Cargando…
Scion-to-Rootstock Mobile Transcription Factor CmHY5 Positively Modulates the Nitrate Uptake Capacity of Melon Scion Grafted on Squash Rootstock
It is generally recognized that the root uptake capacity of grafted plants strongly depends on the rootstocks’ well-developed root system. However, we found that grafted plants showed different nitrate uptake capacities when different varieties of oriental melon scion were grafted onto the same squa...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820822/ https://www.ncbi.nlm.nih.gov/pubmed/36613606 http://dx.doi.org/10.3390/ijms24010162 |
_version_ | 1784865552637886464 |
---|---|
author | Hou, Shu’an Zhu, Yulei Wu, Xiaofang Xin, Ying Guo, Jieying Wu, Fang Yu, Hanqi Sun, Ziqing Xu, Chuanqiang |
author_facet | Hou, Shu’an Zhu, Yulei Wu, Xiaofang Xin, Ying Guo, Jieying Wu, Fang Yu, Hanqi Sun, Ziqing Xu, Chuanqiang |
author_sort | Hou, Shu’an |
collection | PubMed |
description | It is generally recognized that the root uptake capacity of grafted plants strongly depends on the rootstocks’ well-developed root system. However, we found that grafted plants showed different nitrate uptake capacities when different varieties of oriental melon scion were grafted onto the same squash rootstock, suggesting that the scion regulated the nitrate uptake capacity of the rootstock root. In this study, we estimated the nitrate uptake capacity of grafted plants with the different oriental melon varieties’ seedlings grafted onto the same squash rootstocks. The results indicated a significant difference in the nitrate uptake rate and activity of two heterologous grafting plants. We also showed a significant difference in CmoNRT2.1 expression in the roots of two grafting combinations and verified the positive regulation of nitrate uptake by CmoNRT2.1 expression. In addition, the two varieties of oriental melon scion had highly significant differences in CmHY5 expression, which was transported to the rootstock and positively induced CmoHY5-1 and CmoHY5-2 expression in the rootstock roots. Meanwhile, CmHY5 could positively regulate CmoNRT2.1 expression in the rootstock roots. Furthermore, CmoHY5-1 and CmoHY5-2 also positively regulated CmoNRT2.1 expression, respectively, and CmoHY5-1 dominated the positive regulation of CmoNRT2.1, while CmHY5 could interact with CmoHY5-1 and CmoHY5-2, respectively, to jointly regulate CmoNRT2.1 expression. The oriental melon scion regulated the nitrate uptake capacity of the melon/squash grafting plant roots, and the higher expression of CmHY5 in the oriental melon scion leaves, the more substantial the nitrate uptake capacity of squash rootstock roots. |
format | Online Article Text |
id | pubmed-9820822 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-98208222023-01-07 Scion-to-Rootstock Mobile Transcription Factor CmHY5 Positively Modulates the Nitrate Uptake Capacity of Melon Scion Grafted on Squash Rootstock Hou, Shu’an Zhu, Yulei Wu, Xiaofang Xin, Ying Guo, Jieying Wu, Fang Yu, Hanqi Sun, Ziqing Xu, Chuanqiang Int J Mol Sci Article It is generally recognized that the root uptake capacity of grafted plants strongly depends on the rootstocks’ well-developed root system. However, we found that grafted plants showed different nitrate uptake capacities when different varieties of oriental melon scion were grafted onto the same squash rootstock, suggesting that the scion regulated the nitrate uptake capacity of the rootstock root. In this study, we estimated the nitrate uptake capacity of grafted plants with the different oriental melon varieties’ seedlings grafted onto the same squash rootstocks. The results indicated a significant difference in the nitrate uptake rate and activity of two heterologous grafting plants. We also showed a significant difference in CmoNRT2.1 expression in the roots of two grafting combinations and verified the positive regulation of nitrate uptake by CmoNRT2.1 expression. In addition, the two varieties of oriental melon scion had highly significant differences in CmHY5 expression, which was transported to the rootstock and positively induced CmoHY5-1 and CmoHY5-2 expression in the rootstock roots. Meanwhile, CmHY5 could positively regulate CmoNRT2.1 expression in the rootstock roots. Furthermore, CmoHY5-1 and CmoHY5-2 also positively regulated CmoNRT2.1 expression, respectively, and CmoHY5-1 dominated the positive regulation of CmoNRT2.1, while CmHY5 could interact with CmoHY5-1 and CmoHY5-2, respectively, to jointly regulate CmoNRT2.1 expression. The oriental melon scion regulated the nitrate uptake capacity of the melon/squash grafting plant roots, and the higher expression of CmHY5 in the oriental melon scion leaves, the more substantial the nitrate uptake capacity of squash rootstock roots. MDPI 2022-12-22 /pmc/articles/PMC9820822/ /pubmed/36613606 http://dx.doi.org/10.3390/ijms24010162 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Hou, Shu’an Zhu, Yulei Wu, Xiaofang Xin, Ying Guo, Jieying Wu, Fang Yu, Hanqi Sun, Ziqing Xu, Chuanqiang Scion-to-Rootstock Mobile Transcription Factor CmHY5 Positively Modulates the Nitrate Uptake Capacity of Melon Scion Grafted on Squash Rootstock |
title | Scion-to-Rootstock Mobile Transcription Factor CmHY5 Positively Modulates the Nitrate Uptake Capacity of Melon Scion Grafted on Squash Rootstock |
title_full | Scion-to-Rootstock Mobile Transcription Factor CmHY5 Positively Modulates the Nitrate Uptake Capacity of Melon Scion Grafted on Squash Rootstock |
title_fullStr | Scion-to-Rootstock Mobile Transcription Factor CmHY5 Positively Modulates the Nitrate Uptake Capacity of Melon Scion Grafted on Squash Rootstock |
title_full_unstemmed | Scion-to-Rootstock Mobile Transcription Factor CmHY5 Positively Modulates the Nitrate Uptake Capacity of Melon Scion Grafted on Squash Rootstock |
title_short | Scion-to-Rootstock Mobile Transcription Factor CmHY5 Positively Modulates the Nitrate Uptake Capacity of Melon Scion Grafted on Squash Rootstock |
title_sort | scion-to-rootstock mobile transcription factor cmhy5 positively modulates the nitrate uptake capacity of melon scion grafted on squash rootstock |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820822/ https://www.ncbi.nlm.nih.gov/pubmed/36613606 http://dx.doi.org/10.3390/ijms24010162 |
work_keys_str_mv | AT houshuan sciontorootstockmobiletranscriptionfactorcmhy5positivelymodulatesthenitrateuptakecapacityofmelonsciongraftedonsquashrootstock AT zhuyulei sciontorootstockmobiletranscriptionfactorcmhy5positivelymodulatesthenitrateuptakecapacityofmelonsciongraftedonsquashrootstock AT wuxiaofang sciontorootstockmobiletranscriptionfactorcmhy5positivelymodulatesthenitrateuptakecapacityofmelonsciongraftedonsquashrootstock AT xinying sciontorootstockmobiletranscriptionfactorcmhy5positivelymodulatesthenitrateuptakecapacityofmelonsciongraftedonsquashrootstock AT guojieying sciontorootstockmobiletranscriptionfactorcmhy5positivelymodulatesthenitrateuptakecapacityofmelonsciongraftedonsquashrootstock AT wufang sciontorootstockmobiletranscriptionfactorcmhy5positivelymodulatesthenitrateuptakecapacityofmelonsciongraftedonsquashrootstock AT yuhanqi sciontorootstockmobiletranscriptionfactorcmhy5positivelymodulatesthenitrateuptakecapacityofmelonsciongraftedonsquashrootstock AT sunziqing sciontorootstockmobiletranscriptionfactorcmhy5positivelymodulatesthenitrateuptakecapacityofmelonsciongraftedonsquashrootstock AT xuchuanqiang sciontorootstockmobiletranscriptionfactorcmhy5positivelymodulatesthenitrateuptakecapacityofmelonsciongraftedonsquashrootstock |