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首页> 外文期刊>Plant, Cell & Environment >Wood structure and function change with maturity: Age of the vascular cambium is associated with xylem changes in current-year growthKey-words
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Wood structure and function change with maturity: Age of the vascular cambium is associated with xylem changes in current-year growthKey-words

机译:成熟的木结构和功能变化:血管结合年龄与当前年度增长单词的木门变化有关

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Xylem vessel structure changes as trees grow and mature. Age- and development-related changes in xylem structure are likely related to changes in hydraulic function. We examined whether hydraulic function, including hydraulic conductivity and vulnerability to water-stress-induced xylem embolism, changed over the course of cambial development in the stems of 17 tree species. We compared current-year growth of young (1-4 years), intermediate (2-7 years), and older (3-10 years) stems occurring in series along branches. Diffuse and ring porous species were examined, but nearly all species produced only diffuse porous xylem in the distal branches that were examined irrespective of their mature xylem porosity type. Vessel diameter and length increased with cambial age. Xylem became both more conductive and more cavitation resistant with cambial age. Ring porous species had longer and wider vessels and xylem that had higher conductivity and was more vulnerable to cavitation; however, these differences between porosity types were not present in young stem samples. Understanding plant hydraulic function and architecture requires the sampling of multiple-aged tissues because plants may vary considerably in their xylem structural and functional traits throughout the plant body, even over relatively short distances and closely aged tissues.
机译:木质血管结构随着树木的成长和成熟而变化。与液压功能的变化可能有关的年龄和发展相关的变化。我们检查了液压功能,包括液压导电性和对水分应激诱导的木耳栓塞的脆弱性,在17棵树种类的茎秆发育过程中改变了患者。我们比较了年轻(1-4岁)的当前增长,中级(2-7岁),更老(3 - 10年)沿着分支机构发生源。检查弥散和环多孔物种,但几乎所有物种在远端分支中仅产生漫射多孔Xylem,而不管其成熟的木质孔隙型如何检查。血管年龄的血管直径和长度增加。木质人的年龄变得更加导电和更具耐气性。环多孔物种具有更长,更宽的血管和具有更高导电性的木质,并且更容易受到空化;然而,孔隙率类型之间的差异不存在于幼虫样品中。了解植物液压功能和架构需要多年老化组织的取样,因为植物在整个植物体中的Xylem结构和功能性质中可能变化很大,甚至在相对较短的距离和紧密老化的组织中。

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