Scientists Uncover Four New Genetic Strains of Cacao in Peru: A Breakthrough for Chocolate Production

In a comprehensive study of 390 traditional cacao trees representing Amazonian varieties, researchers discovered four previously unidentified genetic lineages. Notably, two of these lineages exhibited ancestry linked to exceptional flavor potential, opening up new avenues for growers and artisanal chocolate makers.

Motilal et al. Cacao samples were collected from eight departments in Peru. Image credit: Fernando Granier.

Cacao (Theobroma cacao) is a valuable outcrossed understory tree species native to the Amazon basin, primarily known for its economically significant beans.

These beans are essential in the multibillion-dollar chocolate industry and are utilized in various food and cosmetic applications, making cocoa an important agricultural commodity.

Cacao farming is a vital livelihood for millions of smallholder farmers in tropical regions and plays a critical role in global trade and the economies of producing nations.

In Peru, the world’s 8th largest cocoa producer, over 80,000 farmers rely on cocoa production as of 2024.

Many farms in Peru cultivate wild and semi-wild cacao varieties that have remained largely unchanged by breeding or genetic engineering.

Prior research indicated that native cacao trees in Peru and other countries can be classified into 10 genetic groups based on their similarities. Each tree may belong to a pure group or a combination of several groups.

However, recent studies have challenged this 10-group framework, with few focused specifically on Peru.

In a groundbreaking study, Dr. Lambert Motilal of the Cocoa Research Center at the University of St. Augustine of the West Indies, alongside colleagues, examined the genetic diversity of 390 wild and semi-wild cacao trees from indigenous farms across various Peruvian regions.

The researchers concentrated on single nucleotide polymorphisms (SNPs)—single-letter variations in the DNA of individual trees—to assess genetic diversity and relationships, thus categorizing them into genetically similar groups.

This analysis unveiled four previously unrecognized genetic groups in addition to the existing ten. While some trees were classified into pure groups, others were mixed.

Findings revealed that different areas of Peru exhibit unique genetic traits, showcasing fine-scale geographical variations in the genetic structure of cultivated cacao trees.

Remarkably, two of the four newly identified groups possess ancestry suggesting they may yield particularly high-quality, flavorful beans, according to the researchers.

This research also shed light on the ancestry of a notable cacao variety known as CCN51, which is cultivated for its high yields and disease resistance, gaining increasing economic significance.

The results indicate that Peru possesses unique genetic resources ripe for exploration regarding desirable traits in the cocoa and chocolate industries.

“Our study highlights that while Peru’s cacao trees share a common genetic foundation, each region maintains a distinct genetic identity, allowing for the identification of four entirely new cacao lineages,” the authors stated.

“This research not only transforms our understanding of Peru’s genetic landscape but also equips us with invaluable resources for conservation and the premium chocolate market.”

“One particularly rewarding aspect was engaging directly with trees on indigenous farms spanning eight diverse sectors, from the lush lowlands of Amazonas to the Andean foothills.”

“It was enlightening to realize these invaluable genetic treasures are not confined to laboratory settings but are genuinely thriving in farmers’ backyards, awaiting proper characterization and value for the premium market.”

Findings are part of a study featured in this week’s issue of PLoS ONE.

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LA Motilal et al. 2026. The genetic structure of traditional cacao reveals four new genetic lineages in indigenous regions of the Peruvian Amazon. PLoS One 21 (7): e0351690; doi: 10.1371/journal.pone.0351690

Source: www.sci.news

5,000 years ago, Cacao likely spread from the Amazon to other regions in Central and South America

Humans have a long history of transporting and trading plants, contributing to the evolution of cultivated plants. The cacao tree (Theobroma cacao), whose beans are used to make products such as chocolate, liqueurs, and cocoa butter, is native to the Neotropics of South America. However, little is known about its cultivation and use in these regions. In a new study, archaeologists analyzed ceramic residues from a large sample of pre-Columbian cultures in Central and South America. Their findings reveal that cacao was widely used in South America outside of its Amazonian region, going back 5,000 years.



Recent discoveries have recorded the domestication of cacao trees (Theobroma cacao) inhabited its native Amazon region of Ecuador by at least 5,300 years ago. Lanau other. This study shows that a large-scale landscape of domestication of cacao outside of its native region along the Pacific coast of South America occurred simultaneously during this same early period and later periods. Image credit: Fernando Granier.

The modern cacao tree (its scientific name means “food of the gods”) is one of the world’s most important crops.

Eleven genetic groups are known, including the widely used Criollo and Nacional strains.

Although it is well established that the cacao tree was originally domesticated in the upper Amazon basin, it has not been clear how the use of cacao by other cultures spread throughout Central and South America.

In a new study, AGAP Institute researcher Claire Lanau and colleagues found 352 ceramic remains from 19 pre-Columbian cultures dating back approximately 5,900 to 400 years, spanning Ecuador, Colombia, Peru, Mexico, Belize, and Panama. was analyzed.

Researchers tested ancient cacao’s DNA and the presence of three methylxanthine (mild stimulant) compounds (theobromine, theophylline, and caffeine) present in modern cacao tree lineages to determine the ancient cacao’s DNA. Identified the residue.

The authors also used genetic information from 76 modern cocoa samples to establish the ancient cocoa ancestry present in ceramic products. This could reveal how ancient cocoa strains diversified and spread.

The study results show that cacao was domesticated in the Amazon at least 5,000 years ago, and was soon cultivated extensively along the Pacific coast, with high diversity among ancient lineages likely due to genetic This shows that different populations were bred together.

The presence of cacao genotypes originating from the Peruvian Amazon in the Valdivia coastal region of Ecuador suggests that these cultures have been in contact for many years.

The Peruvian strain was also detected in artifacts from Colombia’s Caribbean coast.

“Taken together, these indicate that cocoa varieties spread widely across countries and were interbred to adapt to new environments as different cultures adopted the use of cocoa,” the researchers said.

“A better understanding of cocoa’s genetic history and diversity may help combat the threats facing modern cocoa varieties, such as disease and climate change.”

a paper The survey results were published in a magazine scientific report.

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C. Lanau other. 2024. Revisiting the history of pre-Columbian cacao cultivation revealed through an archaeogenomic approach. science officer 14, 2972; doi: 10.1038/s41598-024-53010-6

Source: www.sci.news