Suppr超能文献

栎属植物的木质部功能障碍:导管大小、侵填体、空穴化及栓塞的季节性变化

Xylem dysfunction in Quercus: vessel sizes, tyloses, cavitation and seasonal changes in embolism.

作者信息

Cochard H, Tyree M T

机构信息

Station de Syvliculture et de Production, INRA, Centre de Recherches Forestières de Nancy, Champenoux 54280 Seichamps, France.

出版信息

Tree Physiol. 1990 Dec;6(4):393-407. doi: 10.1093/treephys/6.4.393.

Abstract

The seasonal progression of xylem dysfunction from tyloses and embolism induced both by cavitation and frost was studied in Quercus rubra L. and Quercus alba L. branches. Vessel lengths and diameters were measured in current-year rings of branches of various ages. Vessels in current-year shoots are about the same size as those in many diffuse porous trees, but vessels in older branches are two to six times larger in diameter and typically more than 10 times longer. Large Quercus vessels were more vulnerable to cavitation than small vessels. The small vessels in current-year shoots were more vulnerable to cavitation than vessels of comparable size in diffuse porous species. Earlywood vessels are completely blocked by tyloses within a year of their formation. Tylose growth starts in winter, but the vessels are not fully blocked until the next summer. Many latewood vessels, by contrast, remain free of complete blockage for several years. In Q. rubra, loss of hydraulic conductivity in current-year shoots due to cavitation reaches 20% by August and > 90% after the first hard frost. Both laboratory and field observations confirm that the role of frost in causing loss of hydraulic conduction by embolism is much more dramatic in Quercus than in conifers and diffuse porous hardwoods.

摘要

在红栎(Quercus rubra L.)和白栎(Quercus alba L.)的枝条中,研究了由气穴化和霜冻诱导的侵填体和栓塞所导致的木质部功能障碍的季节性变化。在不同年龄枝条的当年年轮中测量了导管的长度和直径。当年生嫩枝中的导管大小与许多散孔材树木中的导管大致相同,但老枝中的导管直径大两到六倍,长度通常超过10倍。大型栎属导管比小型导管更容易发生气穴化。当年生嫩枝中的小型导管比散孔材中大小相当的导管更容易发生气穴化。早材导管在形成后的一年内会被侵填体完全堵塞。侵填体生长始于冬季,但直到次年夏天导管才会被完全堵塞。相比之下,许多晚材导管在几年内都不会完全堵塞。在红栎中,当年生嫩枝由于气穴化导致的导水率损失在8月达到20%,首次严霜后超过90%。实验室和野外观察均证实,霜冻通过栓塞导致导水率损失的作用在栎属中比在针叶树和散孔阔叶树中更为显著。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验