Heat stress affects tassel development and reduces the kernel number of summer maize

Maize grain yield is drastically reduced by heat stress (HTS) during anthesis and early grain filling. However, the mechanism of HTS in reproductive organs and kernel numbers remains poorly understood. From 2018 to 2020, two maize varieties (ND372, heat tolerant; and XY335, heat sensitive) and two t...

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Published in:Frontiers in Plant Science
Main Authors: Pan Liu, Baozhong Yin, Limin Gu, Shaoyun Zhang, Jianhong Ren, Yandong Wang, Weiwei Duan, Wenchao Zhen
Format: Article
Language:English
Published: Frontiers Media S.A. 2023-06-01
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fpls.2023.1186921/full
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author Pan Liu
Pan Liu
Baozhong Yin
Limin Gu
Limin Gu
Shaoyun Zhang
Shaoyun Zhang
Jianhong Ren
Jianhong Ren
Yandong Wang
Yandong Wang
Yandong Wang
Weiwei Duan
Weiwei Duan
Weiwei Duan
Wenchao Zhen
Wenchao Zhen
Wenchao Zhen
author_facet Pan Liu
Pan Liu
Baozhong Yin
Limin Gu
Limin Gu
Shaoyun Zhang
Shaoyun Zhang
Jianhong Ren
Jianhong Ren
Yandong Wang
Yandong Wang
Yandong Wang
Weiwei Duan
Weiwei Duan
Weiwei Duan
Wenchao Zhen
Wenchao Zhen
Wenchao Zhen
author_sort Pan Liu
collection DOAJ
container_title Frontiers in Plant Science
description Maize grain yield is drastically reduced by heat stress (HTS) during anthesis and early grain filling. However, the mechanism of HTS in reproductive organs and kernel numbers remains poorly understood. From 2018 to 2020, two maize varieties (ND372, heat tolerant; and XY335, heat sensitive) and two temperature regimens (HTS, heat stress; and CK, natural control) were evaluated, resulting in four treatments (372CK, 372HTS, 335CK, and 335HTS). HTS was applied from the nine-leaf stage (V9) to the anthesis stage. Various morphological traits and physiological activities of the tassels, anthers, and pollen from the two varieties were evaluated to determine their correlation with kernel count. The results showed that HTS reduced the number of florets, tassel volume, and tassel length, but increased the number of tassel branches. HTS accelerates tassel degradation and reduces pollen weight, quantity, and viability. Deformation and reduction in length and volume due to HTS were observed in both the Nongda 372 (ND372) and Xianyu 335 (XY335) varieties, with the average reductions being 22.9% and 35.2%, respectively. The morphology of the anthers changed more conspicuously in XY335 maize. The number of kernels per spike was reduced in the HTS group compared with the CK group, with the ND372 and XY335 varieties showing reductions of 47.3% and 59.3%, respectively. The main factors underlying the decrease in yield caused by HTS were reductions in pollen quantity and weight, tassel rachis, and branch length. HTS had a greater effect on the anther shape, pollen viability, and phenotype of XY335 than on those of ND372. HTS had a greater impact on anther morphology, pollen viability, and the phenotype of XY335 but had no influence on the appearance or dissemination of pollen from tassel.
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spelling doaj-art-8d4758e5986c4e5bb2001beaf95bd9c82025-08-19T22:04:05ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2023-06-011410.3389/fpls.2023.11869211186921Heat stress affects tassel development and reduces the kernel number of summer maizePan Liu0Pan Liu1Baozhong Yin2Limin Gu3Limin Gu4Shaoyun Zhang5Shaoyun Zhang6Jianhong Ren7Jianhong Ren8Yandong Wang9Yandong Wang10Yandong Wang11Weiwei Duan12Weiwei Duan13Weiwei Duan14Wenchao Zhen15Wenchao Zhen16Wenchao Zhen17College of Agronomy, Hebei Agricultural University, Baoding, ChinaKey Laboratory of North China Water saving Agriculture, Ministry of Agriculture and Rural Affairs, Baoding, ChinaCollege of Plant Protection, Hebei Agricultural University, Baoding, ChinaCollege of Agronomy, Hebei Agricultural University, Baoding, ChinaKey Laboratory of North China Water saving Agriculture, Ministry of Agriculture and Rural Affairs, Baoding, ChinaCollege of Agronomy, Hebei Agricultural University, Baoding, ChinaKey Laboratory of North China Water saving Agriculture, Ministry of Agriculture and Rural Affairs, Baoding, ChinaCollege of Agronomy, Hebei Agricultural University, Baoding, ChinaKey Laboratory of North China Water saving Agriculture, Ministry of Agriculture and Rural Affairs, Baoding, ChinaCollege of Agronomy, Hebei Agricultural University, Baoding, ChinaKey Laboratory of North China Water saving Agriculture, Ministry of Agriculture and Rural Affairs, Baoding, ChinaState Key Laboratory of North China Crop Improvement and Regulation, Baoding, ChinaCollege of Agronomy, Hebei Agricultural University, Baoding, ChinaKey Laboratory of North China Water saving Agriculture, Ministry of Agriculture and Rural Affairs, Baoding, ChinaState Key Laboratory of North China Crop Improvement and Regulation, Baoding, ChinaCollege of Agronomy, Hebei Agricultural University, Baoding, ChinaKey Laboratory of North China Water saving Agriculture, Ministry of Agriculture and Rural Affairs, Baoding, ChinaState Key Laboratory of North China Crop Improvement and Regulation, Baoding, ChinaMaize grain yield is drastically reduced by heat stress (HTS) during anthesis and early grain filling. However, the mechanism of HTS in reproductive organs and kernel numbers remains poorly understood. From 2018 to 2020, two maize varieties (ND372, heat tolerant; and XY335, heat sensitive) and two temperature regimens (HTS, heat stress; and CK, natural control) were evaluated, resulting in four treatments (372CK, 372HTS, 335CK, and 335HTS). HTS was applied from the nine-leaf stage (V9) to the anthesis stage. Various morphological traits and physiological activities of the tassels, anthers, and pollen from the two varieties were evaluated to determine their correlation with kernel count. The results showed that HTS reduced the number of florets, tassel volume, and tassel length, but increased the number of tassel branches. HTS accelerates tassel degradation and reduces pollen weight, quantity, and viability. Deformation and reduction in length and volume due to HTS were observed in both the Nongda 372 (ND372) and Xianyu 335 (XY335) varieties, with the average reductions being 22.9% and 35.2%, respectively. The morphology of the anthers changed more conspicuously in XY335 maize. The number of kernels per spike was reduced in the HTS group compared with the CK group, with the ND372 and XY335 varieties showing reductions of 47.3% and 59.3%, respectively. The main factors underlying the decrease in yield caused by HTS were reductions in pollen quantity and weight, tassel rachis, and branch length. HTS had a greater effect on the anther shape, pollen viability, and phenotype of XY335 than on those of ND372. HTS had a greater impact on anther morphology, pollen viability, and the phenotype of XY335 but had no influence on the appearance or dissemination of pollen from tassel.https://www.frontiersin.org/articles/10.3389/fpls.2023.1186921/fullheat stressmaizetasselkernel number per earanther
spellingShingle Pan Liu
Pan Liu
Baozhong Yin
Limin Gu
Limin Gu
Shaoyun Zhang
Shaoyun Zhang
Jianhong Ren
Jianhong Ren
Yandong Wang
Yandong Wang
Yandong Wang
Weiwei Duan
Weiwei Duan
Weiwei Duan
Wenchao Zhen
Wenchao Zhen
Wenchao Zhen
Heat stress affects tassel development and reduces the kernel number of summer maize
heat stress
maize
tassel
kernel number per ear
anther
title Heat stress affects tassel development and reduces the kernel number of summer maize
title_full Heat stress affects tassel development and reduces the kernel number of summer maize
title_fullStr Heat stress affects tassel development and reduces the kernel number of summer maize
title_full_unstemmed Heat stress affects tassel development and reduces the kernel number of summer maize
title_short Heat stress affects tassel development and reduces the kernel number of summer maize
title_sort heat stress affects tassel development and reduces the kernel number of summer maize
topic heat stress
maize
tassel
kernel number per ear
anther
url https://www.frontiersin.org/articles/10.3389/fpls.2023.1186921/full
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