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首页> 外文期刊>Journal of the American Society for Horticultural Science >Influence of day and night temperature differentials on root elongationrate, root hydraulic properties, and shoot water relations inchrysanthemum
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Influence of day and night temperature differentials on root elongationrate, root hydraulic properties, and shoot water relations inchrysanthemum

机译:昼夜温差对根系伸长率,根系水力特性和枝水关系的影响

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The difference between night and day temperature (DIF = day - night temperature) has been shown to affect plant height. A positive DIF (+DIF), cooler night than day temperature, increases stem elongation while a negative DIF (DIF), warmer night than day temperature, decreases stem elongation. The physiological mechanism underlying the growth response to DIF is not understood, however, and the effects of dayight temperature differentials on root permeability to mater and root elongation rate have not been studied. The objective of this study was to describe how +DIF and -DIF temperature regimes affect leaf water relations, root water flux (J(v)), root hydraulic conductivity (L-p), and root elongation rates of 'Boaldi' chrysanthemum [Dendranthema xgrandiflora Kitam,'Boaldi' (syn, Chrysanthemum xmorifolium Ramat.)] plants over time. Leaf turgor pressure (psi p) was 0.1 to 0.2 MPa higher in plants grown in a +6 degrees C DIF environment throughout both the Light and dark periods, relative to those in a -6 degrees C DIF environment, J(v) differed markedly in roots of plants grown in +DIF vs -DIF environments, Rhythmic diurnal patterns of J(v) were observed in all DIF treatments, but the relative timing of flux minima and maxima differed among treatments. Plants grown in positive DIF regimes exhibited maximum root flux at the beginning of the light period, while those in negative DIF environments had maximum root nux during the first felv hours of the dark period. Plants grown in +DIF had significantly higher L-p than -DIF plants. Plants grown in +DIF and -DIF environments showed differences in the diurnal rhythm of root elongation. During the dark period, +DIF plants exhibited minimal root elongation rates, while -DIF plants exhibited maximal rates. During the light period, the converse was observed. In -DIF temperature regimes, periods of rapid root elongation coincided with periods of high J(v). Results of this study suggest that negative DIF environments lead to leaf turgor reductions and markedly alter diurnal patterns of root elongation These changes may, in turn, act to reduce stem elongation.
机译:夜间温度和白天温度之间的差异(DIF =白天-夜间温度)已显示出会影响株高。正DIF(+ DIF),夜晚温度比白天凉爽,可增加茎伸长,而负DIF(DIF),夜晚温度比白天凉爽,可降低茎伸长。然而,尚不清楚对DIF生长反应的潜在生理机制,并且尚未研究昼夜温差对根系透根性和根系伸长率的影响。这项研究的目的是描述+ DIF和-DIF温度制度如何影响叶片的水分关系,根系水通量(J(v)),根系水力传导率(Lp)和'Boaldi'菊花[Dendranthema xgrandiflora]的根系伸长率。 Kitam,'Boaldi'(同系,菊花xmorifolium Ramat。)]随时间推移而种植。与在-6 C DIF环境中的植物相比,在明亮和黑暗期间,在+6 C DIF环境中生长的植物的叶片膨压(psi p)高0.1至0.2 MPa在+ DIF与-DIF环境中生长的植物根部,在所有DIF处理中均观察到J(v)的节律日变化,但不同处理中通量最小值和最大值的相对时间有所不同。以正DIF方式生长的植物在光照期开始时表现出最大的根通量,而在负DIF环境中的植物在黑暗时期的前半个小时具有最大的根部通量。 + DIF中生长的植物的L-p明显高于-DIF植物。在+ DIF和-DIF环境中生长的植物显示出根伸长的昼夜节律不同。在黑暗时期,+ DIF植物表现出最小的根伸长率,而-DIF植物表现出最大的根伸长率。在光照期间,观察到相反的情况。在-DIF温度范围内,快速的根伸长期与高的J(v)期相吻合。这项研究的结果表明,负DIF环境会导致叶片膨大程度降低,并且显着改变根系伸长的昼夜模式。这些变化反过来可能会导致茎伸长降低。

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