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Biology subjects

Iampetro, C.

Publications and source records attributed to Iampetro, C..

3 recordsLinked to original sources

An annotated chromosome-level genome assembly ofthe Adzuki bean borer Ostrinia scapulalis (Lepidoptera: Crambidae)

The genus Ostrinia (Lepidoptera: Crambidae) comprises two of the most important maize pests worldwide, the Asian and the European corn borers. Here, we present an annotated, chromosome-level genome assembly for the most closely related species, the Adzuki bean borer Ostrinia scapulalis, which feeds on various dicotyledon plants. The previous reference genome assembly for this species was generated from short-read sequencing data, resulting in high fragmentation and low completeness. Combining PacBio long read and Hi-C sequencing, we generated a 476 Mb genome with 48 contigs organised into 31 chromosomes (30 autosomes and one Z sex chromosome), with a contig N50 of 16.1 Mbp and BUSCO completeness exceeding 98%. We further combined published and novel RNA-seq data encompassing multiple life stages, tissues, and sexes to annotate 14,261 gene models, reaching a proteome BUSCO completeness of 95%. This highly contiguous reference genome assembly provides a much-improved resource for carrying comparative genomic approaches and better understanding speciation and host plant adaptation in the Ostrinia genus.

evolutionary biology↗

Gain and loss of gene function shaped the nickel hyperaccumulation trait in Noccaea caerulescens

Nickel hyperaccumulation is an extreme adaptation to ultramafic soils observed in more than 500 plant species. However, our understanding of the molecular mechanisms underlying the evolution of this trait remains limited. To shed light on these mechanisms, we have generated a high-quality genome assembly of the metal hyperaccumulator Noccaea caerulescens. We then used this genome as reference to conduct comparative intraspecific and interspecific transcriptomic analyses using various accessions of N. caerulescens and the non-accumulating relative Microthlaspi perfoliatum, to identify genes associated with nickel hyperaccumulation. Our results suggest a correlation between nickel hyperaccumulation and a decrease in the expression of genes involved in defense responses and the regulation of membrane trafficking. Surprisingly, these analyses did not reveal a significant enrichment of genes involved in the regulation of metal homeostasis. However, we found that the expression levels of selected metal transporters, namely NcHMA3, NcHMA4 and NcIREG2, is consistently elevated in N. caerulescens accessions hyperaccumulating nickel. Furthermore, our analyses identified frameshift mutations in NcIRT1 associated with the loss of nickel hyperaccumulation in a few accessions. We further showed that the expression of a functional NcIRT1 in roots of the La Calamine accession increases nickel accumulation in shoots. Our results demonstrate that NcIRT1 participate in nickel hyperaccumulation in N. caerulescens. They also suggest that nickel hyperaccumulation is an ancient trait in N. caerulescens that has evolved from the high and constitutive expression of few metal transporters including NcIREG2 and that the trait was subsequently lost in a few accessions due to mutations in NcIRT1.

plant biology↗

An extensive and unbiased genome-wide scan for parent-of-origin expressed genes in the pig clarifies the conservation landscape of genomic imprinting

Genomic imprinting, a mechanism resulting in parent-of-origin expression of genes through epigenetic regulation, intersects with a broad range of biological fields including evolution, molecular genetics and epigenetics and determinism of complex traits. Although next generation sequencing technologies enable nowadays to detect imprinted genes in a genome-wide manner, a wide spectrum of this phenomena is evaluated only in humans and mice. Here, we propose to map genes showing a parental expression bias in hypothalamus, muscle and placenta in piglets around birth using an extensive and unbiased strategy that relied on reciprocal crosses, genetics reconstruction of parental phases after imputation and statistical analyses discriminating parent-of-origin from allele-specific expression. We detected 440 unique genes with a weak to exclusive parental expression bias including 114 unique genes with an imbalance ratio above 25:75. About thirty imprinted genes are common to human and/or mice and an equivalent number is shared between tissues, suggesting an overall weak conservation landscape of genomic imprinting. Interestingly, we identified novel parent-of-origin expressed genes involved in neurodevelopmental (PITRM1, Pitrilysin Metallopeptidase 1) and fetal growth (FAM20B, Glycosaminoglycan Xylosylkinase and POU6F2, POU Class 6 Homeobox 2) functions. In addition, deeper analyses of specific loci likely highlighted lineage-specific imprinted genes such as a Zinc Finger Protein 300-like gene as well as specific imprinted isoforms of COPG2 (COPI Coat Complex Subunit Gamma 2), a gene showing conflicting data in the literature. Altogether, our results bring pig as the most comprehensively and exhaustively documented species for genomic imprinting after human and mice organisms. A weak conservation of this mechanism across species and tissues suggested a distinction between a small number of core imprinted genes and others parent-of-origin expressed genes that seemed subjected to evolutionary forces for acquiring their imprinting status either in a lineage-specific or tissue-specific manner.

genomics↗