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Structural, Isoenzymatic Diversity and some Biotechnological Procedures of some Salsola Species under Desert Saline Environments

机译:沙漠盐碱环境下某些Salsola物种的结构,同工酶多样性和一些生物技术程序

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Genetic, cytologica! and floral organs structural diversity and its adaptive trends to natural saline desert environments for some Asiatic annual haloxerophytes: S. pestifer, S. praecox and Climacoptera lanata (formely S. lanata) were investigated. Eight enzyme systems representing14-17 loci were analyzed: 6PGD, DIA, G6PD, GDH, GOT, MDH, PGM, PGI. Parameters describing 6PD, GDH, GOT, MDH, PGM, PGI. Parameters describing genetic diversity indicate a rather low level of genetic variation of investigated species in the presence of its high polymorphism of floral organs structures. A'similar number of chromosomes (2n = 18) have been detected for all examined taxa. Preliminarily methodological work on plant micropratural deserts populations coupled with clonal propagation through tissue culture may offer an alternative way for improvement and conservation of arid salt/affected lands in Uzbekistan.
机译:遗传,细胞学!研究了一些亚洲一年生盐生植物的植物和花器官结构多样性及其对天然盐碱沙漠环境的适应趋势:S。pestifer,S。praecox和Climacoptera lanata(以前称为S. lanata)。分析了代表14-17个基因座的八个酶系统:6PGD,DIA,G6PD,GDH,GOT,MDH,PGM,PGI。描述6PD,GDH,GOT,MDH,PGM,PGI的参数。描述遗传多样性的参数表明,在存在花器官结构多态性的情况下,所调查物种的遗传变异水平较低。对于所有检查的分类单元,已检测到相似数目的染色体(2n = 18)。对植物微微荒漠种群进行初步的方法学研究,并通过组织培养进行克隆繁殖,可能为改善和保护乌兹别克斯坦的干旱盐/受影响土地提供另一种方法。

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