Cassava is a major tropical food crop in the Euphorbiaceae family that has high carbohydrate production potential and adaptability to diverse environments. Here we present the draft genome sequences of a wild ancestor and a domesticated variety of cassava and comparative analyses with a partial inbred line. We identify 1,584 and 1,678 gene models specific to the wild and domesticated varieties, respectively, and discover high heterozygosity and millions of single-nucleotide variations. Our analyses reveal that genes involved in photosynthesis, starch accumulation and abiotic stresses have been positively selected, whereas those involved in cell wall biosynthesis and secondary metabolism, including cyanogenic glucoside formation, have been negatively selected in the cultivated varieties, reflecting the result of natural selection and domestication. Differences in microRNA genes and retrotransposon regulation could partly explain an increased carbon flux towards starch accumulation and reduced cyanogenic glucoside accumulation in domesticated cassava. These results may contribute to genetic improvement of cassava through better understanding of its biology.
Resumo -O objetivo deste trabalho foi estimar a divergência genética entre acessos de mandioca açucarados e não açucarados, por meio de marcadores moleculares, caracteres quantitativos e qualitativos, bem como determinar a correlação entre essas estimativas. Foram utilizados quatro acessos de mandioca açucarados e quatro não açucarados, com duas variedades locais e duas comerciais. Os acessos foram avaliados em campo, em laboratório, com marcadores RAPD, quanto a 12 caracteres quantitativos e 33 morfológicos. Foram estimadas as matrizes de dissimilaridade/distância genética entre os acessos, por meio dos caracteres qualitativos e quantitativos e da significância da correlação entre as matrizes. A divergência genética entre os acessos foi elevada e os acessos açucarados foram diferenciados das variedades não açucaradas locais e comerciais. As distâncias estimadas, por meio de marcadores moleculares e caracteres qualitativos, evidenciaram elevada associação entre si e associação moderada com a estimada por meio de caracteres quantitativos.Termos para indexação: Manihot esculenta, melhoramento genético, recursos genéticos, variabilidade genética. Genetic divergence among sugary and nonsugary cassava accessionsAbstract -The objective of this work was to estimate the genetic divergence among sugary and nonsugary cassava accessions, through molecular markers, and quantitative and qualitative characters, as well as to determine the correlation among these estimates. Four sugary cassava accessions and four nonsugary ones were used, including two landraces and two nonsugary improved varieties. The accessions were evaluated in field conditions and in laboratories, with RAPD markers, in 12 quantitative and 33 qualitative characters. Matrixes of genetic dissimilarity/distance among accessions were estimated, based on qualitative and quantitative characters, molecular markers, and on the correlation significance among matrixes. High genetic divergence among the evaluated accessions was observed, the sugary accessions were differentiated from the landraces and improved nonsugary varieties. The distances estimated through molecular markers and qualitative characters showed the high association among each other and moderate association with the distance estimated through quantitative characters.
This study reports the identification of a new class of cassava (Manihot esculenta Crantz) with a storage root showing unusual free sugar accumulation and novel starch. Twenty-seven clones high in free sugar were identified under cultivation in primitive rural community areas in the Amazon. Iodine test and glucose oxidase-peroxidase reagent strips were used, in the field, for identification of starch and glucose, respectively. Five out of these 27 clones of cassava were cultivated at EMBRAPA Genetic Resources and Biotechnology and used for biochemical characterization, starch synthesis enzyme activities and gene expression analysis. Carbohydrates were fractioned into free sugar, polymerized water-soluble and -insoluble alpha-polyglucan. Clones of series CAS36 accumulate over 100 times more free sugar (mainly glucose) than commercial varieties. Monosaccharide composition analysis revealed one clone with distinct water-soluble sugars not present in the commercial cultivar. Structure analysis of the water-soluble and -insoluble alpha-polyglucan revealed the presence of a glycogen-like starch in clone CAS36.1. This clone indicated disruption in the starch synthesis pathway for enzyme activities and protein blot analyses in ADPG-pyrophosphorylase and branching enzyme, and their corresponding protein. Gene expression analysis indicated the lack of transcript for the gene coding for branching enzyme, but not for the gene coding for the ADPG-pyrophosphorylase small subunit. In addition, the pattern of distribution of sugar and starch content showed to be related to tissue age in the storage root.
Cassava polyploid breeding has drastically improved our knowledge on increasing root yield and its significant tolerance to stresses. In polyploid cassava plants, increases in DNA content highly affect cell volumes and anatomical structures. However, the mechanism of this effect is poorly understood. The purpose of the present study was to compare and validate the changes between cassava cultivar NZ199 diploid and autotetraploid at proteomic levels. The results showed that leaf proteome of cassava cultivar NZ199 diploid was clearly differentiated from its autotetraploid genotype using 2-DE combined MS technique. Sixty-five differential protein spots were seen in 2-DE image of autotetraploid genotype in comparison with that of diploid. Fifty-two proteins were identified by MALDI-TOF-MS/MS, of which 47 were up-regulated and 5 were down-regulated in autotetraploid genotype compared with diploid genotype. The classified functions of 32 up-regulated proteins were associated with photosynthesis, defense system, hydrocyanic acid (HCN) metabolism, protein biosynthesis, chaperones, amino acid metabolism and signal transduction. The remarkable variation in photosynthetic activity, HCN content and resistance to salt stress between diploid and autotetraploid genotypes is closely linked with expression levels of proteomic profiles. The analysis of protein interaction networks indicated there are direct interactions between the 15 up-regulation proteins involved in the pathways described above. This work provides an insight into understanding the protein regulation mechanism of cassava polyploid genotype, and gives a clue to improve cassava polyploidy breeding in increasing photosynthesis and resistance efficiencies.
ResumoO objetivo do trabalho foi caracterizar e estimar a variabilidade genética entre acessos de mandioca de indústria, com potencial de adaptação às condições do Cerrado do Brasil Central, por meio de caracteres quantitativos, qualitativos e marcadores moleculares de forma isolada e conjunta, bem como estimar a correlação entre as estimativas obtidas com base em cada grupo de caracteres. Dezesseis acessos de mandioca de indústria com potencial de adaptação às condições do Cerrado do Brasil Central foram avaliados a campo quanto a 11 caracteres quantitativos e 33 caracteres qualitativos, em experimento conduzido na Embrapa Cerrados. Os acessos foram também avaliados quanto a marcadores RAPD em laboratório. Posteriormente, foram estimadas as matrizes de dissimilaridade/distância genética entre os acessos por meio dos caracteres qualitativos, quantitativos e marcadores moleculares e pela análise conjunta dos dados. Além disso, foi estimada a correlação entre as matrizes. No grupo de acessos de indústria avaliados existe ampla variabilidade quanto aos caracteres quantitativos, qualitativos e moleculares aferidos. As únicas correlações significativas encontradas foram entre (i) a matriz de dissimilaridade estimada por meio da análise conjunta e a matriz de dissimilaridade estimada por meio de dados qualitativos (r = 0,52) e; (ii) a matriz de dissimilaridade estimada por meio da análise conjunta e a matriz de dissimilaridade estimada por meio de marcadores moleculares (r= 0,75). A fraca associação entre essas medidas indicou que a melhor estratégia para orientar ações de conservação e uso de germoplasma de mandioca de indústria é por meio de estudos de divergência genética com o emprego de marcadores moleculares, caracteres qualitativos e caracteres quantitativos de forma conjunta e complementar.
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