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首页> 外文期刊>Functional Plant Biology >Rooting depth and leaf hydraulic conductance in the xeric tree Haloxyolon ammodendron growing at sites of contrasting soil texture
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Rooting depth and leaf hydraulic conductance in the xeric tree Haloxyolon ammodendron growing at sites of contrasting soil texture

机译:土壤质地对比部位生长的枯萎树梭梭的生根深度和叶片水导率

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摘要

An experiment was conducted on Haloxylon ammodendron C.A. Mey, a small xeric tree. Soil water content, soil evaporation, leaf water potential, leaf transpiration rate and stomatal conductance were measured at the two sites that contrast in soil texture: sandy and heavy textured, 8 km apart on the southern periphery of Gurbantonggut Desert, Central Asia, during the 2005 and 2006 growing seasons. Leaf specific hydraulic conductance was calculated from the measurements, and root distributions of plants grown at the two sites were quantified by whole-root system excavation. In general, plants grown in sandy soil experienced better water status than in heavy textured soil. Low soil evaporation loss is not the main reason for this better plant water status at sandy site. Plants in sandy soil developed much deeper root systems, larger root surface areas and higher root: leaf surface area ratio than in heavy textured soil, which facilitated plants acquiring more water and surviving the prolonged drought period. Plants growing at light textured sites should have an advantage in acclimatising to the changed water conditions of the future. Plants at the more sandy sites have a larger buffering capacity to excessive variation in ambient conditions.
机译:在Haloxylon ammodendron C.A.上进行了实验。梅,一棵小干枯的树。在中亚古尔班通古特沙漠南缘相距8 km的两个土壤质地不同的地方测量了土壤含水量,土壤蒸发,叶片水势,叶片蒸腾速率和气孔导度。 2005年和2006年的生长季节。根据测量结果计算出叶片的比水导率,并通过全根系统开挖对在这两个地点生长的植物的根系分布进行了定量。通常,在沙质土壤中生长的植物比重质感土壤中的水分状况更好。低的土壤蒸发损失不是沙质地区植物水状况改善的主要原因。与重质感土壤相比,沙质土壤植物的根系更深,根表面积更大,根与叶的表面积比更高,这有利于植物吸收更多的水分,并能长期干旱。在质地较浅的地方生长的植物应具有适应未来水条件变化的优势。沙质多的地方的植物对环境条件的过度变化具有更大的缓冲能力。

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