干旱调控降香黄檀心材大小和颜色的生理生化机制。

IF 3.5 2区 农林科学 Q1 FORESTRY
Zhiyi Cui, Houzhen Hu, Xiaofei Li, Xiaojin Liu, Qilei Zhang, Zhou Hong, Ningnan Zhang, Wei Lin, Daping Xu
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引用次数: 0

摘要

人们发现干旱会影响黄檀珍贵心材的大小和颜色,但其机制尚不清楚。为此,我们对15年的臭臭木和桑塔木混合人工林进行了为期7年的两级防雨和控制处理,测量了其心材大小、颜色、类黄酮含量和成分,并对2年的臭臭木盆栽幼苗进行了碳同位素标记和解剖观察。田间试验表明,干旱对降香菊心材大小和颜色有显著影响。在干旱条件下,过渡区淀粉的消耗比对照组多。干旱显著降低了颜色参数值,显著增加了总黄酮、糖苷、非赛酮、金菊素和claussequinone的含量,且总黄酮、糖苷、非赛酮、金菊素和claussequinone与L*和b*呈显著负相关。盆栽试验表明,在非结构碳水化合物(NSC)纵向运输过程中,严重干旱条件下树皮内液中13C丰度的稀释系数是对照条件下的2倍。严重干旱条件下,树皮内侧厚度和筛管横截面积显著低于对照。我们的研究结果进一步证实了干旱促进了香桐心材的形成,并讨论了心材形成对干旱响应的种间差异。干旱通过减少筛管横截面积,增强韧皮部和木质部之间NSC的交换运输,使更多的NSC进入木质部,干旱还促进过渡区淀粉的耗损,产生更多的心材。干旱通过增加心材中总黄酮、糖苷、非瑟酮、金菊素和月桂醌的含量使心材颜色变暗。据我们所知,这是第一次研究干旱调节心材形成的生理生化机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physiological and biochemical mechanisms of drought regulating the size and color of heartwood in Dalbergia odorifera.

Drought has been found to affect the size and color of precious heartwood of Dalbergia odorifera, but the mechanism remains unclear. For this purpose, we performed the measurement of heartwood size, color and flavonoid content and composition in a 15-year-old mixed plantation of D. odorifera and Santalum album that had been subjected to two levels of rainfall exclusion and control treatments for 7 years, and carbon isotope labeling and anatomical observation in 2-year-old potted D. odorifera seedlings exposed to two levels of drought and control treatments. The field experiment showed that drought had significant effects on heartwood size and color of D. odorifera. More starch was depleted in the transition zone (TZ) in drought than in control. Drought significantly decreased the values of color parameters and increased the contents of total flavonoids, glycitein, fisetin, chrysin and claussequinone, and total flavonoids, glycitein, fisetin, chrysin and claussequinone were significantly negatively correlated with L* and b*. The pot experiment showed that during longitudinal transport of nonstructural carbohydrate (NSC), the dilution factor of 13C abundance in the inner bark sap in severe drought (SD) was twice as much as that in control. The inner bark thickness and transverse area of sieve tubes in SD were significantly lower than those in control. Our findings further confirm that drought promotes the heartwood formation of D. odorifera, and discuss interspecific variations in the response of heartwood formation to drought. Drought enhances the exchange transport of NSC between phloem and xylem by reducing the transverse area of sieve tubes, thus causing more NSC to be transported into xylem, and drought also promotes the depletion of starch in the TZ to produce more heartwood. Drought darkens the heartwood color by increasing the contents of total flavonoids, glycitein, fisetin, chrysin and claussequinone in heartwood. To our knowledge, this is the first study addressing the physiological and biochemical mechanism of drought regulating heartwood formation.

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来源期刊
Tree physiology
Tree physiology 农林科学-林学
CiteScore
7.10
自引率
7.50%
发文量
133
审稿时长
1 months
期刊介绍: Tree Physiology promotes research in a framework of hierarchically organized systems, measuring insight by the ability to link adjacent layers: thus, investigated tree physiology phenomenon should seek mechanistic explanation in finer-scale phenomena as well as seek significance in larger scale phenomena (Passioura 1979). A phenomenon not linked downscale is merely descriptive; an observation not linked upscale, might be trivial. Physiologists often refer qualitatively to processes at finer or coarser scale than the scale of their observation, and studies formally directed at three, or even two adjacent scales are rare. To emphasize the importance of relating mechanisms to coarser scale function, Tree Physiology will highlight papers doing so particularly well as feature papers.
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