Genome sequencing and transcriptome analyses provide insights into the origin and domestication of water caltrop (Trapa spp., Lythraceae).

Plant Biotechnol J

Systematic & Evolutionary Botany and Biodiversity Group, MOE Laboratory of Biosystem Homeostasis and Protection, College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, China.

Published: April 2022

AI Article Synopsis

  • Researchers investigated the domestication of water caltrop (Trapa spp.), an underused non-cereal crop, revealing its historical significance in early Chinese agriculture.
  • They generated a high-quality genome assembly and found that water caltrop was likely first domesticated around 6300 years ago in the Yangtze River Valley and improved roughly 800 years ago.
  • By analyzing genetic data, they identified key genes involved in traits like larger fruit size and stronger root systems, contributing to insights on plant domestication and potential breeding strategies for this aquatic species.

Article Abstract

Humans have domesticated diverse species from across the plant kingdom; however, our current understanding of plant domestication is largely founded on major cereal crops. Here, we examine the evolutionary processes and genetic basis underlying the domestication of water caltrop (Trapa spp., Lythraceae), a traditional, yet presently underutilized non-cereal crop that sustained early Chinese agriculturalists. We generated a chromosome-level genome assembly of tetraploid T. natans, and then divided the allotetraploid genome into two subgenomes. Based on resequencing data from 57 accessions, representing cultivated diploid T. natans, wild T. natans (2x and 4x) and diploid T. incisa, we showed that water caltrop was likely first domesticated in the Yangtze River Valley as early as 6300 yr BP, and experienced a second improvement c. 800 years ago. We also provided strong support for an allotetraploid origin of T. natans within the past 230 000-310 000 years. By integrating selective sweep and transcriptome profiling analyses, we identified a number of genes potentially selected and/or differentially expressed during domestication, some of which likely contributed not only to larger fruit sizes but also to a more vigorous root system, facilitating nutrient uptake, environmental stress response and underwater photosynthesis. Our results shed light on the evolutionary and domestication history of water caltrop, one of the earliest domesticated crops in China. This study has implications for genomic-assisted breeding of this presently underutilized aquatic plant, and improves our general understanding of plant domestication.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8989495PMC
http://dx.doi.org/10.1111/pbi.13758DOI Listing

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