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SRX3738329: RNA-seq of Anadenobolus_sp:Head
1 ILLUMINA (Illumina HiSeq 2500) run: 14.1M spots, 3.1G bases, 1.3Gb downloads

Design: Total RNA was extracted from flash frozen or RNAlater preserved specimens using the TRIzol total RNA extraction method, purified with the RNeasy mini kit (Qiagen) and sequenced in-house at the Auburn University Core Genetics and Sequencing Laboratory using an Illumina Hi-Seq 2500
Submitted by: Auburn University
Study: Step-wise evolution of complex chemical defenses in millipedes: a phylogenomic approach
show Abstracthide Abstract
With fossil representatives from the Silurian capable of respiring atmospheric oxygen, millipedes are among the oldest terrestrial animals, and likely the first to acquire diverse and complex chemical defenses against predators. Exploring the origin of complex adaptive traits is critical for understanding the evolution of earth's biological complexity, and chemical defense evolution serves as an ideal study system. The classic explanation for the evolution of complexity is by gradual increase from simple to complex, passing through intermediate “stepping stone” states. Here we present the first phylogenetic-based study of the evolution of complex chemical defenses in millipedes by generating the largest genomic-based phylogenetic dataset ever assembled for the group. Our phylogenomic results demonstrate that chemical complexity shows a clear pattern of escalation through time. New pathways are added in a stepwise pattern, leading to greater chemical complexity, independently in a number of derived lineages. This complexity gradually increased through time, leading to the advent of three distantly related chemically complex evolutionary lineages, each uniquely characteristic of each of the respective millipede groups.
Sample:
SAMN08554559 • SRS2995183 • All experiments • All runs
Library:
Name: ANTW
Instrument: Illumina HiSeq 2500
Strategy: RNA-Seq
Source: TRANSCRIPTOMIC
Selection: cDNA
Layout: PAIRED
Runs: 1 run, 14.1M spots, 3.1G bases, 1.3Gb
Run# of Spots# of BasesSizePublished
SRR676706614,108,0963.1G1.3Gb2018-02-23

ID:
5154951

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