Phenotypic characteristics and transcriptome of wax gourd embryonic root development under high auxin stress

Wax gourd is an important horticultural crop, and auxin plays a crucial role in its growth and development. However, excessive concentrations of auxin can inhibit plant growth. In this study, we investigated the phenotypic characteristics and conducted a transcriptomic analysis of wax gourd embryoni...

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Published in:Vegetable Research
Main Authors: Xiaoxin Cheng, Jiesheng Hong, Xuling Zhai, Baochen Wang, Renlian Mo, Dian Li, Wenrui Liu, Jinqiang Yan, Biao Jiang
Format: Article
Language:English
Published: Maximum Academic Press 2025-01-01
Subjects:
Online Access:https://www.maxapress.com/article/doi/10.48130/vegres-0025-0011
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author Xiaoxin Cheng
Jiesheng Hong
Xuling Zhai
Baochen Wang
Renlian Mo
Dian Li
Wenrui Liu
Jinqiang Yan
Biao Jiang
author_facet Xiaoxin Cheng
Jiesheng Hong
Xuling Zhai
Baochen Wang
Renlian Mo
Dian Li
Wenrui Liu
Jinqiang Yan
Biao Jiang
author_sort Xiaoxin Cheng
collection DOAJ
container_title Vegetable Research
description Wax gourd is an important horticultural crop, and auxin plays a crucial role in its growth and development. However, excessive concentrations of auxin can inhibit plant growth. In this study, we investigated the phenotypic characteristics and conducted a transcriptomic analysis of wax gourd embryonic root development under high auxin concentration. Phenotypic observations revealed that as auxin concentration increased, the primary root of the wax gourd radicle became shorter, the number of lateral roots increased, and the length of lateral roots fluctuated. Transcriptomic analysis identified 1,305 differentially expressed genes (DEGs), including 43 genes associated with auxin, as determined by GO and KEGG annotations. We further focused on 10 key genes with significant differential expression and validated the results using qRT-PCR, which aligned with the transcriptomic date. Notably, the expression of ABCB increased with higher IAA concentrations, while PILS7, LAX3, IAA16, FRQ1, and MYBS3 showed significant downregulation at 600 μM IAA. Conversely, SAUR32 and SAUR71 were significantly upregulated under the same conditions, while the expression of PIN3 and KRP1 exhibited variable patterns. These findings suggest that these genes are key regulators of wax gourd embryonic root responses to high auxin concentration. This study provides valuable insights into the molecular mechanism underlying auxin-induced stress in wax gourd and lays a foundation for further research on its response mechanisms.
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spelling doaj-art-a3b2274b17bc4e1eaffd94cf56d0f4092025-08-20T01:20:10ZengMaximum Academic PressVegetable Research2769-05202025-01-01511710.48130/vegres-0025-0011vegres-0025-0011Phenotypic characteristics and transcriptome of wax gourd embryonic root development under high auxin stressXiaoxin Cheng0Jiesheng Hong1Xuling Zhai2Baochen Wang3Renlian Mo4Dian Li5Wenrui Liu6Jinqiang Yan7Biao Jiang8Vegetable Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, ChinaVegetable Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, ChinaVegetable Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, ChinaVegetable Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, ChinaVegetable Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, ChinaVegetable Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, ChinaVegetable Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, ChinaVegetable Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, ChinaVegetable Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, ChinaWax gourd is an important horticultural crop, and auxin plays a crucial role in its growth and development. However, excessive concentrations of auxin can inhibit plant growth. In this study, we investigated the phenotypic characteristics and conducted a transcriptomic analysis of wax gourd embryonic root development under high auxin concentration. Phenotypic observations revealed that as auxin concentration increased, the primary root of the wax gourd radicle became shorter, the number of lateral roots increased, and the length of lateral roots fluctuated. Transcriptomic analysis identified 1,305 differentially expressed genes (DEGs), including 43 genes associated with auxin, as determined by GO and KEGG annotations. We further focused on 10 key genes with significant differential expression and validated the results using qRT-PCR, which aligned with the transcriptomic date. Notably, the expression of ABCB increased with higher IAA concentrations, while PILS7, LAX3, IAA16, FRQ1, and MYBS3 showed significant downregulation at 600 μM IAA. Conversely, SAUR32 and SAUR71 were significantly upregulated under the same conditions, while the expression of PIN3 and KRP1 exhibited variable patterns. These findings suggest that these genes are key regulators of wax gourd embryonic root responses to high auxin concentration. This study provides valuable insights into the molecular mechanism underlying auxin-induced stress in wax gourd and lays a foundation for further research on its response mechanisms.https://www.maxapress.com/article/doi/10.48130/vegres-0025-0011wax gourdembryonic roothigh auxin stress
spellingShingle Xiaoxin Cheng
Jiesheng Hong
Xuling Zhai
Baochen Wang
Renlian Mo
Dian Li
Wenrui Liu
Jinqiang Yan
Biao Jiang
Phenotypic characteristics and transcriptome of wax gourd embryonic root development under high auxin stress
wax gourd
embryonic root
high auxin stress
title Phenotypic characteristics and transcriptome of wax gourd embryonic root development under high auxin stress
title_full Phenotypic characteristics and transcriptome of wax gourd embryonic root development under high auxin stress
title_fullStr Phenotypic characteristics and transcriptome of wax gourd embryonic root development under high auxin stress
title_full_unstemmed Phenotypic characteristics and transcriptome of wax gourd embryonic root development under high auxin stress
title_short Phenotypic characteristics and transcriptome of wax gourd embryonic root development under high auxin stress
title_sort phenotypic characteristics and transcriptome of wax gourd embryonic root development under high auxin stress
topic wax gourd
embryonic root
high auxin stress
url https://www.maxapress.com/article/doi/10.48130/vegres-0025-0011
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AT baochenwang phenotypiccharacteristicsandtranscriptomeofwaxgourdembryonicrootdevelopmentunderhighauxinstress
AT renlianmo phenotypiccharacteristicsandtranscriptomeofwaxgourdembryonicrootdevelopmentunderhighauxinstress
AT dianli phenotypiccharacteristicsandtranscriptomeofwaxgourdembryonicrootdevelopmentunderhighauxinstress
AT wenruiliu phenotypiccharacteristicsandtranscriptomeofwaxgourdembryonicrootdevelopmentunderhighauxinstress
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