首页> 外文期刊>Acta Botanica Brasilica >Patterns of growth, development and herbivory of Palicourea rigida are affected more by sun/shade conditions than by Cerrado phytophysiognomy
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Patterns of growth, development and herbivory of Palicourea rigida are affected more by sun/shade conditions than by Cerrado phytophysiognomy

机译:刚毛古根藻的生长,发育和草食方式受太阳/阴影条件的影响比受塞拉多植物生理学的影响更大

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Plant development is influenced by several abiotic factors, which in turn influence morphological traits and life history. We investigated whether leaf area, herbivory, toughness, fluctuating asymmetry, structural complexity and the number of inflorescences of Palicourea rigida are influenced by sun/shade conditions or by Cerrado phytophysiognomy (typical cerrado or rupestrian field). We expected to find greater structural complexity, leaf toughness and more inflorescences in sun plants; shaded plants were expected to exhibit a greater degree of fluctuating asymmetry (an index of plant stress), reduced leaf toughness and greater herbivory. As for phytophysiognomies, we expected to find higher levels of leaf toughness and reduced structural complexity in plants from the rupestrian field. We sampled plants in the sun and shade from both phytophysiognomies. Leaf area, toughness, herbivory and fluctuating asymmetry, were influenced more by sun/shade conditions than phytophysiognomy; leaf toughness was the only variable to show greater values in conditions of sun. Our results indicate that exposure to sunlight is not a requirement for increased plant development, but plants in shade are experiencing stress, as shown by increased fluctuating asymmetry; increased leaf area, which is a strategy to compensate for lower light exposure for plants and higher herbivory, which depicts lower toughness.
机译:植物的发育受多种非生物因素的影响,这些非生物因素又会影响其形态特征和生活史。我们调查了叶面积,草食性,韧性,波动性不对称性,结构复杂性和刚毛古菌的花序数是否受日照/阴暗条件或塞拉多植物生理学(典型的塞拉多或鲁普斯特场)的影响。我们期望在太阳植物中发现更大的结构复杂性,叶片韧性和更多花序;遮荫的植物预计会表现出更大程度的波动不对称性(植物胁迫指数),叶片韧性降低和草食性更高。至于植物生理学,我们期望在木浆田中的植物中发现较高水平的叶片韧性和降低的结构复杂性。我们从两种植物生理学角度在阳光和阴影下对植物进行了采样。叶面积,韧性,草食性和波动性不对称性受日光/阴凉条件的影响大于对植物生理的影响;在阳光条件下,叶片韧性是唯一显示更大数值的变量。我们的结果表明,暴露在阳光下并不是增加植物生长的必要条件,但是在树荫下的植物正在承受压力,这表现为波动的不对称性增加。增加叶片面积,这是一种弥补植物较低的光照和较高的食草性(降低了韧性)的策略。

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