Cargando…

The GA 20-Oxidase Encoding Gene MSD1 Controls the Main Stem Elongation in Medicago truncatula

Plant height is an important agronomic trait that is closely related to biomass yield and crop production. Despite legumes comprise one of the largest monophyletic families that are second only to grasses in terms of economic and nutritional values, due to an ancient genome duplication event, most l...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Wanying, Ma, Qingxia, Yin, Pengcheng, Wen, Jiangqi, Pei, Yanxi, Niu, Lifang, Lin, Hao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8371406/
https://www.ncbi.nlm.nih.gov/pubmed/34421956
http://dx.doi.org/10.3389/fpls.2021.709625
_version_ 1783739634904203264
author Li, Wanying
Ma, Qingxia
Yin, Pengcheng
Wen, Jiangqi
Pei, Yanxi
Niu, Lifang
Lin, Hao
author_facet Li, Wanying
Ma, Qingxia
Yin, Pengcheng
Wen, Jiangqi
Pei, Yanxi
Niu, Lifang
Lin, Hao
author_sort Li, Wanying
collection PubMed
description Plant height is an important agronomic trait that is closely related to biomass yield and crop production. Despite legumes comprise one of the largest monophyletic families that are second only to grasses in terms of economic and nutritional values, due to an ancient genome duplication event, most legume plants have complex genomes, thus the molecular mechanisms that determine plant height are less known in legumes. Here, we report the identification and characterization of MAIN STEM DWARF1 (MSD1), which is required for the plant height in the model legume Medicago truncatula. Loss of function of MSD1 leads to severely reduced main stem height but normal lateral branch elongation in M. truncatula. Histological analysis revealed that the msd1-1 main stem has shorter internodes with reduced cell size and number compared with the wild type, indicating that MSD1 affects cell elongation and cell proliferation. MSD1 encodes a putative GA 20-oxidase that is expressed at significantly higher levels in the main shoot apex than in the lateral shoot apices, suggesting that MSD1 expression is associated with its effect on the main stem elongation. UPLC-MS/MS analysis showed that GA(9) and GA(4), two identified products of the GA 20-oxidase, were severely reduced in msd1-1, and the dwarf phenotype of msd1-1 could be rescued by supplementation with gibberellic acid GA(3), confirming that MSD1 functions as a biologically active GA 20-oxidase. Moreover, we found that disruption of either MtGA20ox7 or MtGA20ox8, homologs of MSD1, has little effects on the elongation of the main stem, while the msd1-1 mtga20ox7-1 mtga20ox8 triple mutants exhibits a severe short main shoot and lateral branches, as well as reduced leaf size, suggesting that MSD1 and its homologs MtGA20ox7 and MtGA20ox8, redundantly regulate M. truncatula shoot elongation and leaf development. Taken together, our findings demonstrate the molecular mechanism of MSD1-mediated regulation of main stem elongation in M. truncatula and provide insights into understanding the functional diversity of GA 20-oxidases in optimizing plant architecture in legumes.
format Online
Article
Text
id pubmed-8371406
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-83714062021-08-19 The GA 20-Oxidase Encoding Gene MSD1 Controls the Main Stem Elongation in Medicago truncatula Li, Wanying Ma, Qingxia Yin, Pengcheng Wen, Jiangqi Pei, Yanxi Niu, Lifang Lin, Hao Front Plant Sci Plant Science Plant height is an important agronomic trait that is closely related to biomass yield and crop production. Despite legumes comprise one of the largest monophyletic families that are second only to grasses in terms of economic and nutritional values, due to an ancient genome duplication event, most legume plants have complex genomes, thus the molecular mechanisms that determine plant height are less known in legumes. Here, we report the identification and characterization of MAIN STEM DWARF1 (MSD1), which is required for the plant height in the model legume Medicago truncatula. Loss of function of MSD1 leads to severely reduced main stem height but normal lateral branch elongation in M. truncatula. Histological analysis revealed that the msd1-1 main stem has shorter internodes with reduced cell size and number compared with the wild type, indicating that MSD1 affects cell elongation and cell proliferation. MSD1 encodes a putative GA 20-oxidase that is expressed at significantly higher levels in the main shoot apex than in the lateral shoot apices, suggesting that MSD1 expression is associated with its effect on the main stem elongation. UPLC-MS/MS analysis showed that GA(9) and GA(4), two identified products of the GA 20-oxidase, were severely reduced in msd1-1, and the dwarf phenotype of msd1-1 could be rescued by supplementation with gibberellic acid GA(3), confirming that MSD1 functions as a biologically active GA 20-oxidase. Moreover, we found that disruption of either MtGA20ox7 or MtGA20ox8, homologs of MSD1, has little effects on the elongation of the main stem, while the msd1-1 mtga20ox7-1 mtga20ox8 triple mutants exhibits a severe short main shoot and lateral branches, as well as reduced leaf size, suggesting that MSD1 and its homologs MtGA20ox7 and MtGA20ox8, redundantly regulate M. truncatula shoot elongation and leaf development. Taken together, our findings demonstrate the molecular mechanism of MSD1-mediated regulation of main stem elongation in M. truncatula and provide insights into understanding the functional diversity of GA 20-oxidases in optimizing plant architecture in legumes. Frontiers Media S.A. 2021-08-04 /pmc/articles/PMC8371406/ /pubmed/34421956 http://dx.doi.org/10.3389/fpls.2021.709625 Text en Copyright © 2021 Li, Ma, Yin, Wen, Pei, Niu and Lin. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Li, Wanying
Ma, Qingxia
Yin, Pengcheng
Wen, Jiangqi
Pei, Yanxi
Niu, Lifang
Lin, Hao
The GA 20-Oxidase Encoding Gene MSD1 Controls the Main Stem Elongation in Medicago truncatula
title The GA 20-Oxidase Encoding Gene MSD1 Controls the Main Stem Elongation in Medicago truncatula
title_full The GA 20-Oxidase Encoding Gene MSD1 Controls the Main Stem Elongation in Medicago truncatula
title_fullStr The GA 20-Oxidase Encoding Gene MSD1 Controls the Main Stem Elongation in Medicago truncatula
title_full_unstemmed The GA 20-Oxidase Encoding Gene MSD1 Controls the Main Stem Elongation in Medicago truncatula
title_short The GA 20-Oxidase Encoding Gene MSD1 Controls the Main Stem Elongation in Medicago truncatula
title_sort ga 20-oxidase encoding gene msd1 controls the main stem elongation in medicago truncatula
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8371406/
https://www.ncbi.nlm.nih.gov/pubmed/34421956
http://dx.doi.org/10.3389/fpls.2021.709625
work_keys_str_mv AT liwanying thega20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT maqingxia thega20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT yinpengcheng thega20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT wenjiangqi thega20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT peiyanxi thega20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT niulifang thega20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT linhao thega20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT liwanying ga20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT maqingxia ga20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT yinpengcheng ga20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT wenjiangqi ga20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT peiyanxi ga20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT niulifang ga20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula
AT linhao ga20oxidaseencodinggenemsd1controlsthemainstemelongationinmedicagotruncatula