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Evidence-Based Supplement Research
Evidence-Based Supplement Research

Recent Advances in Transcriptome Analysis Within the Realm of Low Arsenic Rice Breeding.

  • 2025-02-17
  • Plants (Basel, Switzerland) 14(4)
    • Guanrong Huang
    • Guoping Yu
    • Huijuan Li
    • Haipeng Yu
    • Zengying Huang
    • Lu Tang
    • Pengfei Yang
    • Zhengzheng Zhong
    • Guocheng Hu
    • Peng Zhang
    • Hanhua Tong

Study Design

Type
Review
Arsenic (As), a toxic element, is widely distributed in soil and irrigation water. Rice (Oryza sativa L.), the staple food in Southern China, exhibits a greater propensity for As uptake compared to other crops. Arsenic pollution in paddy fields not only impairs rice growth but also poses a serious threat to food security and human health. Nevertheless, the molecular mechanism underlying the response to As toxicity has not been completely revealed until now. Transcriptome analysis represents a powerful tool for revealing the mechanisms conferring phenotype formation and is widely employed in crop breeding. Consequently, this review focuses on the recent advances in transcriptome analysis within the realm of low As breeding in rice. It particularly highlights the applications of transcriptome analysis in identifying genes responsive to As toxicity, revealing gene interaction regulatory modules and analyzing secondary metabolite biosynthesis pathways. Furthermore, the molecular mechanisms underlying rice As tolerance are updated, and the recent outcomes in low As breeding are summarized. Finally, the challenges associated with applying transcriptome analysis to low-As breeding are deliberated upon, and future research directions are envisioned, with the aim of providing references to expedite high-yield and low-arsenic breeding in rice.

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