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首页> 外文期刊>Functional Plant Biology >Partitioning hydraulic resistance in Sorghum bicolor leaves reveals unique correlations with stomatal conductance during drought.
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Partitioning hydraulic resistance in Sorghum bicolor leaves reveals unique correlations with stomatal conductance during drought.

机译:在高粱双色叶片中分配水力阻力揭示了干旱期间气孔导度的独特相关性。

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The hydraulic architecture of leaves represents the final path along which liquid water travels through the plant and comprises a significant resistance for water movement, especially for grasses. We partitioned leaf hydraulic resistance of six genotypes of Sorghum bicolor L. (Moench) into leaf specific hydraulic resistance within the large longitudinal veins (r*LV) and outside the large veins (r*OLV), and correlated these resistances with the response of stomatal conductance (gs) and photosynthesis (A) to drought. Under well-watered conditions, gs was tightly correlated with r*OLV (r2=0.95), but as soil moisture decreased, gs was more closely correlated with r*LV (r2=0.97). These results suggest that r*OLV limits maximum rates of gas exchange, but the ability to efficiently move water long distances (low r*LV) becomes more important for the maintenance of cell turgor and gas exchange as soil moisture declines. Hydraulic resistance through the leaf was negatively correlated with evapotranspiration (P<0.001) resulting in more conservative water use in genotypes with large leaf resistance. These results illustrate the functional significance of leaf resistance partitioning to declining soil moisture in a broadly-adapted cereal species.
机译:叶子的水力结构代表了液态水沿着植物行进的最终路径,并且对水运动,特别是对草的运动具有很大的阻力。我们将六个基因型高粱(Moench)的叶片水力阻力分为大纵静脉(r * LV )内和大静脉(r * OLV)外的叶片特定水力阻力),并将这些抗性与气孔导度(g s )和光合作用(A)对干旱的反应相关。在良好的灌溉条件下,g s 与r * OLV (r 2 = 0.95)紧密相关,但随着土壤湿度的降低,gs与r * LV (r 2 = 0.97)密切相关。这些结果表明,r * OLV 限制了最大的气体交换速率,但是有效地将水长距离移动(低r * LV )的能力对于维护水流变得更加重要。随着土壤水分的减少,细胞膨胀和气体交换。通过叶片的水力阻力与蒸散量负相关(P <0.001),从而导致具有较大叶片阻力的基因型的节水更为保守。这些结果说明了在广泛适应的谷物品种中,叶片抗性分配对土壤水分下降的功能意义。

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