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Influence of drought stress on the leaf morphology and physiological characteristics in blackberry [Rubus L) seedlings

机译:干旱胁迫对黑莓幼苗叶片形态和生理特性的影响

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In the present study, the physiological changes and morphological characteristics were investigated in the leaves of blackberry 'Boysenberry' seedlings subjected to 14-day drought stress by withholding irrigation. The leaf relative water content (RWC), and concentrations of photosynthetic pigments and hydrogen peroxide (H202) in leaves were analyzed. The results showed that RWC increased slightly at first and then decreased. H2O2 content changed slightly in leaves of 'Boysenberry' during the experiment period. Drought stress induced significant accumulation of photosynthetic pigments and reached the peak on day 10. Besides, scanning electron microscopy (SEM) revealed a drought-resisting apparent structure in 'Boysenberry". Drought stress significantly influenced the stoma on the lower epidermis of the leaves. As compared to the control, higher stomatal density was observed under drought conditions. Besides, there were elongated cone-shaped unicellular trichomes densely distributed on the abaxial surface of the lower epidermis. Overall, these results demonstrated that 'Boysenberry' exhibited a certain degree of drought adaption. It was suggested that increased drought tolerance of'Boysenberry' was due to high stomatal and trichomes density, betteraccumulation of photosynthetic pigments and maintenance of tissue water contents.
机译:在本研究中,通过扣留灌溉,在黑莓“摩根植物”幼苗的叶片中研究了生理变化和形态特征。分析了叶片相对含水量(RWC)和叶中光合色素和过氧化氢(H202)的浓度。结果表明,RWC首先略有增加,然后减少。在实验期间,H2O2含量略微发生在“杜松酵母”叶子中。干旱胁迫诱导光合色素的大量积累,并在第10天达到峰值。此外,扫描电子显微镜(SEM)揭示了在“博伊辛”中的抗旱表观结构。干旱胁迫显着影响了叶子的下表皮上的造型。与对照相比,在干旱条件下观察到较高的气孔密度。此外,在下表皮的亚轴表面上致密地分布着细长的锥形单细胞粒细胞。总体而言,这些结果表明,这些结果表明“杜松森林”展出了一定程度干旱适应。有人建议增加的耐旱性的耐旱性是由于高气孔和毛状物密度,较高的光合色素造成的较高和组织水含量的维持。

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