Biodiversitas Journal of Biological Diversity
Vol. 24 No. 7 (2023)

Genetic profiling of locally registered Philippine coffee using molecular markers linked to resistance against diseases and pests

NICK RAINIER S. SANTOS (Institute of Biology, Regidor Street, National Science Complex, University of the Philippines Diliman. Quezon City, 1101, National Capital Region, Republic of the Philippines)
MONALIZA B. MAGAT (Institute of Biology, Regidor Street, National Science Complex, University of the Philippines Diliman. Quezon City, 1101, National Capital Region, Republic of the Philippines)
MIGUEL V. MONDRAGON (Institute of Biology, Regidor Street, National Science Complex, University of the Philippines Diliman. Quezon City, 1101, National Capital Region, Republic of the Philippines)
ERNELEA P. CAO (Institute of Biology, Regidor Street, National Science Complex, University of the Philippines Diliman. Quezon City, 1101, National Capital Region, Republic of the Philippines)
DAISY MAY C. SANTOS (Institute of Biology, Regidor Street, National Science Complex, University of the Philippines Diliman. Quezon City, 1101, National Capital Region, Republic of the Philippines)



Article Info

Publish Date
07 Aug 2023

Abstract

Abstract. Santos NRS, Magat MB, Mondragon MV, Cao EP, Santos DMC. 2023. Genetic profiling of locally registered Philippine coffee using molecular markers linked to resistance against diseases and pests. Biodiversitas 24: 4136-4144. Coffee is a major commodity in the Philippines, but diseases and pests have hampered local production. Natural resistance could help increase production by eradicating infestation or lessening the symptoms of infection and minimizing the need for chemical control. Hence, this study aims to screen local Coffea arabica varieties, whose beans are prized for their superior taste and aroma, using genetic markers. These markers are linked to resistance against Coffee Leaf Rust (CLR, caused by Hemileia vastatrix), Coffee Berry Disease (CBD, caused by Colletotrichum kahawae), and Root Knot Nematode (RKN, Meloidogynespp.). The Arabica samples were obtained from the Bureau of Plant Industry in Baguio City, Benguet, a main distributor of coffee seedlings to farmers. C. canephora and C. liberica trees from Cavite State University, Indang, Cavite, were used as control samples. Results reveal that the registered NSIC-2008-Cf-A-05 (Red Bourbon) Arabica tree contains a unique haplotype in a region of chromosome 3. This region has been linked to the SH3 gene, which confers resistance against CLR, a promising result for infested areas. However, all Arabica samples are inferred to be susceptible to CBD and RKN. Hence, NSIC-2008-Cf-A-05 is a potential source for resistance genes specifically against CLR in future breeding programs.

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Journal Info

Abbrev

biodiv

Publisher

Subject

Agriculture, Biological Sciences & Forestry Biochemistry, Genetics & Molecular Biology

Description

The Biodiversitas Journal was first published in 2000 by the Department of Biology, FMNS, Universitas Sebelas Maret, Surakarta, Indonesia, then in 2006 it was co-published by the Society for Indonesian Biodiversity and that department; since 2017 it was also hosted by Smujo. From 2003-2012 it was ...