The SMC5/6 complex subunit MMS21 regulates stem cell proliferation in rice
Key message SMC5/6 complex subunit OsMMS21 is involved in cell cycle and hormone signaling and required for stem cell proliferation during shoot and root development in rice . The structural maintenance of chromosome (SMC)5/6 complex is required for nucleolar integrity and DNA metabolism. Moreover,...
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Published in | Plant cell reports Vol. 42; no. 8; pp. 1279 - 1290 |
---|---|
Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer Berlin Heidelberg
01.08.2023
Springer Nature B.V |
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Abstract | Key message
SMC5/6 complex subunit OsMMS21 is involved in cell cycle and hormone signaling and required for stem cell proliferation during shoot and root development in rice
.
The structural maintenance of chromosome (SMC)5/6 complex is required for nucleolar integrity and DNA metabolism. Moreover,
METHYL METHANESULFONATE SENSITIVITY GENE 21
(
MMS21
), a SUMO E3 ligase that is part of the SMC5/6 complex, is essential for the root stem cell niche and cell cycle transition in Arabidopsis. However, its specific role in rice remains unclear. Here,
OsSMC5
and
OsSMC6
single heterozygous mutants were generated using CRISPR/Cas9 technology to elucidate the function of SMC5/6 subunits, including
OsSMC5
,
OsSMC6
, and
OsMMS21
, in cell proliferation in rice.
ossmc5
/ + and
ossmc6
/ + heterozygous single mutants did not yield homozygous mutants in their progeny, indicating that
OsSMC5
and
OsSMC6
both play necessary roles during embryo formation. Loss of
OsMMS21
caused severe defects in both the shoot and roots in rice. Transcriptome analysis showed a significant decrease in the expression of genes involved in auxin signaling in the roots of
osmms21
mutants. Moreover, the expression levels of the
cycB2-1
and
MCM
genes, which are involved the cell cycle, were significantly lower in the shoots of the mutants, indicating that
OsMMS21
was involved in both hormone signaling pathways and the cell cycle. Overall, these findings indicate that the SUMO E3 ligase
OsMMS21
is required for both shoot and root stem cell niches, improving the understanding of the function of the SMC5/6 complex in rice. |
---|---|
AbstractList | Key messageSMC5/6 complex subunit OsMMS21 is involved in cell cycle and hormone signaling and required for stem cell proliferation during shoot and root development in rice. The structural maintenance of chromosome (SMC)5/6 complex is required for nucleolar integrity and DNA metabolism. Moreover, METHYL METHANESULFONATE SENSITIVITY GENE 21 (MMS21), a SUMO E3 ligase that is part of the SMC5/6 complex, is essential for the root stem cell niche and cell cycle transition in Arabidopsis. However, its specific role in rice remains unclear. Here, OsSMC5 and OsSMC6 single heterozygous mutants were generated using CRISPR/Cas9 technology to elucidate the function of SMC5/6 subunits, including OsSMC5, OsSMC6, and OsMMS21, in cell proliferation in rice. ossmc5/ + and ossmc6/ + heterozygous single mutants did not yield homozygous mutants in their progeny, indicating that OsSMC5 and OsSMC6 both play necessary roles during embryo formation. Loss of OsMMS21 caused severe defects in both the shoot and roots in rice. Transcriptome analysis showed a significant decrease in the expression of genes involved in auxin signaling in the roots of osmms21 mutants. Moreover, the expression levels of the cycB2-1 and MCM genes, which are involved the cell cycle, were significantly lower in the shoots of the mutants, indicating that OsMMS21 was involved in both hormone signaling pathways and the cell cycle. Overall, these findings indicate that the SUMO E3 ligase OsMMS21 is required for both shoot and root stem cell niches, improving the understanding of the function of the SMC5/6 complex in rice. Key message SMC5/6 complex subunit OsMMS21 is involved in cell cycle and hormone signaling and required for stem cell proliferation during shoot and root development in rice . The structural maintenance of chromosome (SMC)5/6 complex is required for nucleolar integrity and DNA metabolism. Moreover, METHYL METHANESULFONATE SENSITIVITY GENE 21 ( MMS21 ), a SUMO E3 ligase that is part of the SMC5/6 complex, is essential for the root stem cell niche and cell cycle transition in Arabidopsis. However, its specific role in rice remains unclear. Here, OsSMC5 and OsSMC6 single heterozygous mutants were generated using CRISPR/Cas9 technology to elucidate the function of SMC5/6 subunits, including OsSMC5 , OsSMC6 , and OsMMS21 , in cell proliferation in rice. ossmc5 / + and ossmc6 / + heterozygous single mutants did not yield homozygous mutants in their progeny, indicating that OsSMC5 and OsSMC6 both play necessary roles during embryo formation. Loss of OsMMS21 caused severe defects in both the shoot and roots in rice. Transcriptome analysis showed a significant decrease in the expression of genes involved in auxin signaling in the roots of osmms21 mutants. Moreover, the expression levels of the cycB2-1 and MCM genes, which are involved the cell cycle, were significantly lower in the shoots of the mutants, indicating that OsMMS21 was involved in both hormone signaling pathways and the cell cycle. Overall, these findings indicate that the SUMO E3 ligase OsMMS21 is required for both shoot and root stem cell niches, improving the understanding of the function of the SMC5/6 complex in rice. SMC5/6 complex subunit OsMMS21 is involved in cell cycle and hormone signaling and required for stem cell proliferation during shoot and root development in rice. The structural maintenance of chromosome (SMC)5/6 complex is required for nucleolar integrity and DNA metabolism. Moreover, METHYL METHANESULFONATE SENSITIVITY GENE 21 (MMS21), a SUMO E3 ligase that is part of the SMC5/6 complex, is essential for the root stem cell niche and cell cycle transition in Arabidopsis. However, its specific role in rice remains unclear. Here, OsSMC5 and OsSMC6 single heterozygous mutants were generated using CRISPR/Cas9 technology to elucidate the function of SMC5/6 subunits, including OsSMC5, OsSMC6, and OsMMS21, in cell proliferation in rice. ossmc5/ + and ossmc6/ + heterozygous single mutants did not yield homozygous mutants in their progeny, indicating that OsSMC5 and OsSMC6 both play necessary roles during embryo formation. Loss of OsMMS21 caused severe defects in both the shoot and roots in rice. Transcriptome analysis showed a significant decrease in the expression of genes involved in auxin signaling in the roots of osmms21 mutants. Moreover, the expression levels of the cycB2-1 and MCM genes, which are involved the cell cycle, were significantly lower in the shoots of the mutants, indicating that OsMMS21 was involved in both hormone signaling pathways and the cell cycle. Overall, these findings indicate that the SUMO E3 ligase OsMMS21 is required for both shoot and root stem cell niches, improving the understanding of the function of the SMC5/6 complex in rice. |
Author | Xun, Qian Ding, Chengqiang Mei, Min Song, Ye Ding, Yanfeng |
Author_xml | – sequence: 1 givenname: Qian surname: Xun fullname: Xun, Qian organization: College of Agriculture, Nanjing Agricultural University – sequence: 2 givenname: Ye surname: Song fullname: Song, Ye organization: College of Agriculture, Nanjing Agricultural University – sequence: 3 givenname: Min surname: Mei fullname: Mei, Min organization: College of Agriculture, Nanjing Agricultural University – sequence: 4 givenname: Yanfeng surname: Ding fullname: Ding, Yanfeng organization: College of Agriculture, Nanjing Agricultural University, Key Laboratory of Crop Physiology Ecology and Production Management, Ministry of Agriculture, Jiangsu Collaborative Innovation Centre for Modern Crop Production – sequence: 5 givenname: Chengqiang orcidid: 0000-0001-6061-1979 surname: Ding fullname: Ding, Chengqiang email: dingcq@njau.edu.cn organization: College of Agriculture, Nanjing Agricultural University, Key Laboratory of Crop Physiology Ecology and Production Management, Ministry of Agriculture, Jiangsu Collaborative Innovation Centre for Modern Crop Production |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/37178216$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1071_FP24032 crossref_primary_10_1016_j_gene_2023_147938 |
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Keywords | Shoot and root stem cells SMC5/6 complex Rice OsSMC5 OsSMC6 OsMMS21 |
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Snippet | Key message
SMC5/6 complex subunit OsMMS21 is involved in cell cycle and hormone signaling and required for stem cell proliferation during shoot and root... SMC5/6 complex subunit OsMMS21 is involved in cell cycle and hormone signaling and required for stem cell proliferation during shoot and root development in... Key messageSMC5/6 complex subunit OsMMS21 is involved in cell cycle and hormone signaling and required for stem cell proliferation during shoot and root... KEY MESSAGESMC5/6 complex subunit OsMMS21 is involved in cell cycle and hormone signaling and required for stem cell proliferation during shoot and root... |
SourceID | proquest crossref pubmed springer |
SourceType | Aggregation Database Index Database Publisher |
StartPage | 1279 |
SubjectTerms | Biomedical and Life Sciences Biotechnology Cell Biology Cell cycle Cell Cycle Proteins - chemistry Cell Cycle Proteins - genetics Cell Cycle Proteins - metabolism Cell Division Cell growth Cell proliferation CRISPR Gene expression Genes Hormones Life Sciences Methyl methanesulfonate Mutants Nucleoli Original Article Oryza - genetics Oryza - metabolism Plant Biochemistry Plant Sciences Rice Root development Roots Saccharomyces cerevisiae Proteins - genetics Shoots Stem cells SUMO-1 Protein - chemistry SUMO-1 Protein - genetics SUMO-1 Protein - metabolism Transcriptomes Ubiquitin-protein ligase Ubiquitin-Protein Ligases - genetics |
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Title | The SMC5/6 complex subunit MMS21 regulates stem cell proliferation in rice |
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