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Japanese genebank data online

While looking for something else, I happened across a paper describing the Japanese genebank’s new(ish) information system, NIASGBdb. I have some issues about the downloading options (e.g., there are annoying limits to the number of accessions), but it is nice to be able to search both characterization and evaluation data. I know you want to know, so I’ll tell you that the average culm height of accessions with very high resistance to sheath blight is 104cm, whereas that of those with very low resistance is 81cm. And no, I didn’t calculate any standard errors, or do any fancy multivariate statistics. But there’s nothing to stop you doing so.

Brainfood: Baby’s veggies, Chickpea and drought, Vine cactus breeding, Paleolithic rabbits, California protected areas, Wild pigeonpea, Pecorino classification, Milk composition, Phenotyping, Wild peas

The revenge of characterization data

It is a truth universally acknowledged that characterization data are useless to breeders. Well, universally acknowledged by breeders anyway. Morphological data are all well and good for genebank curators looking for duplicates and old-fashioned taxonomists, they say. But what we need is evaluation data, and lots of it.

As usual, I exaggerate; for effect, as usual. But I think it would certainly be true to say that detailed morphological descriptions of germplasm are not the highest priority thing breeders want out of genetic resources databases. That would probably be information on resistance to biotic and abiotic stresses.

And yet a paper just out in Euphytica shows that the former can be clues to the latter. A team at IRRI 1 looked at the susceptibility of rice to sheath blight, an important disease throughout rice-growing areas, especially under intensive systems. 2 They measured how 200 accessions did when inoculated with Rhizoctonia solani in the field. So far, so conventional.

But because the accessions were very carefully chosen (out of a total of over 100,000 in the IRRI genebank), the team, which included the genebank manager, were able to estimate to what extent differences in disease intensity were due to plant and canopy architecture — in other words, morphology — and how much to genetic susceptibility.

The accessions tested were selected to represent contrasting morphologies (based on leaf length, leaf angle and number of tillers, typical characterization descriptors), different phenologies (number of days to 80% flowering) and all the major varietal groups (indica, aus, aromatic, temperate, japonica and tropical japonica). It turned out that the lowest levels of disease intensity were found on a particular morpho-phenological group, and that this effect of morphology on disease intensity was much greater than any effect of genetic group, although the aus varietal group was markedly superior to the others.

The authors therefore recommend that breeders looking for sources of reduced susceptibility to sheath blight will find it most efficient to select taller accessions with wider leaves. Let us see what the breeders think. I’ll post this on GIPB and report back if there’s any reaction.

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