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Induction of Frost Hardiness in Stem Cortical Tissues of Cornus stolonifera Michx. by Water Stress: I. Unfrozen Water in Cortical Tissues and Water Status in Plants and Soil 1

机译:在山茱Corn的茎皮质组织中抗霜冻性的诱导。通过水分胁迫:I.皮质组织中的未冻结水和植物和土壤中的水分状况1

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摘要

Water supply and day length were varied in cold hardiness studies of red osier dogwood plants (Cornus stolonifera Michx.). The frost killing temperature, the content and freezing of stem cortical tissue water along with soil moisture content and tension were evaluated. Seven days of water stress in long and short day photoperiod regimes caused a rapid decrease in soil moisture content and plant water potential. During the same period, the frost hardiness increased from −3 to −11 C. Further water stress treatment had little effect. Control plants in short days showed only a gradual decrease in plant water potential and only gradually increased in frost hardiness while control plants in long days were unchanged. Freezing studies using nuclear magnetic resonance showed that increased hardiness in water-stressed plants resulted from both an increased tolerance of freezing and an increased avoidance of freezing, the latter resulting from higher solute concentration in the tissue solutions. The short day controls also showed similar changes; however, the changes were smaller over the 21 days of the study.
机译:在红腰山茱wood植物(Cornus stolonifera Michx。)的抗寒性研究中,供水和日长有所不同。评估了除霜温度,茎皮质组织水的含量和冻结以及土壤水分含量和张力。在长日和短日光周期条件下,七天的水分胁迫导致土壤水分含量和植物水势迅速下降。在同一时期,抗冻性从-3增加到-11C。进一步的水分胁迫处理效果不明显。短时间内的对照植物显示出植物水势仅逐渐降低,而抗冻性仅逐渐增加,而长日中的对照植物未改变。使用核磁共振进行的冷冻研究表明,水分胁迫植物的抗逆性增强是由于对冷冻的耐受性增强和对冷冻的避免增加,后者是由于组织溶液中的溶质浓度较高而引起的。短日对照也显示了类似的变化。但是,在研究的21天中,变化较小。

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