Hunts for DNS-based persistence mechanisms such as DNS hijacking, dangling
Scanned 9/2/2026
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---
name: hunting-for-dns-based-persistence
description: Hunts for DNS-based persistence mechanisms such as DNS hijacking, dangling
CNAME records enabling subdomain takeover, wildcard DNS abuse, and unauthorized zone
or NS delegation changes, using passive DNS history (SecurityTrails API), Route53/Azure
DNS/Cloudflare audit logs, and zone transfer analysis. Use when investigating suspected
DNS hijacking or subdomain takeover, or when threat hunting for DNS record tampering
that persists across credential rotations and endpoint reimaging.
domain: cybersecurity
subdomain: threat-hunting
tags:
- dns
- persistence
- threat-hunting
- passive-dns
- dns-hijacking
- subdomain-takeover
- securitytrails
version: '1.0'
author: mahipal
license: Apache-2.0
nist_csf:
- DE.CM-01
- DE.AE-02
- DE.AE-07
- ID.RA-05
mitre_attack:
- T1046
- T1057
- T1082
- T1083
- T1547
---
# Hunting for DNS-based Persistence
## Overview
Attackers establish DNS-based persistence by hijacking DNS records, creating unauthorized subdomains, abusing wildcard DNS entries, or modifying NS delegations to redirect traffic through attacker-controlled infrastructure. These techniques survive credential rotations, endpoint reimaging, and traditional remediation because DNS changes persist independently of compromised hosts. Detection requires passive DNS historical analysis, zone file auditing, and monitoring for unauthorized record modifications. This skill covers hunting methodologies using SecurityTrails passive DNS API, DNS audit logs from Route53/Azure DNS/Cloudflare, and zone transfer analysis.
## When to Use
- When investigating security incidents that require hunting for dns based persistence
- When building detection rules or threat hunting queries for this domain
- When SOC analysts need structured procedures for this analysis type
- When validating security monitoring coverage for related attack techniques
## Prerequisites
- SecurityTrails API key (free tier provides 50 queries/month)
- Access to DNS provider audit logs (Route53, Azure DNS, Cloudflare, or on-premises DNS)
- Python 3.9+ with requests library
- DNS zone file access or AXFR capability for internal zones
- Historical DNS baseline for comparison
## Steps
### Step 1: Baseline DNS Records
Export current DNS zone records and establish baseline for all authorized A, AAAA, CNAME, MX, NS, and TXT records.
### Step 2: Query Passive DNS History
Use SecurityTrails API to retrieve historical DNS records and identify unauthorized changes, new subdomains, and CNAME records pointing to decommissioned services (dangling CNAMEs).
### Step 3: Detect Anomalies
Compare current records against baseline to identify unauthorized modifications, wildcard records that resolve all subdomains, NS delegation changes, and MX record hijacking.
### Step 4: Investigate Findings
Correlate DNS anomalies with threat intelligence feeds, check resolution targets against known malicious infrastructure, and validate record ownership.
## Expected Output
JSON report listing DNS anomalies with record type, historical changes, risk severity, and remediation recommendations for each finding.
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