原生质体共培养法测定红树、黄花树、速生树种白桦和白杨的化感作用

H. Sasamoto, S. Yokota
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引用次数: 3

摘要

采用干燥叶片夹心法和叶片原生质体共培养法对生长在亚热带半咸淡水地区的耐盐耐低温红树(Kandelia obovata)和生长在温带地区的白桦(Betula platyphylla)和白杨(Populus alba)两种速生乔木的化感作用进行了研究。用夹心法检测莴苣根的生长,用50 mg的干燥成熟叶对莴苣根的生长有50%的抑制作用。在原生质体共培养法中,在1 × 104 mL-1和5 × 104 mL-1浓度下,卵黄叶原生质体对生菜原生质体细胞分裂的抑制率分别为31%和69%。比较了不同科红树林植物化感活性与耐盐性的负相关关系。在5 × 104 mL-1条件下,用干燥的白桦幼叶夹心法对线虫的抑制率为37%,用白桦叶片原生质体共培养法对线虫的抑制率仅为10%。在5 × 104 mL-1的密度下,叶片原生质体具有较高的刺激活性。本文讨论了三种树种叶片原生质体中脱落酸含量随组培耐盐性和抗逆性的高低而变化的一种可能的化感化学物质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In vitro Bioassay of Allelopathic Activities of a Mangrove Tree, Kandelia obovata, and Fast-growing Trees, Betula platyphylla and Populus alba, Using Protoplast Co-culture Method
Allelopathic activities of a salt-tolerant and low-temperature tolerant mangrove tree, Kandelia obovata, which grows in brackish water regions of sub-tropical areas, and two fast-growing trees, Betula platyphylla and Populus alba, which grow in the temperate area, were examined by two in vitro bioassay methods, the sandwich method using dried leaves and the protoplast co-culture method using leaf protoplasts. Lettuce root growth examined by the sandwich method, was inhibited 50% by 50 mg dried mature leaves of K. obovata. In the protoplast co-culture method, inhibition rates of cell division of lettuce protoplasts were 31% and 69% by leaf protoplasts of K. obovata at densities of 1 × 104 mL-1 and 5 × 104 mL-1, respectively. These results were compared with the inverse relationship between allelopathic activities and salt tolerance of mangrove plants of different families. B. platyphylla showed 37% inhibition by the sandwich method using dried young leaves, but only 10% inhibition at 5 × 104 mL-1 by the protoplast co-culture method using leaf protoplasts of B. platyphylla. Dried young leaves of P. alba showed 66% inhibition, but the leaf protoplasts at the density of 5 × 104 mL-1 showed highly stimulatory activity. Abscisic acid, of which contents in leaf protoplasts of three tree species varies from high to low in relation to salt tolerance and recalcitrance of tissue culture, was discussed as a putative allelochemical.
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