4.7 Article

Systematic Analysis of BELL Family Genes in Zizania latifolia and Functional Identification of ZlqSH1a/b in Rice Seed Shattering

期刊

出版社

MDPI
DOI: 10.3390/ijms232415939

关键词

Chinese wild rice (Zizania latifolia); rice (Oryza sativa); seed shattering; ZlBELL transcription factor; abscission layer

资金

  1. Youth Innovation Program of the Chinese Academy of Agricultural Sciences
  2. Central Public-interest Scientific Institution Basal Research Fund
  3. Postdoctoral Applied Research Project Fund of Qingdao
  4. Agricultural Science and Technology Innovation Program
  5. [Y2023QC]
  6. [1610232020008]
  7. [1610232021006]
  8. [1610232022004]
  9. [ASTIP-TRIC05]

向作者/读者索取更多资源

The loss of seed shattering is a crucial event in crop domestication, and understanding the genetic mechanisms behind it can help reduce yield loss in crop production. This study identified and analyzed the BELL family of transcription factor-encoding genes in Chinese wild rice for the first time. Two genes, ZlqSH1a and ZlqSH1b, were identified as key candidates involved in seed shattering in Z. latifolia. These genes regulate the development of the abscission layer and enhance seed shattering in rice. Transcriptome sequencing revealed differentially expressed genes related to seed shattering between the wild type and transgenic plants.
The loss of seed shattering is an important event in crop domestication, and elucidating the genetic mechanisms underlying seed shattering can help reduce yield loss during crop production. This study is the first to systematically identify and analyse the BELL family of transcription factor-encoding genes in Chinese wild rice (Zizania latifolia). ZlqSH1a (Zla04G033720) and ZlqSH1b (Zla02G027130) were identified as key candidate genes involved in seed shattering in Z. latifolia. These genes were involved in regulating the development of the abscission layer (AL) and were located in the nucleus of the cell. Over-expression of ZlqSH1a and ZlqSH1b resulted in a complete AL between the grain and pedicel and significantly enhanced seed shattering after grain maturation in rice. Transcriptome sequencing revealed that 172 genes were differentially expressed between the wild type (WT) and the two transgenic (ZlqSH1a and ZlqSH1b over-expressing) plants. Three of the differentially expressed genes related to seed shattering were validated using qRT-PCR analysis. These results indicate that ZlqSH1a and ZlqSH1b are involved in AL development in rice grains, thereby regulating seed shattering. Our results could facilitate the genetic improvement of seed-shattering behaviour in Z. latifolia and other cereal crops.

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