Ethyl methane sulfonate induced mutations in M2 generation and physiological variations in M1 generation of peppers (Capsicum annuum L.)
This study was conducted to enhance genetic variability in peppers (Capsicum annuum, cv B12) using ethyl methansulphonate (EMS). Exposure to an EMS concentration of 0.6%, v/v for 12 hours was used to mutagenize 2000 seeds for the first generation (M1). It was observed that the growth behaviors inclu...
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doaj-2c9126e19c23491289a65be25859280d2020-11-24T22:41:53ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2015-06-01610.3389/fpls.2015.00399136696Ethyl methane sulfonate induced mutations in M2 generation and physiological variations in M1 generation of peppers (Capsicum annuum L.)Mohamed Hamed Arisha0Mohamed Hamed Arisha1Mohamed Hamed Arisha2Syed Noor Muhammad Shah3Syed Noor Muhammad Shah4Zhen Hui Gong5Zhen Hui Gong6Hua eJing7Li eChao8Xia Huai Zhang9Faculty of Agriculture, Zagazig UniversityNorthwest A&F UniversityState Key Laboratory for Stress Biology of Arid Region Crop, Northwest A&F UniversityNorthwest A&F UniversityGomal UniversityNorthwest A&F UniversityState Key Laboratory for Stress Biology of Arid Region Crop, Northwest A&F UniversityNorthwest A&F UniversityNorthwest A&F UniversityNorthwest A&F UniversityThis study was conducted to enhance genetic variability in peppers (Capsicum annuum, cv B12) using ethyl methansulphonate (EMS). Exposure to an EMS concentration of 0.6%, v/v for 12 hours was used to mutagenize 2000 seeds for the first generation (M1). It was observed that the growth behaviors including plant height, flowering date and number of seeds per first fruit were different in the M1 generation than in wild type plants. In addition one phenotypic mutation (leaf shape and plant architecture) was observed during the M1 generation. During the seedling stage in the M2 generation, the observed changes were in the form of slow growth or chlorophyll defect (e.g., albino, pale green and yellow seedlings). At maturity, there were three kinds of phenotypic mutations observed in three different families of the mutant population. The first observed change was a plant with yellow leaf color, and the leaves of this mutant plant contained 62.19% less chlorophyll a and 64.06% less chlorophyll b as compared to the wild-type. The second mutation resulted in one dwarf plant with a very short stature (6 cm), compact internodes and the leaves and stem were rough and thick. The third type of mutation occurred in four plants and resulted in the leaves of these plants being very thick and longer than those of wild type plants. Furthermore, anatomical observations of the leaf blade section of this mutant plant type contained more xylem and collenchyma tissue in the leaf midrib of the mutant plant than wild type. In addition, its leaf blade contained thicker palisade and spongy tissue than the wild type.http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00399/fullmutationspepperEMSCapsicum annuumM1 generationM2 generation |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mohamed Hamed Arisha Mohamed Hamed Arisha Mohamed Hamed Arisha Syed Noor Muhammad Shah Syed Noor Muhammad Shah Zhen Hui Gong Zhen Hui Gong Hua eJing Li eChao Xia Huai Zhang |
spellingShingle |
Mohamed Hamed Arisha Mohamed Hamed Arisha Mohamed Hamed Arisha Syed Noor Muhammad Shah Syed Noor Muhammad Shah Zhen Hui Gong Zhen Hui Gong Hua eJing Li eChao Xia Huai Zhang Ethyl methane sulfonate induced mutations in M2 generation and physiological variations in M1 generation of peppers (Capsicum annuum L.) Frontiers in Plant Science mutations pepper EMS Capsicum annuum M1 generation M2 generation |
author_facet |
Mohamed Hamed Arisha Mohamed Hamed Arisha Mohamed Hamed Arisha Syed Noor Muhammad Shah Syed Noor Muhammad Shah Zhen Hui Gong Zhen Hui Gong Hua eJing Li eChao Xia Huai Zhang |
author_sort |
Mohamed Hamed Arisha |
title |
Ethyl methane sulfonate induced mutations in M2 generation and physiological variations in M1 generation of peppers (Capsicum annuum L.) |
title_short |
Ethyl methane sulfonate induced mutations in M2 generation and physiological variations in M1 generation of peppers (Capsicum annuum L.) |
title_full |
Ethyl methane sulfonate induced mutations in M2 generation and physiological variations in M1 generation of peppers (Capsicum annuum L.) |
title_fullStr |
Ethyl methane sulfonate induced mutations in M2 generation and physiological variations in M1 generation of peppers (Capsicum annuum L.) |
title_full_unstemmed |
Ethyl methane sulfonate induced mutations in M2 generation and physiological variations in M1 generation of peppers (Capsicum annuum L.) |
title_sort |
ethyl methane sulfonate induced mutations in m2 generation and physiological variations in m1 generation of peppers (capsicum annuum l.) |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Plant Science |
issn |
1664-462X |
publishDate |
2015-06-01 |
description |
This study was conducted to enhance genetic variability in peppers (Capsicum annuum, cv B12) using ethyl methansulphonate (EMS). Exposure to an EMS concentration of 0.6%, v/v for 12 hours was used to mutagenize 2000 seeds for the first generation (M1). It was observed that the growth behaviors including plant height, flowering date and number of seeds per first fruit were different in the M1 generation than in wild type plants. In addition one phenotypic mutation (leaf shape and plant architecture) was observed during the M1 generation. During the seedling stage in the M2 generation, the observed changes were in the form of slow growth or chlorophyll defect (e.g., albino, pale green and yellow seedlings). At maturity, there were three kinds of phenotypic mutations observed in three different families of the mutant population. The first observed change was a plant with yellow leaf color, and the leaves of this mutant plant contained 62.19% less chlorophyll a and 64.06% less chlorophyll b as compared to the wild-type. The second mutation resulted in one dwarf plant with a very short stature (6 cm), compact internodes and the leaves and stem were rough and thick. The third type of mutation occurred in four plants and resulted in the leaves of these plants being very thick and longer than those of wild type plants. Furthermore, anatomical observations of the leaf blade section of this mutant plant type contained more xylem and collenchyma tissue in the leaf midrib of the mutant plant than wild type. In addition, its leaf blade contained thicker palisade and spongy tissue than the wild type. |
topic |
mutations pepper EMS Capsicum annuum M1 generation M2 generation |
url |
http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00399/full |
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