Optimized Protocol for In Vitro Pollen Germination in Yam (<i>Dioscorea</i> spp.)

Yam (<i>Dioscorea</i> spp.) plants are mostly dioecious and sometimes monoecious. Low, irregular, and asynchronous flowering of the genotypes are critical problems in yam breeding. Selecting suitable pollen parents and preserving yam pollen for future use are potential means of controlli...

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Main Authors: Jean M. Mondo, Paterne A. Agre, Robert Asiedu, Malachy O. Akoroda, Asrat Asfaw
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Plants
Subjects:
Online Access:https://www.mdpi.com/2223-7747/10/4/795
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spelling doaj-1e393d81ffa449e28983d290bf4c95a82021-04-18T23:01:51ZengMDPI AGPlants2223-77472021-04-011079579510.3390/plants10040795Optimized Protocol for In Vitro Pollen Germination in Yam (<i>Dioscorea</i> spp.)Jean M. Mondo0Paterne A. Agre1Robert Asiedu2Malachy O. Akoroda3Asrat Asfaw4International Institute of Tropical Agriculture (IITA), Ibadan 5320, NigeriaInternational Institute of Tropical Agriculture (IITA), Ibadan 5320, NigeriaInternational Institute of Tropical Agriculture (IITA), Ibadan 5320, NigeriaDepartment of Agronomy, University of Ibadan, Ibadan 200284, NigeriaInternational Institute of Tropical Agriculture (IITA), Ibadan 5320, NigeriaYam (<i>Dioscorea</i> spp.) plants are mostly dioecious and sometimes monoecious. Low, irregular, and asynchronous flowering of the genotypes are critical problems in yam breeding. Selecting suitable pollen parents and preserving yam pollen for future use are potential means of controlling these constraints and optimizing hybridization practice in yam breeding programs. However, implementing such procedures requires a robust protocol for pollen collection and viability testing to monitor pollen quality in the field and in storage. This study, therefore, aimed at optimizing the pollen germination assessment protocol for yam. The standard medium composition was stepwisely modified, the optimal growth condition was tested, and in vivo predictions were made. This study showed that the differences in yam pollen germination percentage are primarily linked to the genotype and growing conditions (i.e., medium viscosity, incubation temperature, and time to use) rather than the medium composition. The inclusion of polyethylene glycol (PEG) in the culture medium caused 67–75% inhibition of germination in <i>D. alata</i>. Although the in vivo fertilization was dependent on female parents, the in vitro germination test predicted the percentage fruit set at 25.2–79.7% and 26.4–59.7% accuracy for <i>D. rotundata</i> and <i>D. alata</i> genotypes, respectively. This study provides a reliable in vitro yam pollen germination protocol to support pollen management and preservation efforts in yam breeding.https://www.mdpi.com/2223-7747/10/4/795Brewbaker and Kwack medium<i>D. alata</i><i>D. rotundata</i>pollen viability and storagein vivo fertilization
collection DOAJ
language English
format Article
sources DOAJ
author Jean M. Mondo
Paterne A. Agre
Robert Asiedu
Malachy O. Akoroda
Asrat Asfaw
spellingShingle Jean M. Mondo
Paterne A. Agre
Robert Asiedu
Malachy O. Akoroda
Asrat Asfaw
Optimized Protocol for In Vitro Pollen Germination in Yam (<i>Dioscorea</i> spp.)
Plants
Brewbaker and Kwack medium
<i>D. alata</i>
<i>D. rotundata</i>
pollen viability and storage
in vivo fertilization
author_facet Jean M. Mondo
Paterne A. Agre
Robert Asiedu
Malachy O. Akoroda
Asrat Asfaw
author_sort Jean M. Mondo
title Optimized Protocol for In Vitro Pollen Germination in Yam (<i>Dioscorea</i> spp.)
title_short Optimized Protocol for In Vitro Pollen Germination in Yam (<i>Dioscorea</i> spp.)
title_full Optimized Protocol for In Vitro Pollen Germination in Yam (<i>Dioscorea</i> spp.)
title_fullStr Optimized Protocol for In Vitro Pollen Germination in Yam (<i>Dioscorea</i> spp.)
title_full_unstemmed Optimized Protocol for In Vitro Pollen Germination in Yam (<i>Dioscorea</i> spp.)
title_sort optimized protocol for in vitro pollen germination in yam (<i>dioscorea</i> spp.)
publisher MDPI AG
series Plants
issn 2223-7747
publishDate 2021-04-01
description Yam (<i>Dioscorea</i> spp.) plants are mostly dioecious and sometimes monoecious. Low, irregular, and asynchronous flowering of the genotypes are critical problems in yam breeding. Selecting suitable pollen parents and preserving yam pollen for future use are potential means of controlling these constraints and optimizing hybridization practice in yam breeding programs. However, implementing such procedures requires a robust protocol for pollen collection and viability testing to monitor pollen quality in the field and in storage. This study, therefore, aimed at optimizing the pollen germination assessment protocol for yam. The standard medium composition was stepwisely modified, the optimal growth condition was tested, and in vivo predictions were made. This study showed that the differences in yam pollen germination percentage are primarily linked to the genotype and growing conditions (i.e., medium viscosity, incubation temperature, and time to use) rather than the medium composition. The inclusion of polyethylene glycol (PEG) in the culture medium caused 67–75% inhibition of germination in <i>D. alata</i>. Although the in vivo fertilization was dependent on female parents, the in vitro germination test predicted the percentage fruit set at 25.2–79.7% and 26.4–59.7% accuracy for <i>D. rotundata</i> and <i>D. alata</i> genotypes, respectively. This study provides a reliable in vitro yam pollen germination protocol to support pollen management and preservation efforts in yam breeding.
topic Brewbaker and Kwack medium
<i>D. alata</i>
<i>D. rotundata</i>
pollen viability and storage
in vivo fertilization
url https://www.mdpi.com/2223-7747/10/4/795
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