Crop Protection 2030: what does it mean for seeds? Laurens Kroon, - - PowerPoint PPT Presentation

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Crop Protection 2030: what does it mean for seeds? Laurens Kroon, - - PowerPoint PPT Presentation

Seed Meets Technology Crop Protection 2030: what does it mean for seeds? Laurens Kroon, Bejo, Head of Research EXPLORING SINCE Merger Bakers son Advances Cor Beemsterboer & Cor Beemsterboer in research marker Jacob Jong


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SLIDE 1

Seed Meets Technology ‘Crop Protection 2030: what does it mean for seeds?’

Laurens Kroon, Bejo, Head of Research

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SLIDE 2

EXPLORING SINCE

Grocer Jacob Jong starts in seed trade Collaboration in new breeding techniques starts (Hybridisation) Merger Cor Beemsterboer & Jacob Jong become Bejo Zaden Advances in research marker technology Baker’s son Cor Beemsterboer starts in seed trade Expansion and establishment

  • f Bejo in Europe

Acquisition

  • f Agrisemen a lettuce

breeding company

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SLIDE 3

► 1800 employees

worldwide

► Broad assortment

50 crops, 1200 varieties

► Organic program

50 crops, 190 varieties

► Breeding, production & sales

around the world

TODAY

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SLIDE 4

Bejo assortment

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SLIDE 5

LEAF CROPS FRUIT CROPS ALLIUM ROOTED CROPS BRASSICAS

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SLIDE 6

VARIETY DEVELOPMENT

3 YEARS 10 -15 YEARS

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SLIDE 7

VARIETY DEVELOPMENT CYCLE

Market Identification Development Process Breeding Research Testing field trials With customers Seed Production & Processing Market Introduction

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SLIDE 8

THE WORLD OF BEJO

Breeding stations

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SLIDE 9

THE WORLD OF BEJO

Sales activities

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SLIDE 10

THE WORLD OF BEJO

Warmenhuizen

T h e N e t h e r l a n d s

►

Quality control, processing and storage

  • f globally produced Bejo seed

►

Research Center

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SLIDE 11

► Resilience in both crops and crop

systems

► Agri/horticulture and the environment

are linked

► Aim to strive for zero emission to the

environment and virtually zero residue

  • n produce

CROP PROTECTION 2030

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SLIDE 12

► Resilience in both crops and crop

systems

► Agri/horticulture and the environment

are linked

► Aim to strive for zero emission to the

environment and virtually zero residue

  • n produce

CROP PROTECTION 2030

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SLIDE 13

► Resilience in both crops and crop

systems

▪

Breeding for resistance is an integral part of

  • ur Breeding program

CROP PROTECTION 2030

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SLIDE 14

VARIETY DEVELOPMENT CYCLE

  • Breeding for qualitative

resistance is a rat race

  • Reduce the development

time to cut time to market

  • Marker Assisted Breeding

and Speed Breeding

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SLIDE 15

VARIETY DEVELOPMENT CYCLE

  • Breeding for qualitative

resistance is a rat race

  • Reduce the development

time to cut time to market

  • Marker Assisted Breeding

and Speed Breeding

  • Breeding for quantitative

traits is even more challenging!

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SLIDE 16

VARIETY DEVELOPMENT CYCLE

► Breeding for quantitative traits

▪

Resistance for many soilborne diseases is difficult to achieve

▪

Also breeding for resilience/stress tolerance is not easy

▪

Uniform distribution of the pathogen or stress-factor in the trial field is challenging

▪

Many loci with a small additive effect on the trait of interest, challenge to combine with quality

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SLIDE 17

VARIETY DEVELOPMENT CYCLE

  • Use of Drone data in

the Breeding process to tackle quantitative traits

  • Linking Phenotypic

data to Genotypic data

  • Use of Biostatistics to

identify associations between markers and traits

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SLIDE 18

VARIETY DEVELOPMENT CYCLE

► New Breeding Techniques

▪

Gene editing is mentioned as a new tool to use in resistance breeding

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SLIDE 19

VARIETY DEVELOPMENT CYCLE

► New Breeding Techniques

▪

Gene editing is mentioned as a new tool to use in resistance breeding

▪

CRISPR-Cas9 can change specific code in a gene of interest, with no side effects

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SLIDE 20

VARIETY DEVELOPMENT CYCLE

► New Breeding Techniques

▪

Gene editing is mentioned as a new tool to use in resistance breeding

▪

CRISPR-Cas9 can change specific code in a gene of interest, with no side effects

▪

One of the most promising applications is in the editing of S-genes

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SLIDE 21

VARIETY DEVELOPMENT CYCLE

► New Breeding Techniques

▪

Gene editing is mentioned as a new tool to use in resistance breeding

▪

CRISPR-Cas9 can change specific code in a gene of interest, with no side effects

▪

One of the most promising applications is in the editing of S-genes

▪

These susceptibility genes code for a doorway that allows a pathogen to enter a plant cel

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SLIDE 22

VARIETY DEVELOPMENT CYCLE

► New Breeding Techniques

▪

Gene editing is mentioned as a new tool to use in resistance breeding

▪

CRISPR-Cas9 can change specific code in a gene of interest, with no side effects

▪

One of the most promising applications is in the editing of S-genes

▪

These susceptibility genes code for a doorway that allows a pathogen to enter a plant cel

▪

If you brick up this doorway, you can prevent infection, without negative impact on the plant

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SLIDE 23

VARIETY DEVELOPMENT CYCLE

► New Breeding Techniques

▪

Gene editing is mentioned as a new tool to use in resistance breeding

▪

CRISPR-Cas9 can change specific code in a gene of interest, with no side effects

▪

One of the most promising applications is in the editing of S-genes

▪

These susceptibility genes code for a doorway that allows a pathogen to enter a plant cel

▪

If you brick up this doorway, you can prevent infection, without negative impact on the plant

▪

This is a durable form of resistance!

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SLIDE 24

VARIETY DEVELOPMENT CYCLE

►

Example: mildew resistance in wheat

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SLIDE 25

VARIETY DEVELOPMENT CYCLE

►

Example: mildew resistance in wheat

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SLIDE 26

► Resilience in both crops and crop

systems

▪

Breeding for resistance is an integral part of

  • ur Breeding program

▪

Breeding for Organic vs Organic Breeding?

CROP PROTECTION 2030

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SLIDE 27

Bejo Organic Program

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SLIDE 28

ORGANIC RIGHT FROM THE START

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SLIDE 29

► Over 20 years of extensive knowledge

and experience

► Innovative seed treatments and

improved cultivation practices

► New varieties, developed from our

broad genetic base, supported with the latest technologies for natural breeding

ORGANIC RIGHT FROM THE START

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SLIDE 30

► Resilience in both crops and crop

systems

▪

Breeding for resistance is an integral part of

  • ur Breeding program

▪

Breeding for Organic or Organic Breeding?

▪

Healthy seeds give a good start

CROP PROTECTION 2030

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SLIDE 31

From Healthy seeds to Healthy Seedlings

Healthy seeds Healthy soils Disease - free In Balance/ Robust

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SLIDE 32

On Site Detection

Measuring Xanthomonas infections during seed production

  • f cabbage
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SLIDE 33

Location of infection

Superficial contamination Deep seated infection Deep seated embryonic infection

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SLIDE 34

Disinfection

Treated Untreated

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SLIDE 35
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SLIDE 36

► Resilience in both crops and crop

systems

► Agri/horticulture and the environment

are linked

► Aim to strive for zero emission to the

environment and virtually zero residue

  • n produce

CROP PROTECTION 2030

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SLIDE 37

Bees and Bejo

Natural partners in production of vegetable seeds

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SLIDE 38

Bees are strategically important for Bejo:

► Honey bees: champions in

pollination for 80% of our crops.

► Without pollination, no seeds. ► Bee mortality and bee health are a

global concern.

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SLIDE 39

► Resilience in both crops and crop

systems

► Agri/horticulture and the environment

are linked

► Aim to strive for zero emission to the

environment and virtually zero residue

  • n produce

CROP PROTECTION 2030

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SLIDE 40
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SLIDE 41

Fungicides in Seed Coating

2005 2018 2020 Future Alternatives Fludioxonil Metalaxyl

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SLIDE 42

Seedlings are vulnerable

Beet – Rhizoctonia example

Diseased Plants

100% 50% 25% 0% wk 0 wk 2 wk 4 wk 6 wk 8 wk 10

Plant Age

Rhizoctonia Attack

Liu 2019, North Dakota State University, USA

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SLIDE 43

►

The Ministry Vision for Crop Protection 2030 largely fits our own long term vision

►

New developments in Seed Technology and Breeding support the higher demands that follow from this program

►

But the world is bigger than Holland alone

►

Even in Europe, there is no level playing field, and member states are drifting apart with rules and regulations

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SLIDE 44

►

Resistance breeding and resilient crops alone are not enough (yet) to combat soil borne diseases

►

New breeding techniques like CRISPR-Cas gene editing can be a valuable (or even indispensable) tool to breed for resilient crops

►

Cutting down the available chemistry limits the options to combat challenging diseases, and may limit the farmers in yield stability

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SLIDE 45

Exploring nature never stops

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SLIDE 46