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Integration of small RNA, degradome and proteome sequencing in Oryza sativa reveals a delayed senescence network in tetraploid rice seed

Seed of rice is an important strategic resource for ensuring the security of China's staple food. Seed deterioration as a result of senescence is a major problem during seed storage, which can cause major economic losses. Screening among accessions in rice germplasm resources for traits such as...

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Autores principales: Huang, Baosheng, Gan, Lu, Chen, Dongjie, Zhang, Yachun, Zhang, Yujie, Liu, Xiangli, Chen, Si, Wei, Zhisong, Tong, Liqi, Song, Zhaojian, Zhang, Xianhua, Cai, Detian, Zhang, Changfeng, He, Yuchi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7665819/
https://www.ncbi.nlm.nih.gov/pubmed/33186373
http://dx.doi.org/10.1371/journal.pone.0242260
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author Huang, Baosheng
Gan, Lu
Chen, Dongjie
Zhang, Yachun
Zhang, Yujie
Liu, Xiangli
Chen, Si
Wei, Zhisong
Tong, Liqi
Song, Zhaojian
Zhang, Xianhua
Cai, Detian
Zhang, Changfeng
He, Yuchi
author_facet Huang, Baosheng
Gan, Lu
Chen, Dongjie
Zhang, Yachun
Zhang, Yujie
Liu, Xiangli
Chen, Si
Wei, Zhisong
Tong, Liqi
Song, Zhaojian
Zhang, Xianhua
Cai, Detian
Zhang, Changfeng
He, Yuchi
author_sort Huang, Baosheng
collection PubMed
description Seed of rice is an important strategic resource for ensuring the security of China's staple food. Seed deterioration as a result of senescence is a major problem during seed storage, which can cause major economic losses. Screening among accessions in rice germplasm resources for traits such as slow senescence and increased seed longevity during storage is, therefore, of great significance. However, studies on delayed senescence in rice have been based mostly on diploid rice seed to date. Despite better tolerance have been verified by the artificial aging treatment for polyploid rice seed, the delayed senescence properties and delayed senescence related regulatory mechanisms of polyploid rice seed are rarely reported, due to the lack of polyploid rice materials with high seed set. High-throughput sequencing was applied to systematically investigate variations in small RNAs, the degradome, and the proteome between tetraploid and diploid rice seeds. Degradome sequencing analysis of microRNAs showed that expression of miR-164d, which regulates genes encoding antioxidant enzymes, was changed significantly, resulting in decreased miRNA-mediated cleavage of target genes in tetraploid rice. Comparisons of the expression levels of small RNAs (sRNAs) in the tetraploid and diploid libraries revealed that 12 sRNAs changed significantly, consistent with the findings from degradome sequencing. Furthermore, proteomics also showed that antioxidant enzymes were up-regulated in tetraploid rice seeds, relative to diploids.
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spelling pubmed-76658192020-11-18 Integration of small RNA, degradome and proteome sequencing in Oryza sativa reveals a delayed senescence network in tetraploid rice seed Huang, Baosheng Gan, Lu Chen, Dongjie Zhang, Yachun Zhang, Yujie Liu, Xiangli Chen, Si Wei, Zhisong Tong, Liqi Song, Zhaojian Zhang, Xianhua Cai, Detian Zhang, Changfeng He, Yuchi PLoS One Research Article Seed of rice is an important strategic resource for ensuring the security of China's staple food. Seed deterioration as a result of senescence is a major problem during seed storage, which can cause major economic losses. Screening among accessions in rice germplasm resources for traits such as slow senescence and increased seed longevity during storage is, therefore, of great significance. However, studies on delayed senescence in rice have been based mostly on diploid rice seed to date. Despite better tolerance have been verified by the artificial aging treatment for polyploid rice seed, the delayed senescence properties and delayed senescence related regulatory mechanisms of polyploid rice seed are rarely reported, due to the lack of polyploid rice materials with high seed set. High-throughput sequencing was applied to systematically investigate variations in small RNAs, the degradome, and the proteome between tetraploid and diploid rice seeds. Degradome sequencing analysis of microRNAs showed that expression of miR-164d, which regulates genes encoding antioxidant enzymes, was changed significantly, resulting in decreased miRNA-mediated cleavage of target genes in tetraploid rice. Comparisons of the expression levels of small RNAs (sRNAs) in the tetraploid and diploid libraries revealed that 12 sRNAs changed significantly, consistent with the findings from degradome sequencing. Furthermore, proteomics also showed that antioxidant enzymes were up-regulated in tetraploid rice seeds, relative to diploids. Public Library of Science 2020-11-13 /pmc/articles/PMC7665819/ /pubmed/33186373 http://dx.doi.org/10.1371/journal.pone.0242260 Text en © 2020 Huang et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Huang, Baosheng
Gan, Lu
Chen, Dongjie
Zhang, Yachun
Zhang, Yujie
Liu, Xiangli
Chen, Si
Wei, Zhisong
Tong, Liqi
Song, Zhaojian
Zhang, Xianhua
Cai, Detian
Zhang, Changfeng
He, Yuchi
Integration of small RNA, degradome and proteome sequencing in Oryza sativa reveals a delayed senescence network in tetraploid rice seed
title Integration of small RNA, degradome and proteome sequencing in Oryza sativa reveals a delayed senescence network in tetraploid rice seed
title_full Integration of small RNA, degradome and proteome sequencing in Oryza sativa reveals a delayed senescence network in tetraploid rice seed
title_fullStr Integration of small RNA, degradome and proteome sequencing in Oryza sativa reveals a delayed senescence network in tetraploid rice seed
title_full_unstemmed Integration of small RNA, degradome and proteome sequencing in Oryza sativa reveals a delayed senescence network in tetraploid rice seed
title_short Integration of small RNA, degradome and proteome sequencing in Oryza sativa reveals a delayed senescence network in tetraploid rice seed
title_sort integration of small rna, degradome and proteome sequencing in oryza sativa reveals a delayed senescence network in tetraploid rice seed
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7665819/
https://www.ncbi.nlm.nih.gov/pubmed/33186373
http://dx.doi.org/10.1371/journal.pone.0242260
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