Cargando…
The Calcium Sensor Calcineurin B-Like Proteins -Calcineurin B-Like Interacting Protein Kinases Is Involved in Leaf Development and Stress Responses Related to Latex Flow in Hevea brasiliensis
Latex flow in Hevea brasiliensis (the Para rubber tree), the sole commercial source of natural rubber (cis-1,4-polyisoprene, NR), renders it uniquely suited for the study of plant stress responses. Calcineurin B-like interacting protein kinases (CIPK) serving as calcium-sensor protein kinases react...
Autores principales: | , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8914471/ https://www.ncbi.nlm.nih.gov/pubmed/35283911 http://dx.doi.org/10.3389/fpls.2022.743506 |
_version_ | 1784667714164359168 |
---|---|
author | Xiao, Xiaohu Mo, Chunyan Sui, Jinlei Lin, Xianzu Long, Xiangyu Qin, Yunxia Fang, Yongjun Tang, Chaorong |
author_facet | Xiao, Xiaohu Mo, Chunyan Sui, Jinlei Lin, Xianzu Long, Xiangyu Qin, Yunxia Fang, Yongjun Tang, Chaorong |
author_sort | Xiao, Xiaohu |
collection | PubMed |
description | Latex flow in Hevea brasiliensis (the Para rubber tree), the sole commercial source of natural rubber (cis-1,4-polyisoprene, NR), renders it uniquely suited for the study of plant stress responses. Calcineurin B-like interacting protein kinases (CIPK) serving as calcium-sensor protein kinases react with calcineurin B-like proteins (CBL) to play crucial roles in hormone signaling transduction and response to abiotic stress in plant developmental processes. However, little is known about their functions in Hevea. In this study, a total of twelve CBL (HbCBL) and thirty CIPK (HbCIPK) genes were identified from the Hevea genome. Structure and phylogenetic analysis assigned these CIPKs to five groups and CBLs to four groups, and mapped onto fourteen of the eighteen Hevea chromosomes. RNA-seq and qPCR analysis showed that the expressions of HbCBL and HbCIPK genes varied in the seven Hevea tissues examined, i.e., latex (cytoplasm of rubber-producing laticifers), bark, leaf, root, seed, female flower, and male flower. The expressions of two HbCBL and sixteen HbCIPK genes showed upward trends during leaf development. Following ethylene yield stimulation and the latex tapping treatment, both practices invoking stress, the expression levels of most latex-expressed genes were significantly altered. Yeast two-hybrid test revealed interactions for multiple combinations of HbCBLs and HbCIPKs with substantial gene expression in latex or other Hevea tissues. However, all the HbCBL-HbCIPK complexes examined did not recruit HbSOS1 or AtSOS1 to form functional salt tolerance SOS pathway in yeast cells. Taken together, the results suggested a role of the Hevea CBL-CIPK network as a point of convergence for several different signaling pathways in growth, development, and stress responses in relation to latex production. |
format | Online Article Text |
id | pubmed-8914471 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-89144712022-03-12 The Calcium Sensor Calcineurin B-Like Proteins -Calcineurin B-Like Interacting Protein Kinases Is Involved in Leaf Development and Stress Responses Related to Latex Flow in Hevea brasiliensis Xiao, Xiaohu Mo, Chunyan Sui, Jinlei Lin, Xianzu Long, Xiangyu Qin, Yunxia Fang, Yongjun Tang, Chaorong Front Plant Sci Plant Science Latex flow in Hevea brasiliensis (the Para rubber tree), the sole commercial source of natural rubber (cis-1,4-polyisoprene, NR), renders it uniquely suited for the study of plant stress responses. Calcineurin B-like interacting protein kinases (CIPK) serving as calcium-sensor protein kinases react with calcineurin B-like proteins (CBL) to play crucial roles in hormone signaling transduction and response to abiotic stress in plant developmental processes. However, little is known about their functions in Hevea. In this study, a total of twelve CBL (HbCBL) and thirty CIPK (HbCIPK) genes were identified from the Hevea genome. Structure and phylogenetic analysis assigned these CIPKs to five groups and CBLs to four groups, and mapped onto fourteen of the eighteen Hevea chromosomes. RNA-seq and qPCR analysis showed that the expressions of HbCBL and HbCIPK genes varied in the seven Hevea tissues examined, i.e., latex (cytoplasm of rubber-producing laticifers), bark, leaf, root, seed, female flower, and male flower. The expressions of two HbCBL and sixteen HbCIPK genes showed upward trends during leaf development. Following ethylene yield stimulation and the latex tapping treatment, both practices invoking stress, the expression levels of most latex-expressed genes were significantly altered. Yeast two-hybrid test revealed interactions for multiple combinations of HbCBLs and HbCIPKs with substantial gene expression in latex or other Hevea tissues. However, all the HbCBL-HbCIPK complexes examined did not recruit HbSOS1 or AtSOS1 to form functional salt tolerance SOS pathway in yeast cells. Taken together, the results suggested a role of the Hevea CBL-CIPK network as a point of convergence for several different signaling pathways in growth, development, and stress responses in relation to latex production. Frontiers Media S.A. 2022-02-25 /pmc/articles/PMC8914471/ /pubmed/35283911 http://dx.doi.org/10.3389/fpls.2022.743506 Text en Copyright © 2022 Xiao, Mo, Sui, Lin, Long, Qin, Fang and Tang. 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 Xiao, Xiaohu Mo, Chunyan Sui, Jinlei Lin, Xianzu Long, Xiangyu Qin, Yunxia Fang, Yongjun Tang, Chaorong The Calcium Sensor Calcineurin B-Like Proteins -Calcineurin B-Like Interacting Protein Kinases Is Involved in Leaf Development and Stress Responses Related to Latex Flow in Hevea brasiliensis |
title | The Calcium Sensor Calcineurin B-Like Proteins -Calcineurin B-Like Interacting Protein Kinases Is Involved in Leaf Development and Stress Responses Related to Latex Flow in Hevea brasiliensis |
title_full | The Calcium Sensor Calcineurin B-Like Proteins -Calcineurin B-Like Interacting Protein Kinases Is Involved in Leaf Development and Stress Responses Related to Latex Flow in Hevea brasiliensis |
title_fullStr | The Calcium Sensor Calcineurin B-Like Proteins -Calcineurin B-Like Interacting Protein Kinases Is Involved in Leaf Development and Stress Responses Related to Latex Flow in Hevea brasiliensis |
title_full_unstemmed | The Calcium Sensor Calcineurin B-Like Proteins -Calcineurin B-Like Interacting Protein Kinases Is Involved in Leaf Development and Stress Responses Related to Latex Flow in Hevea brasiliensis |
title_short | The Calcium Sensor Calcineurin B-Like Proteins -Calcineurin B-Like Interacting Protein Kinases Is Involved in Leaf Development and Stress Responses Related to Latex Flow in Hevea brasiliensis |
title_sort | calcium sensor calcineurin b-like proteins -calcineurin b-like interacting protein kinases is involved in leaf development and stress responses related to latex flow in hevea brasiliensis |
topic | Plant Science |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8914471/ https://www.ncbi.nlm.nih.gov/pubmed/35283911 http://dx.doi.org/10.3389/fpls.2022.743506 |
work_keys_str_mv | AT xiaoxiaohu thecalciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT mochunyan thecalciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT suijinlei thecalciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT linxianzu thecalciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT longxiangyu thecalciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT qinyunxia thecalciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT fangyongjun thecalciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT tangchaorong thecalciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT xiaoxiaohu calciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT mochunyan calciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT suijinlei calciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT linxianzu calciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT longxiangyu calciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT qinyunxia calciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT fangyongjun calciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis AT tangchaorong calciumsensorcalcineurinblikeproteinscalcineurinblikeinteractingproteinkinasesisinvolvedinleafdevelopmentandstressresponsesrelatedtolatexflowinheveabrasiliensis |