Subcellular Proteomics to Elucidate Soybean Response to Abiotic Stress

Climate change jeopardizes soybean production by declining seed yield and quality. In this review, the morphophysiological alterations of soybean in response to abiotic stress are summarized, followed by illustrations of cellular metabolisms and regulatory mechanisms to organellar stress based on su...

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Main Authors: Xin Wang, Setsuko Komatsu
Format: Article
Language:English
Published: MDPI AG 2023-08-01
Series:Plants
Subjects:
Online Access:https://www.mdpi.com/2223-7747/12/15/2865
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author Xin Wang
Setsuko Komatsu
author_facet Xin Wang
Setsuko Komatsu
author_sort Xin Wang
collection DOAJ
description Climate change jeopardizes soybean production by declining seed yield and quality. In this review, the morphophysiological alterations of soybean in response to abiotic stress are summarized, followed by illustrations of cellular metabolisms and regulatory mechanisms to organellar stress based on subcellular proteomics. This highlights the communications associated with reactive oxygen species scavenging, molecular chaperones, and phytohormone signals among subcellular compartments. Given the complexity of climate change and the limitations of plants in coping with multiple abiotic stresses, a generic response to environmental constraints is proposed between calcium and abscisic acid signals in subcellular organelles. This review summarizes the findings of subcellular proteomics in stressed soybean and discusses the future prospects of subcellular proteomics for promoting the improvement of climate-tolerant crops.
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spelling doaj.art-760783bf85ef4843844c9fc0ae7845c32023-11-18T23:26:56ZengMDPI AGPlants2223-77472023-08-011215286510.3390/plants12152865Subcellular Proteomics to Elucidate Soybean Response to Abiotic StressXin Wang0Setsuko Komatsu1College of Agronomy and Biotechnology, China Agricultural University, Beijing 100193, ChinaFaculty of Environmental and Information Sciences, Fukui University of Technology, Fukui 910-8505, JapanClimate change jeopardizes soybean production by declining seed yield and quality. In this review, the morphophysiological alterations of soybean in response to abiotic stress are summarized, followed by illustrations of cellular metabolisms and regulatory mechanisms to organellar stress based on subcellular proteomics. This highlights the communications associated with reactive oxygen species scavenging, molecular chaperones, and phytohormone signals among subcellular compartments. Given the complexity of climate change and the limitations of plants in coping with multiple abiotic stresses, a generic response to environmental constraints is proposed between calcium and abscisic acid signals in subcellular organelles. This review summarizes the findings of subcellular proteomics in stressed soybean and discusses the future prospects of subcellular proteomics for promoting the improvement of climate-tolerant crops.https://www.mdpi.com/2223-7747/12/15/2865soybeanabiotic stressproteomicssubcellular
spellingShingle Xin Wang
Setsuko Komatsu
Subcellular Proteomics to Elucidate Soybean Response to Abiotic Stress
Plants
soybean
abiotic stress
proteomics
subcellular
title Subcellular Proteomics to Elucidate Soybean Response to Abiotic Stress
title_full Subcellular Proteomics to Elucidate Soybean Response to Abiotic Stress
title_fullStr Subcellular Proteomics to Elucidate Soybean Response to Abiotic Stress
title_full_unstemmed Subcellular Proteomics to Elucidate Soybean Response to Abiotic Stress
title_short Subcellular Proteomics to Elucidate Soybean Response to Abiotic Stress
title_sort subcellular proteomics to elucidate soybean response to abiotic stress
topic soybean
abiotic stress
proteomics
subcellular
url https://www.mdpi.com/2223-7747/12/15/2865
work_keys_str_mv AT xinwang subcellularproteomicstoelucidatesoybeanresponsetoabioticstress
AT setsukokomatsu subcellularproteomicstoelucidatesoybeanresponsetoabioticstress