Global identification and analysis revealed differentially expressed lncRNAs associated with meiosis and low fertility in autotetraploid rice

Abstract Background Autotetraploid rice is a useful germplasm for polyploid rice breeding. Our previous research showed that non-coding RNAs might be associated with low fertility in autotetraploid rice. However, little information is available on long non-coding RNAs (lncRNAs) involved in the low f...

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Main Authors: Xiang Li, Muhammad Qasim Shahid, Minsi Wen, Shuling Chen, Hang Yu, Yamin Jiao, Zijun Lu, Yajing Li, Xiangdong Liu
Format: Article
Language:English
Published: BMC 2020-02-01
Series:BMC Plant Biology
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12870-020-2290-0
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spelling doaj-1bceeeec81a74eadb43fe3d85875c0862020-11-25T02:14:16ZengBMCBMC Plant Biology1471-22292020-02-0120111910.1186/s12870-020-2290-0Global identification and analysis revealed differentially expressed lncRNAs associated with meiosis and low fertility in autotetraploid riceXiang Li0Muhammad Qasim Shahid1Minsi Wen2Shuling Chen3Hang Yu4Yamin Jiao5Zijun Lu6Yajing Li7Xiangdong Liu8State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural UniversityState Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural UniversityCollege of Agriculture, South China Agricultural UniversityCollege of Agriculture, South China Agricultural UniversityState Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural UniversityState Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural UniversityState Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural UniversityState Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural UniversityState Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural UniversityAbstract Background Autotetraploid rice is a useful germplasm for polyploid rice breeding. Our previous research showed that non-coding RNAs might be associated with low fertility in autotetraploid rice. However, little information is available on long non-coding RNAs (lncRNAs) involved in the low fertility of autotetraploid rice. In the present study, RNA-seq was employed to detect the differentially expressed meiosis-related lncRNAs in autotetraploid rice, and gene overexpression and knock out experiments were used to validate the potential function of candidate lncRNA. Results A total of 444 differentially expressed lncRNAs (DEL) were detected during anther and ovary meiosis in autotetraploid rice. Of these, 328 DEL were associated with the transposable elements, which displayed low expression levels during meiosis in autotetraploid rice. We used rapid amplification of cDNA ends (RACE) assay to validate 10 DEL and found that the lncRNAs were not assembly artifacts, and six of them were conserved in tetraploid rice. Moreover, 237 and 20 lncRNAs were associated with pollen mother cell (PMC) and embryo sac mother cell (EMC) meiosis in autotetraploid rice, respectively. The differential expressions of some meiosis-related targets and its DEL regulator, including MEL1 regulated by TCONS_00068868, LOC_Os12g41350 (meiotic asynaptic mutant 1) by TCONS_00057811 in PMC, and LOC_Os12g39420 by TCONS_00144592 in EMC, were confirmed by qRT-PCR. TCONS_00057811, TCONS_00055980 and TCONS_00130461 showed anther specific expression patterns and were found to be highly expressed during meiosis. CRISPR/Cas9 editing of lncRNA57811 displayed similar morphology compared to wild type. The overexpression of lncRNA57811 resulted in low pollen fertility (29.70%) and seed setting (33%) in rice. Conclusion The differential expression levels of lncRNAs, associated with transposable elements and meiosis-regulated targets, might be endogenous noncoding regulators of pollen/embryo sac development that cause low fertility in autotetraploid rice. The results enhance our understanding about rice lncRNAs, and facilitate functional research in autotetraploid rice.http://link.springer.com/article/10.1186/s12870-020-2290-0Autotetraploid riceEmbryo sac mother celllncRNAs (long non-coding RNAs)Male sterilityMeiosisPollen mother cell
collection DOAJ
language English
format Article
sources DOAJ
author Xiang Li
Muhammad Qasim Shahid
Minsi Wen
Shuling Chen
Hang Yu
Yamin Jiao
Zijun Lu
Yajing Li
Xiangdong Liu
spellingShingle Xiang Li
Muhammad Qasim Shahid
Minsi Wen
Shuling Chen
Hang Yu
Yamin Jiao
Zijun Lu
Yajing Li
Xiangdong Liu
Global identification and analysis revealed differentially expressed lncRNAs associated with meiosis and low fertility in autotetraploid rice
BMC Plant Biology
Autotetraploid rice
Embryo sac mother cell
lncRNAs (long non-coding RNAs)
Male sterility
Meiosis
Pollen mother cell
author_facet Xiang Li
Muhammad Qasim Shahid
Minsi Wen
Shuling Chen
Hang Yu
Yamin Jiao
Zijun Lu
Yajing Li
Xiangdong Liu
author_sort Xiang Li
title Global identification and analysis revealed differentially expressed lncRNAs associated with meiosis and low fertility in autotetraploid rice
title_short Global identification and analysis revealed differentially expressed lncRNAs associated with meiosis and low fertility in autotetraploid rice
title_full Global identification and analysis revealed differentially expressed lncRNAs associated with meiosis and low fertility in autotetraploid rice
title_fullStr Global identification and analysis revealed differentially expressed lncRNAs associated with meiosis and low fertility in autotetraploid rice
title_full_unstemmed Global identification and analysis revealed differentially expressed lncRNAs associated with meiosis and low fertility in autotetraploid rice
title_sort global identification and analysis revealed differentially expressed lncrnas associated with meiosis and low fertility in autotetraploid rice
publisher BMC
series BMC Plant Biology
issn 1471-2229
publishDate 2020-02-01
description Abstract Background Autotetraploid rice is a useful germplasm for polyploid rice breeding. Our previous research showed that non-coding RNAs might be associated with low fertility in autotetraploid rice. However, little information is available on long non-coding RNAs (lncRNAs) involved in the low fertility of autotetraploid rice. In the present study, RNA-seq was employed to detect the differentially expressed meiosis-related lncRNAs in autotetraploid rice, and gene overexpression and knock out experiments were used to validate the potential function of candidate lncRNA. Results A total of 444 differentially expressed lncRNAs (DEL) were detected during anther and ovary meiosis in autotetraploid rice. Of these, 328 DEL were associated with the transposable elements, which displayed low expression levels during meiosis in autotetraploid rice. We used rapid amplification of cDNA ends (RACE) assay to validate 10 DEL and found that the lncRNAs were not assembly artifacts, and six of them were conserved in tetraploid rice. Moreover, 237 and 20 lncRNAs were associated with pollen mother cell (PMC) and embryo sac mother cell (EMC) meiosis in autotetraploid rice, respectively. The differential expressions of some meiosis-related targets and its DEL regulator, including MEL1 regulated by TCONS_00068868, LOC_Os12g41350 (meiotic asynaptic mutant 1) by TCONS_00057811 in PMC, and LOC_Os12g39420 by TCONS_00144592 in EMC, were confirmed by qRT-PCR. TCONS_00057811, TCONS_00055980 and TCONS_00130461 showed anther specific expression patterns and were found to be highly expressed during meiosis. CRISPR/Cas9 editing of lncRNA57811 displayed similar morphology compared to wild type. The overexpression of lncRNA57811 resulted in low pollen fertility (29.70%) and seed setting (33%) in rice. Conclusion The differential expression levels of lncRNAs, associated with transposable elements and meiosis-regulated targets, might be endogenous noncoding regulators of pollen/embryo sac development that cause low fertility in autotetraploid rice. The results enhance our understanding about rice lncRNAs, and facilitate functional research in autotetraploid rice.
topic Autotetraploid rice
Embryo sac mother cell
lncRNAs (long non-coding RNAs)
Male sterility
Meiosis
Pollen mother cell
url http://link.springer.com/article/10.1186/s12870-020-2290-0
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