Tests for evaluating the physiological quality of pitaya seeds

<p>Germination test is used to assess the physiological quality of seeds; however, since it is carried out under ideal conditions, this test has not been shown sufficient for this purpose. Instead, it is possible to use vigor tests, although the lack of standardized methodologies has reduced t...

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Main Authors: Thiago Alberto Ortiz, Aline Moritz, Lúcia Sadayo Assari Takahashi, Mariana Ragassi Urbano
Format: Article
Language:English
Published: Universidade Estadual de Londrina 2015-12-01
Series:Semina: Ciências Agrárias
Subjects:
Online Access:http://www.uel.br/revistas/uel/index.php/semagrarias/article/view/17791
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spelling doaj-867fe11668db4b6d9da98a0e3954a54e2020-11-25T00:28:34ZengUniversidade Estadual de LondrinaSemina: Ciências Agrárias1676-546X1679-03592015-12-01366Supl24047405810.5433/1679-0359.2015v36n6Sup2p404712725Tests for evaluating the physiological quality of pitaya seedsThiago Alberto Ortiz0Aline Moritz1Lúcia Sadayo Assari Takahashi2Mariana Ragassi Urbano3Universidade Estadual de LondrinaUniversidade Estadual de LondrinaUniversidade Estadual de LondrinaUniversidade Estadual de Londrina<p>Germination test is used to assess the physiological quality of seeds; however, since it is carried out under ideal conditions, this test has not been shown sufficient for this purpose. Instead, it is possible to use vigor tests, although the lack of standardized methodologies has reduced their applicability and reproducibility. Thus, this study aimed to develop methodologies for conducting tests of germination, accelerated aging, and electrical conductivity for the evaluation of the physiological quality of pitaya seeds. For this purpose, seeds from ripe <em>Hylocereus undatus </em>fruits were used. A completely randomized experimental design was used with four replications. The physiological quality of the seeds was assessed using germination, accelerated aging, and electrical conductivity tests, and the speed of germination index (SGI) and mean germination time (MGT) were determined for both the germination test and accelerated aging test. For the statistical analysis, we performed regression model adjustments and calculated the Pearson correlation coefficient (p &lt; 0.05). The germination test for <em>H. undatus </em>seeds can be performed at 25 °C, with the aim of reaching the highest SGI and lowest MGT values. The accelerated aging test can be conducted at 43 °C for 48 h, because combining these factors favors the expression of seed vigor, allowing seeds to achieve the maximum SGI and minimum MGT, while reducing the time of the assay. The electrical conductivity test can be performed using 25 seeds at a temperature of 30 °C and a water volume of 10 mL, since under these conditions there is less interference from external factors on the leachate content of the solution.</p>http://www.uel.br/revistas/uel/index.php/semagrarias/article/view/17791Hylocereus undatusCactaceaeGerminaçãoEnvelhecimento aceleradoCondutividade elétricaVigorem.
collection DOAJ
language English
format Article
sources DOAJ
author Thiago Alberto Ortiz
Aline Moritz
Lúcia Sadayo Assari Takahashi
Mariana Ragassi Urbano
spellingShingle Thiago Alberto Ortiz
Aline Moritz
Lúcia Sadayo Assari Takahashi
Mariana Ragassi Urbano
Tests for evaluating the physiological quality of pitaya seeds
Semina: Ciências Agrárias
Hylocereus undatus
Cactaceae
Germinação
Envelhecimento acelerado
Condutividade elétrica
Vigorem.
author_facet Thiago Alberto Ortiz
Aline Moritz
Lúcia Sadayo Assari Takahashi
Mariana Ragassi Urbano
author_sort Thiago Alberto Ortiz
title Tests for evaluating the physiological quality of pitaya seeds
title_short Tests for evaluating the physiological quality of pitaya seeds
title_full Tests for evaluating the physiological quality of pitaya seeds
title_fullStr Tests for evaluating the physiological quality of pitaya seeds
title_full_unstemmed Tests for evaluating the physiological quality of pitaya seeds
title_sort tests for evaluating the physiological quality of pitaya seeds
publisher Universidade Estadual de Londrina
series Semina: Ciências Agrárias
issn 1676-546X
1679-0359
publishDate 2015-12-01
description <p>Germination test is used to assess the physiological quality of seeds; however, since it is carried out under ideal conditions, this test has not been shown sufficient for this purpose. Instead, it is possible to use vigor tests, although the lack of standardized methodologies has reduced their applicability and reproducibility. Thus, this study aimed to develop methodologies for conducting tests of germination, accelerated aging, and electrical conductivity for the evaluation of the physiological quality of pitaya seeds. For this purpose, seeds from ripe <em>Hylocereus undatus </em>fruits were used. A completely randomized experimental design was used with four replications. The physiological quality of the seeds was assessed using germination, accelerated aging, and electrical conductivity tests, and the speed of germination index (SGI) and mean germination time (MGT) were determined for both the germination test and accelerated aging test. For the statistical analysis, we performed regression model adjustments and calculated the Pearson correlation coefficient (p &lt; 0.05). The germination test for <em>H. undatus </em>seeds can be performed at 25 °C, with the aim of reaching the highest SGI and lowest MGT values. The accelerated aging test can be conducted at 43 °C for 48 h, because combining these factors favors the expression of seed vigor, allowing seeds to achieve the maximum SGI and minimum MGT, while reducing the time of the assay. The electrical conductivity test can be performed using 25 seeds at a temperature of 30 °C and a water volume of 10 mL, since under these conditions there is less interference from external factors on the leachate content of the solution.</p>
topic Hylocereus undatus
Cactaceae
Germinação
Envelhecimento acelerado
Condutividade elétrica
Vigorem.
url http://www.uel.br/revistas/uel/index.php/semagrarias/article/view/17791
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