Cargando…
A high-throughput phenotyping assay for precisely determining stalk crushing strength in large-scale sugarcane germplasm
Sugarcane is a major industrial crop around the world. Lodging due to weak mechanical strength is one of the main problems leading to huge yield losses in sugarcane. However, due to the lack of high efficiency phenotyping methods for stalk mechanical strength characterization, genetic approaches for...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10399216/ https://www.ncbi.nlm.nih.gov/pubmed/37546250 http://dx.doi.org/10.3389/fpls.2023.1224268 |
_version_ | 1785084223094259712 |
---|---|
author | Ma, Fumin Shen, Yinjuan Su, De Adnan, Muhammad Wang, Maoyao Jiang, Fuhong Hu, Qian Chen, Xiaoru He, Guanyong Yao, Wei Zhang, Muqing Huang, Jiangfeng |
author_facet | Ma, Fumin Shen, Yinjuan Su, De Adnan, Muhammad Wang, Maoyao Jiang, Fuhong Hu, Qian Chen, Xiaoru He, Guanyong Yao, Wei Zhang, Muqing Huang, Jiangfeng |
author_sort | Ma, Fumin |
collection | PubMed |
description | Sugarcane is a major industrial crop around the world. Lodging due to weak mechanical strength is one of the main problems leading to huge yield losses in sugarcane. However, due to the lack of high efficiency phenotyping methods for stalk mechanical strength characterization, genetic approaches for lodging-resistant improvement are severely restricted. This study attempted to apply near-infrared spectroscopy high-throughput assays for the first time to estimate the crushing strength of sugarcane stalks. A total of 335 sugarcane samples with huge variation in stalk crushing strength were collected for online NIRS modeling. A comprehensive analysis demonstrated that the calibration and validation sets were comparable. By applying a modified partial least squares method, we obtained high-performance equations that had large coefficients of determination (R(2) > 0.80) and high ratio performance deviations (RPD > 2.4). Particularly, when the calibration and external validation sets combined for an integrative modeling, we obtained the final equation with a coefficient of determination (R(2) ) and ratio performance deviation (RPD) above 0.9 and 3.0, respectively, demonstrating excellent prediction capacity. Additionally, the obtained model was applied for characterization of stalk crushing strength in large-scale sugarcane germplasm. In a three-year study, the genetic characteristics of stalk crushing strength were found to remain stable, and the optimal sugarcane genotypes were screened out consistently. In conclusion, this study offers a feasible option for a high-throughput analysis of sugarcane mechanical strength, which can be used for the breeding of lodging resistant sugarcane and beyond. |
format | Online Article Text |
id | pubmed-10399216 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-103992162023-08-04 A high-throughput phenotyping assay for precisely determining stalk crushing strength in large-scale sugarcane germplasm Ma, Fumin Shen, Yinjuan Su, De Adnan, Muhammad Wang, Maoyao Jiang, Fuhong Hu, Qian Chen, Xiaoru He, Guanyong Yao, Wei Zhang, Muqing Huang, Jiangfeng Front Plant Sci Plant Science Sugarcane is a major industrial crop around the world. Lodging due to weak mechanical strength is one of the main problems leading to huge yield losses in sugarcane. However, due to the lack of high efficiency phenotyping methods for stalk mechanical strength characterization, genetic approaches for lodging-resistant improvement are severely restricted. This study attempted to apply near-infrared spectroscopy high-throughput assays for the first time to estimate the crushing strength of sugarcane stalks. A total of 335 sugarcane samples with huge variation in stalk crushing strength were collected for online NIRS modeling. A comprehensive analysis demonstrated that the calibration and validation sets were comparable. By applying a modified partial least squares method, we obtained high-performance equations that had large coefficients of determination (R(2) > 0.80) and high ratio performance deviations (RPD > 2.4). Particularly, when the calibration and external validation sets combined for an integrative modeling, we obtained the final equation with a coefficient of determination (R(2) ) and ratio performance deviation (RPD) above 0.9 and 3.0, respectively, demonstrating excellent prediction capacity. Additionally, the obtained model was applied for characterization of stalk crushing strength in large-scale sugarcane germplasm. In a three-year study, the genetic characteristics of stalk crushing strength were found to remain stable, and the optimal sugarcane genotypes were screened out consistently. In conclusion, this study offers a feasible option for a high-throughput analysis of sugarcane mechanical strength, which can be used for the breeding of lodging resistant sugarcane and beyond. Frontiers Media S.A. 2023-07-20 /pmc/articles/PMC10399216/ /pubmed/37546250 http://dx.doi.org/10.3389/fpls.2023.1224268 Text en Copyright © 2023 Ma, Shen, Su, Adnan, Wang, Jiang, Hu, Chen, He, Yao, Zhang and Huang 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 Ma, Fumin Shen, Yinjuan Su, De Adnan, Muhammad Wang, Maoyao Jiang, Fuhong Hu, Qian Chen, Xiaoru He, Guanyong Yao, Wei Zhang, Muqing Huang, Jiangfeng A high-throughput phenotyping assay for precisely determining stalk crushing strength in large-scale sugarcane germplasm |
title | A high-throughput phenotyping assay for precisely determining stalk crushing strength in large-scale sugarcane germplasm |
title_full | A high-throughput phenotyping assay for precisely determining stalk crushing strength in large-scale sugarcane germplasm |
title_fullStr | A high-throughput phenotyping assay for precisely determining stalk crushing strength in large-scale sugarcane germplasm |
title_full_unstemmed | A high-throughput phenotyping assay for precisely determining stalk crushing strength in large-scale sugarcane germplasm |
title_short | A high-throughput phenotyping assay for precisely determining stalk crushing strength in large-scale sugarcane germplasm |
title_sort | high-throughput phenotyping assay for precisely determining stalk crushing strength in large-scale sugarcane germplasm |
topic | Plant Science |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10399216/ https://www.ncbi.nlm.nih.gov/pubmed/37546250 http://dx.doi.org/10.3389/fpls.2023.1224268 |
work_keys_str_mv | AT mafumin ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT shenyinjuan ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT sude ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT adnanmuhammad ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT wangmaoyao ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT jiangfuhong ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT huqian ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT chenxiaoru ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT heguanyong ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT yaowei ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT zhangmuqing ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT huangjiangfeng ahighthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT mafumin highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT shenyinjuan highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT sude highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT adnanmuhammad highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT wangmaoyao highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT jiangfuhong highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT huqian highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT chenxiaoru highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT heguanyong highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT yaowei highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT zhangmuqing highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm AT huangjiangfeng highthroughputphenotypingassayforpreciselydeterminingstalkcrushingstrengthinlargescalesugarcanegermplasm |