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首页> 外文期刊>American journal of enology & viticulture >Physiological Interaction between Rootstock-Scion: Effects on Xylem Vessels in Cabernet Sauvignon and Merlot Grapevines
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Physiological Interaction between Rootstock-Scion: Effects on Xylem Vessels in Cabernet Sauvignon and Merlot Grapevines

机译:砧木-接穗之间的生理相互作用:对赤霞珠和梅鹿lot葡萄的木质部容器的影响

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摘要

The interaction between rootstock and scion can influence the vegetative and productive balance of grapevines. Vascular connections and patterns may be related to the observed phenotype of certain rootstock-scion combinations. However, little is known about the physiology of the rootstock-scion interaction and the related anatomical variables. The aim of this study was to evaluate the effect of the rootstock-scion interaction on the vegetative growth of Vitis vinifera L., with a focus on the vascular system. We investigated the rootstock genotypes 1103 Paulsen (Vitis berlandieri Planch. × Vitis rupestris Scheele), 101-14 Mgt (Vitis riparia Michx. × V. rupestris), and SO4 (V. berlandieri × V. riparia) grafted on the Cabernet Sauvignon and Merlot grapevine varieties. We evaluated vegetative growth variables and performed an image analysis of the vascular system by quantifying the xylem and vessels (diameter, total number, density, and frequency) in different portions (apical, median, and basal) of the scion stem. The rootstock-scion interaction caused differences in vegetative growth and was associated with differences in the vascular system. The vegetative growth of the Cabernet Sauvignon on 1103 Paulsen and Merlot on SO4 combinations was greater than the growths of either variety grafted on 101-14 Mgt. The more vigorous rootstock-scion combinations had vessels with greater mean diameters, xylem areas, and proportion of vessels with diameters greater than 50 μm. Vines grafted on 101-14 Mgt had a greater proportion of vessels with diameters less than 40 μm. The vessel features were altered from the apex to base sections (stem morphology) in all combinations. The physiological interaction between rootstock-scion modified the vascular system in grapevines by altering the xylem vessel.
机译:砧木和接穗之间的相互作用会影响葡萄的营养和生产平衡。血管连接和模式可能与某些砧木-接穗组合的表型有关。然而,关于砧木-接穗相互作用的生理学以及相关的解剖学变量知之甚少。这项研究的目的是评估砧木-接穗相互作用对葡萄(Vitis vinifera L.)营养生长的影响,重点是血管系统。我们调查了嫁接在赤霞珠和赤霞珠上的砧木基因型1103 Paulsen(Vitis berlandieri Planch。×Vitis rupestris Scheele),101-14 Mgt(Vitis riparia Michx。×V. rupestris)和SO4(V. berlandieri×V. riparia)。梅鹿lot葡萄品种。我们评估了营养生长变量,并通过对接穗茎的不同部分(顶端,中位和基底)的木质部和血管(直径,总数,密度和频率)进行了量化,并对血管系统进行了图像分析。砧木-接穗的相互作用引起营养生长的差异,并与血管系统的差异有关。赤霞珠(Cabernet Sauvignon)在1103年保尔森(Paulsen)和梅洛(Merlot)在SO4组合上的营养生长大于在101-14 Mgt。更有活力的砧木-接穗组合具有的容器具有较大的平均直径,木质部面积和直径大于50μm的容器比例。 101-14 Mgt上嫁接的葡萄藤中直径小于40μm的血管比例更大。在所有组合中,血管特征均从顶点更改为基部(茎形态)。砧木接穗之间的生理相互作用通过改变木质部血管来修饰葡萄树的血管系统。

著录项

  • 来源
    《American journal of enology & viticulture》 |2016年第1期|65-76|共12页
  • 作者单位

    Brazilian Agricultural Research Corporation-EMBRAPA/Embrapa Forestry-CNPF, Estrada da Ribeira, km 111 Caixa Postal 319, Colombo 83411-000, PR, Brazil;

    Department of Horticulture and Silviculture, Faculty of Agricultural and Life Sciences, Federal University of Rio Grande do Sul-UFRGS, Av. Bento Goncalves 7712, ZIP 91501-970 Porto Alegre, RS, Brazil;

    Department of Botany, Institute of Biosciences, Federal University of Rio Grande do Sul-UFRGS, Av. Bento Goncalves 7712, ZIP 91501-970 Porto Alegre, RS, Brazil;

    Department of Horticulture and Silviculture, Faculty of Agricultural and Life Sciences, Federal University of Rio Grande do Sul-UFRGS, Av. Bento Goncalves 7712, ZIP 91501-970 Porto Alegre, RS, Brazil;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    vascular system; vessels; Vitis vinifera; physiology;

    机译:血管系统;船只;葡萄生理;

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