4.7 Article

Electrophysiological, Morphologic, and Transcriptomic Profiling of the Ogura-CMS, DGMS and Maintainer Broccoli Lines

期刊

PLANTS-BASEL
卷 11, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/plants11040561

关键词

broccoli; cytoplasmic male sterility; dominant genic male sterility; agronomy; RNA-sequencing

资金

  1. National Natural Science Foundation of China [32172580]
  2. Central Public-interest Scientific Institution Basal Research Fund [IVF-BRF2021003]
  3. China Agriculture Research System [CARS-23-05A]
  4. Agricultural Science and Technology Innovation Program
  5. State Key Laboratory of Vegetable Germplasm Innovation

向作者/读者索取更多资源

In this study, comparisons of morphological, electrophysiological and transcriptomic profiles in isogenic Ogura-CMS, DGMS and maintainer broccoli lines revealed differences in agronomic traits, growth periods and gene expression patterns, providing insights into the mechanism of male sterility in Brassica crops.
To better serve breeding of broccoli, the electrophysiological, morphological and transcriptomic profiling of the isogenic Ogura-CMS, DGMS and their maintainer fertile lines, were carried out by scanning electron microscopy, investigation of agronomic traits and RNA-sequencing analysis. The agronomic traits of plant height, length of the largest leaf, plant spread angle, single head weight, head width and stem diameter showed stronger performance in Ogura-CMS broccoli than in DGMS line or maintainer fertile line. However, the Ogura-CMS broccoli was poorer in the seed yield and seed germination than in the DGMS line and maintainer fertile line. Additionally, the DGMS broccoli had longer maturation and flowering periods than the Ogura-CMS and maintainer fertile lines. There were obvious differences in the honey gland, happening in the male sterility and fertile lines of broccoli. Additionally, the mechanism regulating Ogura-CMS and DGMS in broccoli was investigated using florets transcriptome analyses of the Ogura-CMS, DGMS and maintainer fertile lines. As a result, a total of 2670 differentially expressed genes (DEGs) were detected, including 1054 up- and 1616 downregulated genes in the Ogura-CMS and DGMS lines compared to the maintainer fertile line. A number of functionally known genes involved in plant hormones (auxin, salicylic acid and brassinosteroid), five Mitochondrial Oxidative Phosphorylation (OXPHOS) genes of atp8, LOC106319879, LOC106324734, LOC106314622 and LOC106298585, and three upregulated genes (Lhcb1, Lhcb3 and Lhcb5) associated with the photosynthesis-antenna protein pathway, were obviously detected to be highly associated with reproductive development including flowering time, maturity and reproductive period in the Ogura-CMS and DGMS broccoli comparing to their maintainer fertile line. Our research would provide a comprehensive foundation for understanding the differences of electrophysiological, morphological and transcriptomic profiles in the Ogura-CMS, DGMS and maintainer broccoli, and as well as being beneficial to exploring the mechanism of male sterility in Brassica crops.

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