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染色体水平的组装揭示了坚果树种美洲山核桃不对称的古亚基因组进化和真菌抗性育种的目标。

Chromosome-scale assembly reveals asymmetric paleo-subgenome evolution and targets for the acceleration of fungal resistance breeding in the nut crop, pecan.

机构信息

State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, No. 666 Wusu St. Lin'an District, Hangzhou 311300, China.

BGI-Qingdao, BGI-Shenzhen, No. 2 Hengyunshan Rd. Huangdao District, Qingdao 266555, China.

出版信息

Plant Commun. 2021 Sep 24;2(6):100247. doi: 10.1016/j.xplc.2021.100247. eCollection 2021 Nov 8.

Abstract

Pecan () is a tree nut crop of worldwide economic importance that is rich in health-promoting factors. However, pecan production and nut quality are greatly challenged by environmental stresses such as the outbreak of severe fungal diseases. Here, we report a high-quality, chromosome-scale genome assembly of the controlled-cross pecan cultivar 'Pawnee' constructed by integrating Nanopore sequencing and Hi-C technologies. Phylogenetic and evolutionary analyses reveal two whole-genome duplication (WGD) events and two paleo-subgenomes in pecan and walnut. Time estimates suggest that the recent WGD event and considerable genome rearrangements in pecan and walnut account for expansions in genome size and chromosome number after the divergence from bayberry. The two paleo-subgenomes differ in size and protein-coding gene sets. They exhibit uneven ancient gene loss, asymmetrical distribution of transposable elements (especially LTR/ and LTR/), and expansions in transcription factor families (such as the extreme pecan-specific expansion in the far-red impaired response 1 family), which are likely to reflect the long evolutionary history of species in the Juglandaceae. A whole-genome scan of resequencing data from 86 pecan scab-associated core accessions identified 47 chromosome regions containing 185 putative candidate genes. Significant changes were detected in the expression of candidate genes associated with the chitin response pathway under chitin treatment in the scab-resistant and scab-susceptible cultivars 'Excell' and 'Pawnee'. These findings enable us to identify key genes that may be important susceptibility factors for fungal diseases in pecan. The high-quality sequences are valuable resources for pecan breeders and will provide a foundation for the production and quality improvement of tree nut crops.

摘要

美洲山核桃( Pecan )是一种具有全球经济重要性的树坚果作物,富含促进健康的因素。然而,环境压力如严重真菌病害的爆发极大地影响了美洲山核桃的生产和坚果品质。在这里,我们报告了一种经过改良的美洲山核桃品种‘ Pawnee ’的高质量染色体规模基因组组装,该组装是通过整合纳米孔测序和 Hi-C 技术构建的。系统发育和进化分析表明,美洲山核桃和胡桃属中发生了两次全基因组加倍(Whole-genome duplication, WGD )事件和两个古亚基因组。时间估计表明,美洲山核桃和胡桃属中的最近一次 WGD 事件和大量的基因组重排导致了在与杨梅属分化后基因组大小和染色体数目的扩张。两个古亚基因组在大小和蛋白质编码基因集上存在差异。它们表现出不均匀的古老基因丢失、转座元件(特别是 LTR/和 LTR/)的不对称分布以及转录因子家族的扩张(例如,远红受损反应 1 家族在美洲山核桃中极度扩张),这可能反映了 Juglandaceae 物种的漫长进化历史。对来自 86 个美洲山核桃炭疽病相关核心品系的重测序数据进行全基因组扫描,鉴定出 47 个包含 185 个假定候选基因的染色体区域。在抗炭疽病和感炭疽病品种‘ Excell ’和‘ Pawnee ’中,在几丁质处理下,与几丁质反应途径相关的候选基因的表达发生了显著变化。这些发现使我们能够鉴定出可能对美洲山核桃真菌病具有重要易感性的关键基因。高质量的序列是美洲山核桃育种者的宝贵资源,将为坚果作物的生产和质量提高提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4864/8577110/7e3b07a59ea9/gr1.jpg

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