首页> 外文期刊>Functional Plant Biology >Rapid adjustment of leaf angle explains how the desert moss, Syntrichia caninervis, copes with multiple resource limitations during rehydration.
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Rapid adjustment of leaf angle explains how the desert moss, Syntrichia caninervis, copes with multiple resource limitations during rehydration.

机译:叶角的快速调节说明了沙漠苔藓(Syntrichia caninervis)在补液过程中如何应对多种资源限制。

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摘要

Although the desert moss Syntrichia caninervis Mitt. is extremely desiccation tolerant, it still requires water and photosynthates for growth. The ecological significance of the leaf angle in maintaining a balance between water and light availability is critical to its survival. Active leaf repositioning balances water and light availability following rehydration. S. caninervis can adjust leaf angles from a steep (84-69 degrees ) to a stable level at 30 degrees within 7 s after rehydration, obtaining maximum net photosynthetic gain at a shoot relative water content of ~60%. Leaf morphological characters, (leaf hair points, surface papillae and costal anatomy) and ultrastructural changes (chloroplast reordering and loss of lipid reserves as shown by changes in osmiophilic globules) were linked to rapid leaf spreading, water gain and sunlight reflectivity of leaves during rehydration. The high 377.20+or-91.69 (cm2 g-1) surface area to mass ratio was a major factor in facilitating the rapid response to rewetting. Hyaline cells of the leaf base absorbed water, swelled and forced the leaf away from the stem as soon as rehydration commenced. Loss of leaf hair points retards leaf angle adjustment during rehydration.
机译:虽然沙漠苔藓Syntrichia caninervis Mitt。极耐干燥,它仍需要水和光合作用才能生长。叶角在维持水和光的可用性之间保持平衡的生态意义对其生存至关重要。积极的叶片重新定位可在补液后平衡水和光的利用率。补水后7秒内,S。caninervis可以将叶片角度从陡峭的角度(84-69度)调整到30度的稳定水平,在〜60%的枝条相对含水量下获得最大的净光合作用。叶片的形态特征(叶片的毛发点,表面乳头和肋骨的解剖结构)和超微结构的变化(叶绿体重排和脂质储备的丧失,如渗透性小球的变化所显示)与叶片快速铺展,水分补给和水分在补液过程中的阳光反射率有关。 。 377.20+或-91.69(cm 2 g -1 )高的表面积/质量比是促进快速响应于再润湿的主要因素。叶基部的透明质细胞吸收水分,膨胀并在重新补液后立即迫使叶离开茎。失去叶片毛发点会延迟补液过程中的叶片角度调节。

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