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The use of physiological, biochemical and morpho-anatomical traits in tree breeding for improved water-use efficiency of Quercus robur L.

机译:在树育植物中使用生理,生化和态化性状性状,提高栎(栎)的利用效率L.

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A im of study : In the present paper the nature and level of co-dependence between leaf functional traits and intrinsic water-use efficiency ( WUE i ) were studied in one-year-old Quercus robur L. seedlings, grown in a common garden experiment under moderate drought conditions. The study was established to identify those traits that might potentially be utilized to improve leaf-level WUE i , and therefore be used in breeding programmes to enhance drought adaptation of Q. robur . A rea of study : The study was carried out at the common garden site within the UNESCO Biosphere Reserve Mura-Drava-Danube. M aterial and methods : The study involved one-year-old seedlings of eight half-sib lines of Q. robur . Eighteen leaf parameters were analyzed; i.e. physiological, biochemical, morphological and anatomical. The data were processed using multivariate statistical methods: a) principal component analysis, b) stepwise regression analysis, and c) path coefficient analysis. M ain results : The results showed that leaf stomata traits, particularly stomatal density (SD), and leaf dry mass per unit leaf area (LMA) were the most important traits, closely associated with WUE i . Stomatal density achieved the highest score on PC1 (0.825), in which WUE i had the highest loading (0.920), as well. SD was also included first in stepwise regression model. R esearch highlights : These results demonstrate that under moderate water stress WUE i in Q. robur half-sib lines were mainly the result of the plants’ structural acclimation to surrounding environmental conditions. {end} Quercus robur L.; half-sib line; intrinsic water-use efficiency; leaf functional traits.
机译:研究IM:在本文中,在一岁的昆虫罗伯尔L.幼苗中,研究了叶功能性状和内在水利用效率(WUE I)之间的共同依赖性的性质和水平在适度的干旱条件下进行实验。建立了该研究,以确定可能有可能用于改善叶子级WUE I的特征,因此用于增强Q. Robur的干旱适应的育种计划。一项研究:该研究是在教科文组织生物圈储备Mura-Drava-Danube的共同园区内进行的。 M个静脉和方法:该研究涉及一岁的八个半SIB线路Q. Robur的幼苗。分析了十八叶参数;即生理,生物化学,形态学和解剖学。使用多变量统计方法处理数据:a)主成分分析,b)逐步回归分析和c)路径系数分析。 M AIN结果:结果表明,每单位叶面积(LMA)的叶形气孔特征,特别是气孔密度(SD)和叶干质量是最重要的性状,与WUE I密切相关。气孔密度达到PC1(0.825)的最高分,其中Wue我的负载量最高(0.920)。 SD还在逐步回归模型中包含。 R Esearch亮点:这些结果表明,在Q.强盗的水力强调Wue I,抢劫半SIB线主要是植物结构适应对周围环境条件的结果。 {END} QUERCUS ROBUR L.半sib;内在用水效率;叶功能性状。

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