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FHIA


FHIA

Formation
1984
Type
National research centre
Headquarters
La Lima, Honduras
Staff
 
Website
FHIA hybrids

FHIA is the Spanish acronym of the Honduran Agricultural Research Foundation (Fundación Hondureña de Investigación Agrícola). Its banana and plantain programme is known for being the first breeding programme to have delivered disease-resistant hybrids to farmers.

Contents

History of the banana and plantain programme

FHIA was founded in 1984, but the banana genetic improvement programme had actually started much earlier, in the 1920s. Following the arrival in Latin America of Fusarium wilt, the United Fruit Company set up a breeding programme in Panama to produce a disease-resistant Gros Michel-like export banana, using materials collected in the Pacific and southeast Asia. The programme was shut down in 1930 with the onset of the depression. Breeding resumed in 1958, but this time in Honduras, where the collection had been transferred and supplemented with accessions collected between 1959 and 1961 by the American botanist Paul H. Allen and his team1.

Progress to produce a disease-resistant Gros Michel was slow because the cultivar is largely sterile, and early attempts resulted in inferior progenies. In the mean time, the banana companies had solved their Fusarium wilt problem by switching to cultivars that were resistant to the disease: the Cavendish bananas that currently dominate the export trade. Breeders had produced hybrids that out-yielded some of the Cavendish cultivars, but poor post-harvest characteristics made them unsuitable for commercialization.

By the beginning of the 1980s, with still no new commercial cultivars in sight, the main breeding programmes were facing closure. In 1984, the United Brands Company decided to wind up its research on banana and donated its genetic improvement programme and field collection to the Honduran government, which had just created FHIA. Phil Rowe oversaw the transition from a private enterprise to a governmental research institute. Capitalizing on more than 25 years of working with bananas, FHIA was soon able to deliver disease-resistant hybrids.

Banana breeding

FHIA has a field collection of more than 400 Musa accessions from many countries, which are the source of genetic variability for the breeding programme.

The initial goal of the programme was to develop a Gros Michel-type banana with resistance to Fusarium wilt. First, hybrids were created by using Gros Michel and its dwarf mutants Cocos, Highgate and Lowgate as female parents and the diploid Lidi, resistant to race 1 of Fusarium oxysporum f. sp. cubense, as male parent. Although Gros Michel is largely sterile, it can be induced to set seeds using pollen from wild bananas. The number of seeds produced, however, is small and the process full of uncertainties.

Tetraploid hybrids obtained from these crosses were resistant to race 1 of Fusarium wilt but not as productive as the Cavendish clones that had replaced Gros Michel in commercial banana plantations since 1960. Breeders attributed this to the poor agronomic performance of the wild species used as male parents, which led them to concentrate on breeding ‘improved’ male parents that possessed both disease resistance and good agronomic characters.

The improved diploid SH-3142 was developed which served as the male parent for the development of FHIA-01, FHIA-18, FHIA-21 and FHIA-25. The hybrids released so far have good bunch and agronomic characteristics and are resistant or tolerant to black leaf streak and Fusarium wilt. They are being grown in a wide range of agro-ecological conditions in Africa, Latin America and Australia.

References


1. Rowe, P.R. and Richardson, D.L. 1975. Breeding bananas for disease resistance, fruit quality and yield. SIATSA Bulletin. SIATSA, La Lima (HND). 41p.
Official website of FHIA's banana and plantain programme
Information on the FHIA collection on the MusaNet website

See also on this website

Lessons from introducing FHIA-21 in July 2011 issue of InfoMus@
Hybrids produced by FHIA: FHIA-01, FHIA-02, FHIA-03, FHIA-17, FHIA-18, FHIA-20, FHIA-21, FHIA-23, FHIA-25