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本文引用的文献

1
Direct relation between growth and frost hardening in cabbage leaves.甘蓝叶片生长与抗寒能力的直接关系。
Plant Physiol. 1969 Jun;44(6):923-8. doi: 10.1104/pp.44.6.923.
2
The long day leaf as a source of cold hardiness inhibitors.长日照叶片作为抗寒抑制剂的来源。
Plant Physiol. 1967 Oct;42(10):1384-8. doi: 10.1104/pp.42.10.1384.
3
Environmental control of cold hardiness in woody plants.木本植物抗寒性的环境控制。
Plant Physiol. 1967 Sep;42(9):1191-6. doi: 10.1104/pp.42.9.1191.
4
The Relative Sensitivity of Xanthium Leaves of Different Ages to Photoperiodic Induction.不同年龄的苍耳叶片对光周期诱导的相对敏感性
Plant Physiol. 1954 May;29(3):251-7. doi: 10.1104/pp.29.3.251.

诱导蛇葡萄在冷驯化

Induction of Cold Acclimation in Cornus stolonifera Michx.

机构信息

Laboratory of Plant Hardiness, Department of Horticultural Science, University of Minnesota, St. Paul, Minnesota 55101.

出版信息

Plant Physiol. 1971 Jan;47(1):98-103. doi: 10.1104/pp.47.1.98.

DOI:10.1104/pp.47.1.98
PMID:16657586
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC365819/
Abstract

A warm (20 to 15 Celsius day or night) preconditioning treatment enhanced cold acclimation of Cornus stolonifera bark under short-day conditions when plants were preconditioned for at least 4 weeks. Warm preconditioning inhibited the acclimation of plants subjected to long photoperiods. Removing leaves from plants exposed to low temperatures and short days inhibited acclimation. Removal of buds did not affect acclimation. Plants did not acclimate unless they were exposed to at least 4 weeks of short photoperiods prior to defoliation. Plants began to acclimate to cold at the time of growth cessation but not before. When half of the leaves were removed from plants, the defoliated and foliated branches both acclimated as well as branches on completely foliated plants. Girdling the phloem between foliated and defoliated branches prevented acclimation of the latter regardless of the position of the girdle in relation to the root system and the defoliated branch. When all of the leaves of plants were covered with aluminum foil to exclude light after 0 or 4 weeks of exposure to short days, the results resembled a defoliation study, i.e., plants with leaves covered at the start of the experiment failed to acclimate, and those covered after 4 weeks acclimated to some extent but less than uncovered control plants. Under longday conditions plants with all leaves covered failed to acclimate, and plants with none or half of their leaves covered acclimated equally and to a limited extent. Under short-day conditions, however, the covered branches of partially covered plants acclimated more than their uncovered counterparts or branches of totally uncovered plants.

摘要

在短日照条件下,经过至少 4 周的预适应处理,温暖(20 至 15 摄氏度的白天或夜晚)预处理可增强山茱萸树皮对低温的适应能力。温暖的预处理抑制了长光照期植物的适应。将叶片从暴露于低温和短日照的植物上除去会抑制适应。去除芽不会影响适应。除非植物在除叶前至少经历 4 周的短光照期,否则它们不会适应。植物在生长停止时开始适应寒冷,但在此之前不会。当从植物上除去一半的叶子时,除叶和有叶的枝条以及完全有叶的植物的枝条都能适应。在有叶和除叶的枝条之间环剥韧皮部,无论环剥带相对于根系和除叶枝条的位置如何,都能阻止后者的适应。当植物的所有叶片在经历 0 或 4 周短日照暴露后用铝箔覆盖以排除光线时,结果类似于除叶研究,即在实验开始时叶片被覆盖的植物未能适应,而在 4 周后被覆盖的植物在一定程度上适应,但不如未覆盖的对照植物适应。在长日照条件下,所有叶片被覆盖的植物不能适应,而没有叶片或只有一半叶片被覆盖的植物则以相同的程度和有限的程度适应。然而,在短日照条件下,部分覆盖植物的覆盖枝条比未覆盖枝条或完全未覆盖植物的枝条适应得更多。