首页> 外文期刊>South African Journal for Enology and Viticulture >Effects of Soil Parent Material and Climate on the Performance of Vitis vinifera L. cvs. Sauvignon blanc and Cabernet Sauvignon - Part I. SoilAnalysis,SoilWaterStatus,RootSystem Characteristics, Leaf Water Potential, Cane Mass and Yield
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Effects of Soil Parent Material and Climate on the Performance of Vitis vinifera L. cvs. Sauvignon blanc and Cabernet Sauvignon - Part I. SoilAnalysis,SoilWaterStatus,RootSystem Characteristics, Leaf Water Potential, Cane Mass and Yield

机译:土壤母质和气候对葡萄的性能的影响长相思和赤霞珠-第一部分土壤分析,土壤水分状况,根系特征,叶片水势,甘蔗质量和产量

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In the Helderberg area of the Western Cape, South Africa, soil parent material may vary between granite and shale over relatively short distances. However, little information is available concerning the possible effects of different soil parent materials on grapevine performance. A five-year investigation (2004/05 to 2008/09) was therefore carried out. Two Sauvignon blanc and two Cabernet Sauvignon vineyard blocks were selected at four localities. Soils derived mainly from granite and shale were identified in each vineyard block. Climate and soil parameters, root distribution, grapevine water status, cane mass and yield were evaluated at all localities. Shale-derived soils contained significantly greater amounts of fine sand, but less coarse sand, than granite-derived soils. These differences resulted in water-holding capacities that were generally higher in the shale-derived soils. Shale-derived soils contained higher concentrations of total potassium (K), but the levels of water-soluble K were generally greater in the granitic soils. Root system development could not be related directly to soil parent material. However, in most cases fine root density in the granite-derived soils tended to be higher, while the cane mass and yield of grapevines in the same soils also tended to be higher, at least at two of the four localities. The effect of soil parent material on grapevine water constraints seemed more prominent during the drier seasons, namely 2004/05 and 2005/06, compared to the wet and coolest seasons, 2007/08 and 2008/09.
机译:在南非西开普的Helderberg地区,花岗岩和页岩的土壤母质可能在相对较短的距离内变化。然而,关于不同土壤母体材料对葡萄性能的可能影响的信息很少。因此进行了为期五年的调查(2004/05至2008/09)。在四个地方选择了两个长相思和两个赤霞珠葡萄园块。在每个葡萄园区都发现了主要来自花岗岩和页岩的土壤。在各地评估了气候和土壤参数,根系分布,葡萄水状况,甘蔗质量和产量。与花岗岩类土壤相比,页岩类土壤含有大量的细砂,但粗砂较少。这些差异导致页岩土壤中的持水能力通常更高。页岩质土壤中总钾(K)的浓度较高,但花岗岩质土壤中水溶性K的含量通常较高。根系发育与土壤母体物质没有直接关系。但是,在大多数情况下,至少在四个地区中的两个地区,源自花岗岩的土壤中的细根密度往往较高,而在同一土壤中的甘蔗质量和葡萄产量也倾向于较高。与干旱的季节和最凉的季节(2007/08和2008/09)相比,在较干燥的季节(即2004/05和2005/06),土壤母质对葡萄水分的影响似乎更为突出。

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