首页> 外文期刊>Saudi Journal of Biological Sciences >Plant traits and phenotypic variability effect on the phytomass production ofStipagrostis ciliata (Desf.) De Winter
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Plant traits and phenotypic variability effect on the phytomass production ofStipagrostis ciliata (Desf.) De Winter

机译:植物性状及表型变异性对普雷斯蒂氏菌(DESF。)DE冬季植物生产的植物生成

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A process of continuous degradation of plant communities, due mainly to long-term overgrazing has been revealed by most ecological studies in North African arid climate. Notably, this degradation appeared across the depletion of perennial grass species exhibiting low density in the majority of range ecosystems. This study aimed to examine the phenology and the aboveground phytomass production of Stipagrostis ciliata (Desf.) De Winter accessions, a perennial grass, growing under the same environment but coming from different climates of Tunisia. Additionally, the extent of genetic variation in phenological parameters, root and shoot phytomass productivity and the correlations among these parameters were also analyzed. Significant differences in all morphological parameters of S. ciliata accessions were revealed by ANOVA test and were corroborated with significant and positive correlation indicated by Pearson’s correlation analysis. Plant diameter, biovolume, root biomass with protective sleeve and spike number exhibited significant differences and high distinctiveness between S. ciliata accessions. Tukey’s HDS tests indicated the presence of three groups of accessions. Principal component analysis (PCA) applied on a table with eight observations and 13 variables, and dispersion of S. ciliata accessions on the first two axes of PCA confirmed the presence of three groups of accessions. Trait variability in the field for the five accessions is more likely to be the result of phenotypic plasticity rather than of genetic differentiation between accessions. Overall, the characterization of S. ciliata accessions exhibited significant differences in terms of morphological and biomass productivity.
机译:北非干旱气候中最生态研究揭示了植物群落的持续降解植物群落的过程。值得注意的是,在大多数范围生态系统中表现出低密度的多年生草种类的消耗出现了这种降解。本研究旨在审查Stipagrostis Ciliata(Desf)De冬季牧草,一间多年生草,在同一环境下生长而且来自不同气候的孕产阶级和地上植物生成。另外,还分析了鉴别参数,根茎和噬菌体生产率的遗传变异程度和这些参数之间的相关性。 ACOVA试验揭示了S.Ciliata病例的所有形态参数的显着差异,并用Pearson相关分析表明的显着和正相关性。植物直径,生物宽度,具有保护套和尖峰号的根生物量,在S.Ciliata展望方面表现出显着差异和高度的独特性。 Tukey的HDS测试表明存在三组换乘。在具有八个观测和13个变量的表格上施加的主成分分析(PCA),并在PCA的前两个轴上的S. Ciliata accions的分散证实了三组换乘。五种换乘领域的特质变异更容易成为表型可塑性而不是遗传分化的结果。总体而言,S.Ciliata acade的表征在形态学和生物量生产率方面表现出显着差异。

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