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首页> 外文期刊>Industrial Crops and Products >Resin exudation profile, chemical composition, and secretory canal characterization in contrasting yield phenotypes of Pinus elliottii Engelm
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Resin exudation profile, chemical composition, and secretory canal characterization in contrasting yield phenotypes of Pinus elliottii Engelm

机译:在Pinus Elliottii Engelm的对比产生表型中树脂渗出型材,化学成分和分泌管特征

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摘要

In conifer stems, secretory canals synthesize and store resin for defense against herbivores and pathogens. Resin terpenes are used as raw material by an array of industrial sectors. Most forest stands operationally used in resin extraction are derived from seeds, showing high genetic variation, which reflects in yield. The objective of this study was to identify adult slash pine (Pious elliottii Engelm.) trees of high yield of resin in a short timeframe by resin mass flow rate analysis, aiming at the establishment of elite forests for tapping prior to its start. In addition, the anatomical basis of resin yield was investigated by examining the correlation between parameters such as number, shape, area and internal volume of wood canals with resin production. Monoterpene composition in resin of high and low yielding trees was also compared. The resin flow-based selection method was reliable for resin yield phenotype detection, confirming this property in trees formerly identified as being of high and low resin production by conventional tapping. The reverse test for identification of high and low yield resin features in previously untapped younger plants was in good agreement with their yields after subsequent standard tapping procedure. To evaluate and quantify the three-dimensional structure of resin canals, we used microCT scans. High yielding trees had more axial resin canals when compared with low yielding ones. Frequency of putative anastomosed canals and canal diameter were also superior in the former. Chemical analyses of resin monoterpenes revealed that the ratio of alpha-pinene/beta-pinene was lower in more productive trees, which also had more limonene in total terpenes compared with their low yield counterparts. Data support the use of short-term resin mass flow rate analysis as a tool to identify and select high yield trees for the establishment of elite slash pine forests for resin tapping operations. Strong correlation of the superesinous phenotype with canal density and structure was also evident.
机译:在针叶树茎中,分泌管合成和储存树脂以防御食草动物和病原体。树脂Terpenes通过一系列工业部门用作原料。在树脂萃取中使用的大多数森林代表源自种子,显示出高遗传变异,这反映了产量。本研究的目的是在通过树脂质量流量分析中识别成人斜线(虔诚的Elliottii Engelm.)树脂的高产率树脂树木,旨在在开始之前建立精英森林以进行攻丝。此外,通过检查具有树脂生产的数量,形状,面积和木材的内部容积等参数之间的相关性来研究树脂产量的解剖学。还比较了高且低产树脂树脂中的单萜组合物。树脂流动的选择方法可靠用于树脂产量表型检测,确认以前通过常规攻丝鉴定为高和低树脂产生的树木中的这种性质。在先前未开发的年轻植物中鉴定高产树脂特征的反向试验与后续标准攻丝程序后的产量很好。为了评估和量化树脂运河的三维结构,我们使用MicroCT扫描。与低产量相比,高产树具有更多的轴向树脂运河。推定的余有余量的运河和管道的频率也在前者上优越。树脂单口的化学分析显示,与其低产量同步相比,α-Pine烯/β-固烯含量更高的树木的比例较低,其在总萜烯中也具有更多的柠檬烯。数据支持使用短期树脂质量流量分析作为识别和选择高产树的工具,为树脂攻丝操作建立精英斜线杉木林。与管密度和结构的过度表型强烈相关也是明显的。

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