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白 Lupinus 基因组进化和耐低磷研究。

The genome evolution and low-phosphorus adaptation in white lupin.

机构信息

Center for Plant Water-use and Nutrition Regulation and College of Life Sciences, Joint International Research Laboratory of Water and Nutrient in Crop, Fujian Agriculture and Forestry University, Jinshan, Fuzhou, 350002, China.

Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Key Laboratory of Biology and Genetic Improvement of Horticultural Crops of the Ministry of Agriculture, Sino-Dutch Joint Laboratory of Horticultural Genomics, Beijing, China.

出版信息

Nat Commun. 2020 Feb 26;11(1):1069. doi: 10.1038/s41467-020-14891-z.

Abstract

White lupin (Lupinus albus) is a legume crop that develops cluster roots and has high phosphorus (P)-use efficiency (PUE) in low-P soils. Here, we assemble the genome of white lupin and find that it has evolved from a whole-genome triplication (WGT) event. We then decipher its diploid ancestral genome and reconstruct the three sub-genomes. Based on the results, we further reveal the sub-genome dominance and the genic expression of the different sub-genomes varying in relation to their transposable element (TE) density. The PUE genes in white lupin have been expanded through WGT as well as tandem and dispersed duplications. Furthermore, we characterize four main pathways for high PUE, which include carbon fixation, cluster root formation, soil-P remobilization, and cellular-P reuse. Among these, auxin modulation may be important for cluster root formation through involvement of potential genes LaABCG36s and LaABCG37s. These findings provide insights into the genome evolution and low-P adaptation of white lupin.

摘要

白 Lupinus albus 是一种豆科作物,在低磷土壤中会形成簇状根,且具有较高的磷利用效率(PUE)。在此,我们对白 Lupinus albus 的基因组进行了组装,发现它是由全基因组三倍体化(WGT)事件进化而来的。然后,我们破译了其二倍体祖先基因组并重建了三个亚基因组。在此基础上,我们进一步揭示了不同亚基因组的亚基因组优势和基因表达与转座元件(TE)密度有关。白 Lupinus albus 的 PUE 基因通过 WGT 以及串联和分散的重复扩增而扩展。此外,我们还对高 PUE 的四个主要途径进行了表征,其中包括碳固定、簇状根形成、土壤-P 再动员和细胞-P 再利用。其中,生长素调节可能通过涉及潜在基因 LaABCG36s 和 LaABCG37s 对簇状根形成很重要。这些发现为白 Lupinus albus 的基因组进化和低磷适应提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d29e/7044338/581fab248f20/41467_2020_14891_Fig1_HTML.jpg

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