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首页> 外文期刊>Plant and Soil >Water potential and gas exchange did not reflect performance of Pinus radiata D. Don in an agroforestry system under conditions of soil-water deficit in a temperate environment.
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Water potential and gas exchange did not reflect performance of Pinus radiata D. Don in an agroforestry system under conditions of soil-water deficit in a temperate environment.

机译:在温带环境下水土流失的条件下,水势和气体交换不能反映辐射松D. Don在农林业系统中的性能。

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In order to understand how radiata pines respond to declining supply of soil-water in agroforestry systems, we monitored water potential in xylem ( psi x), osmotic potential ( pi ) and relative water content (q) for fascicles at pre-dawn and at mid-day for 3-year-old trees that were raised from either seedlings (Seedling) or from tissue culture (TC3 and TC4), and grown either alone (Control) or over lucerne (Medicago sativa) pasture (Lucerne). Water relations at dawn were mostly similar for all the pines, except late in the season when pi was lower, bulk turgor pressure (P), deduced as the difference between psi x and pi , was higher, for TC3 than for the other two pines. At mid-day, Seedling often had higher psi x and pi , but because of its poor osmotic adjustment (OA) had lower P, than either TC3 or TC4. The cell walls were more elastic in Seedling with modulus of elasticity (e) of 6.5 MPa compared with 8.1 MPa for both TC3 and TC4, while loss of turgor was estimated to occur at psi x of -1.45 MPa for Seedling, -1.38 MPa for TC3 and -1.35 MPa for TC4. All trees irrespective of their origin had higher psi x, P, CO2 assimilation (A), and stomatal conductance (gs), but lower pi , in Control than in Lucerne in which the soil profile was consistently drier. The trends in psi x, pi , q and A did not reflect the known differences in dry weight of trees, P was in the order TC3 > TC4 > Seedling, consistent with previously reported tree weights. Both TC3 and TC4 had higher P, due to their larger OA, than Seedling, although the latter had higher A. Thus psi x and A that are routinely measured may not always adequately explain differences in growth amongst pines; it is advisable that pi be determined to allow deductions of P be made when using water relations to analyse plant growth..
机译:为了了解辐射松如何响应农林业系统中土壤水的减少,我们监测了黎明前和黎明时分枝的木质部中的水势(psi x),渗透势(pi)和相对含水量(q)。从幼苗(苗木)或组织培养(TC3和TC4)培育的3岁树的中午,并单独生长(对照)或在卢塞恩(苜蓿)牧场(卢塞恩)上生长。所有松树在黎明时的水关系基本相似,除了在pi较低的季节后期,TC3的psi x和pi之差推论的总体膨胀压力(P)高于其他两个松树。 。在午间,幼苗通常具有较高的psi x和pi,但是由于其渗透调节(OA)较差,因此其P低于TC3或TC4。 TC3和TC4的细胞壁在幼苗中的弹性模量(e)为6.5 MPa,而弹性模量(e)则为8.1 MPa,而幼苗的膨大损失估计为psi x -1.45 MPa,对于psi x为-1.38 MPa。 TC3,TC4为-1.35 MPa。与卢塞恩州土壤状况持续较干燥的卢塞恩州相比,所有树木(无论其起源如何)均具有较高的psi x,P,CO2同化(A)和气孔导度(gs),但pi较低。 psi x,pi,q和A的趋势未反映出树木干重的已知差异,P的排列顺序为TC3> TC4>幼苗,与先前报道的树木重量一致。由于OA,TC3和TC4的P值都比幼苗高,尽管后者具有较高的A。因此,常规测量的psi x和A可能无法始终充分解释松树生长的差异。建议使用水关系来分析植物生长时确定pi以允许扣除P。

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