水杉和柳杉抗栓塞能力与管胞解剖结构及机械特性的关系
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“千人计划”项目(Z111021201)


Relationship between Cavitation Resistance and Tracheid Anatomy & Mechanical Traits in Metasequoia glyptostroboides and Cryptomeria fortunei
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    摘要:

    裸子植物抵抗栓塞的能力是表征其抗旱性的一个重要指标,主要取决于木质部管胞结构及其机械特性。该研究采用离心机方法,建立水杉(Metasequoia glyptostroboides)和柳杉(Cryptomeria fortunei)2个园林树种的脆弱性曲线,比较二者之间管胞解剖结构和机械特性的差异,以明确2树种的水分利用策略,为生产中合理栽植提供理论依据。结果表明:(1)水杉的比导水率[(1.73±0.21) kg·m-1·s-1·MPa-1]高于柳杉[(0.47±0.02) kg·m-1·s-1·MPa-1)],但柳杉的抗栓塞能力[P50=(-4.99±0.11) MPa]较水杉[P50=(-2.28±0.09)MPa)]强。(2)水杉的管胞平均直径[Dmean=(13.61±0.46) μm)]、平均长度[Lmean= (1 511.93±125.31) μm]及其水力直径[Dh= (15.57±0.05) μm]均大于柳杉[Dmean=(9.48±0.18) μm、Lmean=(1 293.48±78.56) μm、Dh= (11.68±0.02) μm],但管胞密度[(2 260±77) N/mm2]小于柳杉[(2 970±171) N/mm2]。(3)水杉管胞间纹孔塞环的弹性比柳杉强。(4)Ca2+降低了2个树种的纹孔塞环结构弹性。研究认为,柳杉较强的抗栓塞能力与其管胞直径小、长度短、密度大和纹孔膜塞环结构弹性小有关,而且柳杉更适宜生长在相对干旱的生境中。

    Abstract:

    The cavitation resistance of gymnosperms, an indicator of drought resistance, depends on the xylem tracheid structure and mechanical traits. In order to provide theoretical basis for reasonable cultivation during production, we studied the waterusing strategies of two garden species Metasequoia glyptostroboides and Cryptomeria fortunei with the advanced centrifuge technique and compared the tracheid anatomy and mechanical traits. The results demonstrate that (1) M. glyptostroboides has higher specific hydraulic conductivity[Ks=(1.73±0.21) kg·m-1·s-1·MPa-1] and weaker cavitation resistance[P50=(-2.28±0.09) MPa] than C. fortuneiKs=(0.47±0.02) kg·m-1·s-1·MPa-1; P50=(-4.99±0.11) MPa]. (2) M. glyptostroboides has wider and longer tracheid with higher hydraulic diameter but lower density[Dmean=(13.61±0.46) μm; Lmean= (1 511.93±125.31) μm; Dh=(15.57±0.05) μm; Density=(2 260±77) N/mm2] than C. fortuneiDmean=(9.48±0.18) μm; Lmean=(1 293.48±78.56) μm; Dh=(11.68±0.02) μm; Density=(2 970±171) N/mm2]. (3) The torusmargo of M. glyptostroboides is more flexible than that of C. fortunei. (4) Ca2+ weakened the flexibility of torusmargo. Due to the narrow, short and less dense tracheid with less flexible torusmargo, C. fortunei is less cavitation resistant and more tolerant to drought stress, compared with M. glyptostroboides.

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刘萌萌,MELVIN T. Tyree.水杉和柳杉抗栓塞能力与管胞解剖结构及机械特性的关系[J].西北植物学报,2017,37(4):744-750

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  • 在线发布日期: 2017-05-05
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