Gene silencing by microrna in pineapple: discovery, involvement in the control of fruit development and its application as artificial gene regulators
MicroRNAs (miRNAs) are a class of small RNAs, usually 19-24 nt in length, which are found endogenously within the cell and do not code for any protein. However, they participate in regulating the level of mRNA transcripts through cleavage or translational inhibition, creating an effect called gene s...
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Format: | Chapter In Book |
Language: | English |
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2017
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Online Access: | https://eprints.ums.edu.my/id/eprint/20062/1/Gene%20silencing%20by%20microrna%20in%20pineapple.pdf |
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author | Noor Hydayaty Md. Yusuf Mariam Abd Latip Vijay Kumar Subbiah |
author_facet | Noor Hydayaty Md. Yusuf Mariam Abd Latip Vijay Kumar Subbiah |
author_sort | Noor Hydayaty Md. Yusuf |
collection | UMS |
description | MicroRNAs (miRNAs) are a class of small RNAs, usually 19-24 nt in length, which are found endogenously within the cell and do not code for any protein. However, they participate in regulating the level of mRNA transcripts through cleavage or translational inhibition, creating an effect called gene silencing. MicroRNAs have been shown to be essential for major biological and physiological development in plants, including pineapple. A hundred and fifty-three miRNAs, regulating many aspects of plant growth, have been described in pineapple to date. Reports of the existence of this natural gene silencing system have led to the development of a similar system at a synthetic level. Artificial microRNA (amiRNA) is a unique custom-designed molecule of RNA, approximately 21 nt in length, with the sole function of silencing the expression of its target gene by mimicking the action of miRNA in the RNA interference (RNAi) pathway. In pineapple, target genes have not only been silenced using this technique but the silencing has occurred in a specific manner, i.e., the target genes were silenced without affecting the expression of other, unrelated genes. This technique has addressed the limitations of conventional breeding techniques, as amiRNA silencing can be performed rapidly and is time-consuming and occurs in a specific manner. |
first_indexed | 2024-03-06T02:56:58Z |
format | Chapter In Book |
id | ums.eprints-20062 |
institution | Universiti Malaysia Sabah |
language | English |
last_indexed | 2024-03-06T02:56:58Z |
publishDate | 2017 |
record_format | dspace |
spelling | ums.eprints-200622018-05-17T01:31:28Z https://eprints.ums.edu.my/id/eprint/20062/ Gene silencing by microrna in pineapple: discovery, involvement in the control of fruit development and its application as artificial gene regulators Noor Hydayaty Md. Yusuf Mariam Abd Latip Vijay Kumar Subbiah QK Botany MicroRNAs (miRNAs) are a class of small RNAs, usually 19-24 nt in length, which are found endogenously within the cell and do not code for any protein. However, they participate in regulating the level of mRNA transcripts through cleavage or translational inhibition, creating an effect called gene silencing. MicroRNAs have been shown to be essential for major biological and physiological development in plants, including pineapple. A hundred and fifty-three miRNAs, regulating many aspects of plant growth, have been described in pineapple to date. Reports of the existence of this natural gene silencing system have led to the development of a similar system at a synthetic level. Artificial microRNA (amiRNA) is a unique custom-designed molecule of RNA, approximately 21 nt in length, with the sole function of silencing the expression of its target gene by mimicking the action of miRNA in the RNA interference (RNAi) pathway. In pineapple, target genes have not only been silenced using this technique but the silencing has occurred in a specific manner, i.e., the target genes were silenced without affecting the expression of other, unrelated genes. This technique has addressed the limitations of conventional breeding techniques, as amiRNA silencing can be performed rapidly and is time-consuming and occurs in a specific manner. 2017 Chapter In Book NonPeerReviewed text en https://eprints.ums.edu.my/id/eprint/20062/1/Gene%20silencing%20by%20microrna%20in%20pineapple.pdf Noor Hydayaty Md. Yusuf and Mariam Abd Latip and Vijay Kumar Subbiah (2017) Gene silencing by microrna in pineapple: discovery, involvement in the control of fruit development and its application as artificial gene regulators. Tropical Fruits: From Cultivation to Consumption and Health Benefits, Pineapple. pp. 227-244. https://www.scopus.com/inward/record.uri?eid=2-s2.0-85044626811&partnerID=40&md5=945a5b312f1e5e3cba155ebe0c25ba20 |
spellingShingle | QK Botany Noor Hydayaty Md. Yusuf Mariam Abd Latip Vijay Kumar Subbiah Gene silencing by microrna in pineapple: discovery, involvement in the control of fruit development and its application as artificial gene regulators |
title | Gene silencing by microrna in pineapple: discovery, involvement in the control of fruit development and its application as artificial gene regulators |
title_full | Gene silencing by microrna in pineapple: discovery, involvement in the control of fruit development and its application as artificial gene regulators |
title_fullStr | Gene silencing by microrna in pineapple: discovery, involvement in the control of fruit development and its application as artificial gene regulators |
title_full_unstemmed | Gene silencing by microrna in pineapple: discovery, involvement in the control of fruit development and its application as artificial gene regulators |
title_short | Gene silencing by microrna in pineapple: discovery, involvement in the control of fruit development and its application as artificial gene regulators |
title_sort | gene silencing by microrna in pineapple discovery involvement in the control of fruit development and its application as artificial gene regulators |
topic | QK Botany |
url | https://eprints.ums.edu.my/id/eprint/20062/1/Gene%20silencing%20by%20microrna%20in%20pineapple.pdf |
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