Soybean production in South and North America has recently been threatened by the widespread dissemination of soybean rust (SBR) caused by the fungus Phakopsora pachyrhizi. Currently, chemical spray containing fungicides is the only effective method to control the disease. This strategy increases production costs and exposes the environment to higher levels of fungicides. As a first step towards the development of SBR resistant cultivars, we studied the genetic basis of SBR resistance in five F2 populations derived from crossing the Brazilian-adapted susceptible cultivar CD 208 to each of five different plant introductions (PI 200487, PI 200526, PI 230970, PI 459025, PI 471904) carrying SBR-resistant genes (Rpp). Molecular mapping of SBR-resistance genes was performed in three of these PIs (PI 459025, PI 200526, PI 471904), and also in two other PIs (PI 200456 and 224270). The strategy mapped two genes present in PI 230970 and PI 459025, the original sources of Rpp2 and Rpp4, to linkage groups (LG) J and G, respectively. A new SBR resistance locus, rpp5 was mapped in the LG-N. Together, the genetic and molecular analysis suggested multiple alleles or closely linked genes that govern SBR resistance in soybean.
O objetivo deste trabalho foi definir classificações de coeficientes de variação para produtividade e altura da planta de soja. Os dados foram obtidos de ensaios intermediários e finais realizados nos estados do Paraná e do Mato Grosso. Foram realizadas classificações distintas para cada localização e ciclo reprodutivo. Considerando-se a média e o desvio-padrão dos coeficientes de variação obtidos das análises de variância dos ensaios, os coeficientes foram classificados como baixo, médio, alto e muito alto. Uma classificação adicional foi feita utilizando a mediana e o pseudo-sigma, em substituição à média e ao desvio-padrão, respectivamente. A classificação dos coeficientes de variação dependeu do caráter e da localização, mas não variou muito em razão do ciclo reprodutivo. Os critérios adotados (média e desvio-padrão ou mediana e pseudo-sigma) foram semelhantes (independentemente da distribuição dos coeficientes de variação) e satisfatórios para determinar a precisão experimental. O limite máximo de coeficiente de variação aceitável para produtividade é de 16% e para altura da planta é de 12%.
Soybean rust (SBR) caused by Phakopsora pachyrhizi Syd. is currently the most threatening fungal disease of soybean [Glycine max (L.) Merr.] in the Americas. Development of resistant or tolerant cultivars is a major goal in several soybean breeding programs. Four loci, all carrying dominant alleles that confer a resistant phenotype, have been described. We investigated the genetic basis of the resistance in PI 200456 and PI 224270 by crossing each of them with a susceptible cultivar (CD 208). Phenotypic segregation ratios for F2 plants and F2:3 lines showed that the resistance in each resistant parent was controlled by a single recessive gene. A test for allelism demonstrated that these genes are non‐allelic. This is the first report of recessive genes controlling SBR resistance in soybean and may represent a different type of resistance for breeding programs aimed at development of more durable resistance.
Este trabalho teve o objetivo de avaliar o desempenho, a estabilidade e a adaptabilidade de 21 cultivares de soja (Glycine max (L.) Merrill), em cinco épocas de plantio no cerrado de Rondônia. O delineamento experimental foi blocos ao acaso, com três repetições. Os ensaios foram conduzidos no ano de 1996/97 pelo Centro de Pesquisa Agroflorestal de Rondônia, no Campo Experimental de Vilhena em Rondônia, RO. Os métodos utilizados apresentaram concordância entre os resultados alcançados, sendo que o comportamento das cultivares nas diferentes épocas de semeadura pode ser representado por um modelo linear. O coeficiente de resposta linear beta1i não apresentou diferença significativa (P<0,05) da unidade pelo teste t (beta1i = 1) em todas as cultivares testadas. As cultivares que apresentaram desvios de regressão sigma²(d i) significativos (P<0,05) foram MT/BR50 e EMBRAPA 31, com R² = 58,56% e 74,43%, respectivamente. As demais cultivares não apresentaram desvios de regressão significativos.
-The objective of this work was to investigate the genotype-environment interaction in Mato Grosso State, MT. The relative importance of locations, years, sowing dates and cultivars and their interactions was analyzed from data collected in regional yield trials performed in a randomized complete block design with four replications, from 1994-1995 through 1999-2000, in Locations are relatively more important than years for yield testing soybeans in the MT State, therefore, investment should be made in increasing locations rather than years to improve experimental precision. Partitioning the MT State into regions has little impact on soybean yield testing results and, consequently, on the efficiency of the soybean breeding program in the State. Breeding genotypes with broad adaptation for the MT State is an efficient strategy for cultivar development.
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