# Colony picking robots

Robotic platforms that image a microbial plate, score colonies by size, morphology and fluorescence, then pick and re-array 200–3,000 colonies an hour into fresh growth plates — the automated front end of strain engineering, directed evolution, CRISPR clone screening and microbiome culturomics.

Source: https://en.bioecon.ru/technology/colony-picking-robots/
Updated: 2026-08-18



## Overview and value chain

Markers: [EC: FDA 21 CFR Part 11 & ICH Q2(R2) analytical procedures | OECD: Bio-pharmaceuticals | Regulator: FDA (USA), EMA (EU), NMPA (China)]

Colony picking robots are automated microbiology platforms that image
a poured agar plate, identify discrete colonies by size, morphology,
spacing and fluorescent marker, and use a sterilisable pin-head or
single-pin tool to pick each selected colony and stamp it into a fresh
growth plate, liquid well or membrane. They replace the manual picking
loop at the front end of strain engineering, directed evolution,
CRISPR clone screening, antimicrobial discovery and microbiome
culturomics, lifting throughput from a few hundred colonies per
technologist-day to 200–3,000 colonies per hour with a full audit
trail. The platform is mid-transformation along four axes: AI-assisted
colony recognition that scores picks on phenotypic and fluorescent
criteria rather than size alone; integrated end-to-end microbial
screening lines (QPix FLEX) that plate, streak, pick and inoculate in
one closed workflow; high-capacity mega-pickers (Singer PIXL Max,
KBiosystems K8XL) serving industrial directed-evolution campaigns; and
GMP-grade audit and data integrity (21 CFR Part 11) for regulated
pharmaceutical microbiology.

The key directions of colony picking robots are:
1. **Integrated microbial screening lines (QPix FLEX):** Molecular
   Devices' end-to-end systems that combine plating, streaking, colony
   picking and re-inoculation under one software suite, with AI colony
   recognition on phenotypic and fluorescent criteria.
2. **High-capacity mega pickers (Singer PIXL Max, KBiosystems K8XL):**
   industrial-scale pickers running thousands of picks per hour for
   directed-evolution, CRISPR and microbiome culturomics campaigns,
   with multi-channel fluorescence detection.
3. **Compact benchtop pickers (Hudson RapidPick SP/Lite, Singer PIXL
   Go!):** single-pin or low-throughput systems for academic and
   mid-throughput labs, expandable to higher capacity via PlateCrane
   plate handlers.
4. **GMP data integrity and traceability (21 CFR Part 11):** audit
   trails, electronic records and barcode plate tracking that let
   colony pickers sit inside regulated pharmaceutical microbiology and
   quality-control workflows.

### Sectoral value chain

```
[transformed plate] ──> [imaging & colony recognition] ──> [pick head selection] ──> [sterile pin pick]
                                                            │
                                                  (pin wash / sterilisation)
                                                            │
                                                            ▼
[growth plate / archive] <─── [re-array & inoculate] <─────┘
```

### Value chain levels

| Level | Description | Key inputs/outputs |
|:---|:---|:---|
| **Plate preparation** | pouring and spreading transformed library or sample on selective agar | **In:** agar plates, transformed library. **Out:** incubated colony plate. |
| **Imaging & recognition** | high-resolution imaging with AI scoring on size, morphology, fluorescence | **In:** colony plate. **Out:** pick coordinate list. |
| **Sterile pin pick** | sterilisable pin-head or single-pin tool picking each colony, with ethanol or UV wash between picks | **In:** pick list, pin head. **Out:** picked biomass. |
| **Re-array & inoculate** | stamping picked biomass into fresh growth plate, liquid well or membrane | **In:** picked biomass. **Out:** re-arrayed growth plate. |
| **QC & audit trail** | barcode tracking, electronic records and image archive under 21 CFR Part 11 | **In:** re-arrayed plate. **Out:** released, traceable screening batch. |
| **Downstream assay** | sequencing, expression screening or antimicrobial susceptibility on the re-arrayed clones | **In:** released plate. **Out:** validated hits. |

Cross-cutting technologies of the sector:
- **Colony picking automation (Colony Picking Automation):** imaging, AI scoring and sterile pin-head pick-and-stamp at 200–3,000 colonies per hour.
- **High-throughput screening (High-Throughput Screening):** the downstream assay layer (expression, antimicrobial, sequencing) that picks feed.
- **GMP data integrity (21 CFR Part 11):** electronic records, audit trails and barcode plate tracking for regulated workflows.

---

## US

The United States is the centre of the integrated microbial-screening
class: Molecular Devices (San Jose, CA, a Danaher company) builds the
QPix family that defined the category, and Hudson Robotics (Springfield,
NJ) builds the RapidPick and PlateCrane lines. US pharmaceutical
microbiology and synthetic-biology programmes are the primary buyers,
and FDA's 21 CFR Part 11 data-integrity framework is what gives colony
pickers a route into regulated quality-control workflows.

### integrated screening lines, benchtop pickers, FDA data integrity
- **Molecular Devices — QPix 420 / QPix FLEX:** the integrated end-to-end microbial screening system (plating, streaking, picking, re-inoculation) with AI colony recognition, a Danaher company since 2017.
- **Hudson Robotics — RapidPick SP/Lite + PlateCrane:** compact benchtop pickers (single-pin SP, expandable Lite) integrated with the PlateCrane overhead microplate handler for walk-away automation.
- **FDA 21 CFR Part 11:** the electronic-records and audit-trail standard that qualifies colony pickers for GMP pharmaceutical microbiology and QC.

---

## CN

China is the demand-side growth market for colony picking robots: a
fast-expanding synthetic-biology industry (CRISPR strain engineering,
directed evolution, microbiome culturomics) and a large antimicrobial-
discovery and vaccine development base are converting manual picking
loops into automated picker lines. NMPA's adoption of ICH Q2(R2) and
21 CFR-equivalent data-integrity expectations frames the regulated
route, but the picker OEM base remains substantially imported (US and
UK), so the Chinese regional block is held qualitative.

### synthetic-biology demand, NMPA data-integrity alignment, imported OEM base
- **Domestic synthetic-biology build-out:** CRISPR strain-engineering and directed-evolution programmes in industrial enzyme, fine-chemical and biopesticide firms drive automated picker procurement, mostly QPix and Singer lines.
- **NMPA ICH Q2(R2) / data-integrity alignment:** harmonised analytical-procedure and electronic-records expectations qualify pickers for regulated pharmaceutical microbiology.
- **Imported OEM base:** the picker OEM layer is predominantly US (Molecular Devices, Hudson) and UK (Singer, KBiosystems); domestic firms localise plate preparation, media and downstream assay rather than the picker itself.

---

## EU

Europe anchors the high-capacity mega-picker and academic-benchtop
class: Singer Instruments (Watchet, UK) builds the PIXL Series (PIXL
Go!, PIXL+, PIXL Max) and the ROTOR repertoire-transfer system;
KBiosystems (Basildon, UK) builds the K6 and K8XL mega pickers for
industrial directed-evolution and microbiome culturomics campaigns.
EMA's ICH Q2(R2) and GMP Annex 1 frameworks complete the regulated
microbiology picture.

### mega pickers, repertoire transfer, EMA GMP microbiology
- **Singer Instruments — PIXL Series + ROTOR:** PIXL Go!/+/Max colony pickers with multi-channel fluorescence, plus the ROTOR repertoire-transfer system for yeast and microbial arraying.
- **KBiosystems — K6 / K8XL mega pickers:** high-throughput industrial pickers for directed-evolution, CRISPR clone screening and microbiome culturomics.
- **EMA ICH Q2(R2) & GMP Annex 1:** the analytical-procedure and aseptic-processing framework that qualifies pickers for regulated European pharmaceutical microbiology.

---

## Leading companies and research institutes

| Company / Institute | Country | Key products / platforms | Tech features | Status 2026 |
|:---|:---|:---|:---|:---|
| **Molecular Devices** | 🇺🇸 USA | *QPix 420, QPix FLEX* | Integrated microbial screening (plate/streak/pick/inoculate); AI colony recognition (Danaher company) | Commercial |
| **Hudson Robotics** | 🇺🇸 USA | *RapidPick SP/Lite, PlateCrane* | Compact benchtop pickers + PlateCrane overhead handler for walk-away automation | Commercial |
| **Singer Instruments** | 🇬🇧 United Kingdom | *PIXL Go!/+/Max, ROTOR* | Mega pickers with multi-channel fluorescence; ROTOR repertoire transfer for yeast | Commercial |
| **KBiosystems** | 🇬🇧 United Kingdom | *K6, K8XL mega picker* | Industrial high-throughput pickers for directed evolution and microbiome culturomics | Commercial |

---

## Tech stack and innovations

The stack combines plate imaging, AI colony recognition, a sterilisable
pick head and a 21 CFR Part 11 data layer into one walk-away workflow.

1. **Imaging & AI colony recognition (Imaging & AI Recognition):**
   - high-resolution plate imaging under white light and multi-channel fluorescence;
   - AI scoring on size, morphology, spacing and fluorescent marker to build the pick coordinate list.
2. **Sterilisable pick head (Sterilisable Pick Head):**
   - pin-head (96/384-format) and single-pin tools, with ethanol wash or UV sterilisation between picks to kill cross-contamination;
   - pick rates of 200 (single-pin benchtop) to 3,000 (mega picker) colonies per hour.
3. **Plate handling & re-array (Plate Handling & Re-Array):**
   - overhead microplate handlers (Hudson PlateCrane) for walk-away operation;
   - re-array into growth plates, liquid wells or membranes for downstream assay.
4. **Data integrity & audit (Data Integrity & Audit):**
   - barcode plate tracking, image archive and electronic records under 21 CFR Part 11 for regulated workflows.

---

## Value chains and production pipelines

### Industrial pipeline of an automated colony-picking run (21 CFR Part 11 / ICH Q2(R2))

```
┌───────────────────────────┐      ┌───────────────────────────┐
│ 1. Plate preparation      │ ───> │ 2. Imaging & recognition  │
└───────────────────────────┘      └───────────────────────────┘
                                                  │
                                                  ▼
┌───────────────────────────┐      ┌───────────────────────────┐
│ 4. Re-array & inoculate   │ <─── │ 3. Sterile pin pick       │
└───────────────────────────┘      └───────────────────────────┘
              │
              ▼
┌───────────────────────────┐      ┌───────────────────────────┐
│ 5. QC & audit trail       │ ───> │ 6. Downstream assay       │
└───────────────────────────┘      └───────────────────────────┘
```

#### Stage 1: Plate preparation
A transformed library, environmental sample or CRISPR-edited pool is plated and spread on selective agar and incubated to give discrete, pickable colonies.

#### Stage 2: Imaging and recognition
The plate is imaged at high resolution under white light and multi-channel fluorescence, and AI scores colonies by size, morphology, spacing and fluorescent marker to generate a pick coordinate list.

#### Stage 3: Sterile pin pick
A sterilisable pin-head or single-pin tool picks each selected colony; the pin is ethanol-washed or UV-sterilised between picks to prevent cross-contamination, at 200–3,000 picks per hour.

#### Stage 4: Re-array and inoculate
The picked biomass is stamped into a fresh growth plate, liquid well or membrane, creating an ordered re-array of viable clones for downstream culture.

#### Stage 5: QC and audit trail
Barcode plate tracking, image archive and electronic records under 21 CFR Part 11 give each pick a traceable identity from plate to clone.

#### Stage 6: Downstream assay
The re-arrayed clones feed sequencing, expression screening, antimicrobial susceptibility or other high-throughput assays that validate the hits.

