Literature DB >> 32964579

The genome of Cleistogenes songorica provides a blueprint for functional dissection of dimorphic flower differentiation and drought adaptability.

Jiyu Zhang1, Fan Wu1, Qi Yan1, Ulrik P John2, Mingshu Cao3, Pan Xu1, Zhengshe Zhang1, Tiantian Ma1, Xifang Zong1, Jie Li1, Ruijuan Liu4, Yufei Zhang1, Yufeng Zhao1, Gisele Kanzana1, Yanyan Lv1, Zhibiao Nan1, German Spangenberg2, Yanrong Wang1.   

Abstract

Cleistogenes songorica (2n = 4x = 40) is a desert grass with a unique dimorphic flowering mechanism and an ability to survive extreme drought. Little is known about the genetics underlying drought tolerance and its reproductive adaptability. Here, we sequenced and assembled a high-quality chromosome-level C. songorica genome (contig N50 = 21.28 Mb). Complete assemblies of all telomeres, and of ten chromosomes were derived. C. songorica underwent a recent tetraploidization (~19 million years ago) and four major chromosomal rearrangements. Expanded genes were significantly enriched in fatty acid elongation, phenylpropanoid biosynthesis, starch and sucrose metabolism, and circadian rhythm pathways. By comparative transcriptomic analysis we found that conserved drought tolerance related genes were expanded. Transcription of CsMYB genes was associated with differential development of chasmogamous and cleistogamous flowers, as well as drought tolerance. Furthermore, we found that regulation modules encompassing miRNA, transcription factors and target genes are involved in dimorphic flower development, validated by overexpression of CsAP2_9 and its targeted miR172 in rice. Our findings enable further understanding of the mechanisms of drought tolerance and flowering in C. songorica, and provide new insights into the adaptability of native grass species in evolution, along with potential resources for trait improvement in agronomically important species.
© 2020 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd.

Entities:  

Keywords:  zzm321990Cleistogenes songoricazzm321990; allotetraploid; cleistogamy; dimorphic flower; drought tolerance; genome assembly

Year:  2020        PMID: 32964579      PMCID: PMC7955882          DOI: 10.1111/pbi.13483

Source DB:  PubMed          Journal:  Plant Biotechnol J        ISSN: 1467-7644            Impact factor:   9.803


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8.  The genome of Cleistogenes songorica provides a blueprint for functional dissection of dimorphic flower differentiation and drought adaptability.

Authors:  Jiyu Zhang; Fan Wu; Qi Yan; Ulrik P John; Mingshu Cao; Pan Xu; Zhengshe Zhang; Tiantian Ma; Xifang Zong; Jie Li; Ruijuan Liu; Yufei Zhang; Yufeng Zhao; Gisele Kanzana; Yanyan Lv; Zhibiao Nan; German Spangenberg; Yanrong Wang
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