桦树属(Betula L.)叶板色素沉着

R. N. Babaev, N. Besschetnova, V. Besschetnov
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摘要

本文对桦树属(Betula L.)不同种类植物的叶片色素含量进行了比较评价。用分光光度法测定了参与光合作用的色素含量。用压碎的薄板提取液在96%乙醇溶液中的光密度来测定色素的浓度。结果表明,不同类型和形态的桦树叶片器官的色素组成是由基因型和表型特征决定的。6月份,种内样品的色素组成与种间比的差异表现出较强的抑制特征。然而,当考虑到7月和8月同样的研究迹象时,它们在物种和形式之间也被观察到克制。叶片器官光合色素含量的遗传和适应性使我们可以将这一指标作为育种和种子生长对象组合组成的选择、清查和修订的识别特征之一。考虑到欧洲桦树在下诺夫哥罗德地区的成功生长,因此,卡累利阿桦树适合引入新创建的植物,因为实验强调了它与本地物种的明显相似性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genus birch (Betula L.) leaf plates pigmentation
A comparative assessment of various species included in the taxonomic system of the genus birch (Betula L.) by the content of pigments in the leaf apparatus was carried out. The content of pigments involved in photosynthesis was determined by spectrophotometric analysis. The concentration of pigments was estimated by the optical density of the extract from the crushed sheet plate in 96 % ethanol. It is established that the pigment composition of the leaf apparatus of various types and forms of birch is determined by genotypic and phenotypic features. The studied samples within the species showed a more restrained character in terms of the difference in pigment composition in relation to the interspecific ratio in June. However, when taking into account the same studied signs in July and August, their restraint was also observed between species and forms. The hereditary and adaptive nature of the content of photosynthetic pigments of the leaf apparatus allows us to consider this indicator as one of the identification features during the selection inventory and revision of the assortment composition of breeding and seed-growing objects. Taking into account the success of the growth of European birch on the territory of the Nizhny Novgorod region, it follows that Karelian birch is suitable for introduction into the newly created plantings, as experiments emphasize its pronounced similarity with the native species.
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