ROOT HYDRAULIC CONDUCTIVITY AND PHOTOSYNTHETIC CAPACITY OF EUCALYPT CLONAL CUTTINGS WITH ROOT MALFORMATION INDUCTIONS

<a>http://dx.doi.org/10.5902/1980509814566</a><p>The gain reduction of wood biomass in trees has been assigned to root deformations even in the nursery phase. The objective of this work was the evaluation of the root system hydraulic conductivity, gas exchanges and photochemical ef...

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Main Authors: Fábio Afonso Mazzei Moura de Assis Figueiredo, José Geraldo de Araújo Carneiro, Ricardo Miguel Penchel, Eliemar Campostrini, José Tarcísio de Lima Thiebaut, Deborah Guerra Barroso
Format: Article
Language:Portuguese
Published: Universidade Federal de Santa Maria 2014-06-01
Series:Ciência Florestal
Subjects:
Online Access:http://cascavel.ufsm.br/revistas/ojs-2.2.2/index.php/cienciaflorestal/article/view/14566
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spelling doaj-075ec68ff7914e97b9ea044b45a6bccd2020-11-24T20:40:14ZporUniversidade Federal de Santa MariaCiência Florestal0103-99541980-50982014-06-0124227728710.5902/19805098145668024ROOT HYDRAULIC CONDUCTIVITY AND PHOTOSYNTHETIC CAPACITY OF EUCALYPT CLONAL CUTTINGS WITH ROOT MALFORMATION INDUCTIONSFábio Afonso Mazzei Moura de Assis FigueiredoJosé Geraldo de Araújo CarneiroRicardo Miguel PenchelEliemar CampostriniJosé Tarcísio de Lima ThiebautDeborah Guerra Barroso<a>http://dx.doi.org/10.5902/1980509814566</a><p>The gain reduction of wood biomass in trees has been assigned to root deformations even in the nursery phase. The objective of this work was the evaluation of the root system hydraulic conductivity, gas exchanges and photochemical efficiency of eucalypt clonal cuttings with and without root deformation inductions. The treatments were: 1) operational cuttings without root malformation inductions (grown according to the used methodology of Fibria Cellulose S.A.); 2) root deformation inductions. These inductions did not promote decrease in the root volume. However, the deformations brought reduction of the root system hydraulic conductivity. Lower photosynthetic rates were also observed along the day in the cuttings in the root deformed cuttings. This decreasing rate is connected to stomatal and non stomatal factors.</p>http://cascavel.ufsm.br/revistas/ojs-2.2.2/index.php/cienciaflorestal/article/view/14566<i>Eucalyptus</i> sppcondutividade hidráulicasistema radiculartrocas gasosas.
collection DOAJ
language Portuguese
format Article
sources DOAJ
author Fábio Afonso Mazzei Moura de Assis Figueiredo
José Geraldo de Araújo Carneiro
Ricardo Miguel Penchel
Eliemar Campostrini
José Tarcísio de Lima Thiebaut
Deborah Guerra Barroso
spellingShingle Fábio Afonso Mazzei Moura de Assis Figueiredo
José Geraldo de Araújo Carneiro
Ricardo Miguel Penchel
Eliemar Campostrini
José Tarcísio de Lima Thiebaut
Deborah Guerra Barroso
ROOT HYDRAULIC CONDUCTIVITY AND PHOTOSYNTHETIC CAPACITY OF EUCALYPT CLONAL CUTTINGS WITH ROOT MALFORMATION INDUCTIONS
Ciência Florestal
<i>Eucalyptus</i> spp
condutividade hidráulica
sistema radicular
trocas gasosas.
author_facet Fábio Afonso Mazzei Moura de Assis Figueiredo
José Geraldo de Araújo Carneiro
Ricardo Miguel Penchel
Eliemar Campostrini
José Tarcísio de Lima Thiebaut
Deborah Guerra Barroso
author_sort Fábio Afonso Mazzei Moura de Assis Figueiredo
title ROOT HYDRAULIC CONDUCTIVITY AND PHOTOSYNTHETIC CAPACITY OF EUCALYPT CLONAL CUTTINGS WITH ROOT MALFORMATION INDUCTIONS
title_short ROOT HYDRAULIC CONDUCTIVITY AND PHOTOSYNTHETIC CAPACITY OF EUCALYPT CLONAL CUTTINGS WITH ROOT MALFORMATION INDUCTIONS
title_full ROOT HYDRAULIC CONDUCTIVITY AND PHOTOSYNTHETIC CAPACITY OF EUCALYPT CLONAL CUTTINGS WITH ROOT MALFORMATION INDUCTIONS
title_fullStr ROOT HYDRAULIC CONDUCTIVITY AND PHOTOSYNTHETIC CAPACITY OF EUCALYPT CLONAL CUTTINGS WITH ROOT MALFORMATION INDUCTIONS
title_full_unstemmed ROOT HYDRAULIC CONDUCTIVITY AND PHOTOSYNTHETIC CAPACITY OF EUCALYPT CLONAL CUTTINGS WITH ROOT MALFORMATION INDUCTIONS
title_sort root hydraulic conductivity and photosynthetic capacity of eucalypt clonal cuttings with root malformation inductions
publisher Universidade Federal de Santa Maria
series Ciência Florestal
issn 0103-9954
1980-5098
publishDate 2014-06-01
description <a>http://dx.doi.org/10.5902/1980509814566</a><p>The gain reduction of wood biomass in trees has been assigned to root deformations even in the nursery phase. The objective of this work was the evaluation of the root system hydraulic conductivity, gas exchanges and photochemical efficiency of eucalypt clonal cuttings with and without root deformation inductions. The treatments were: 1) operational cuttings without root malformation inductions (grown according to the used methodology of Fibria Cellulose S.A.); 2) root deformation inductions. These inductions did not promote decrease in the root volume. However, the deformations brought reduction of the root system hydraulic conductivity. Lower photosynthetic rates were also observed along the day in the cuttings in the root deformed cuttings. This decreasing rate is connected to stomatal and non stomatal factors.</p>
topic <i>Eucalyptus</i> spp
condutividade hidráulica
sistema radicular
trocas gasosas.
url http://cascavel.ufsm.br/revistas/ojs-2.2.2/index.php/cienciaflorestal/article/view/14566
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