. Consequently, the corresponding K+ channel transcripts in roots favoured K+ release. The overall osmolarity in leaves was up to fourfold higher than in roots or shoots. Therefore, adjustment of the K+/Na+ balance seemed not to be required in leaves. Sodium increased gradually from roots to shoots and then to leaves indicating that sodium storage took place first in roots, then in shoots, and finally in leaves to protect photosynthesis from salt effects as long as possible. Since leaf abscisic acid levels markedly increased, stomatal closure seemed to limit CO2 uptake. As a consequence, diminished nutrient supply to the cambium in combination with lowered shoot K+ content led to decreased vessel lumina, and a reduction of the radial cambium was observed. Thus, xylem differentiation was curtailed and the development of full size vessels was impaired.
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