103 research outputs found
Breeding groundnut for rust resistance: A review
Sustainable groundnut production can be realised through development and adoption of high yielding cultivars possessing
durable rust resistance. Integrating conventional breeding with genomic tools in identifying candidate rust resistance genes,
and introgressing the genes into adapted elite germplasm, with the aid of molecular makers, could enhance breeding for
rust resistance. This review highlights breeding approaches for groundnut rust resistance, with emphasis on integrating
conventional breeding with marker-assisted selection. The life cycle, symptoms and epidemiology of the pathogen are also
discussed to understand the host-pathogen interaction and guide groundnut rust resistance breeding
Genetic diversity and population structure of groundnut (Arachis hypogaea L.) accessions using phenotypic traits and SSR markers: implications for rust resistance breeding
Groundnut (Arachis hypogaea L.) is a
multi-purpose legume serving millions of farmers and
their value chain actors globally. Use of old poorperforming
cultivars contributes to low yields (\1
t/ha) of groundnut in sub-Saharan Africa including
Tanzania. The objectives of this study were to
determine the extent of genetic variation among
diverse groundnut collections using phenotypic traits
and simple sequence repeat (SSR) markers to select
distinct and complementary genotypes for breedin
Transgenic expression of the dicotyledonous pattern recognition receptor EFR in rice leads to ligand-dependent activation of defense responses
Plant plasma membrane localized pattern recognition receptors (PRRs) detect extracellular pathogen-associated molecules. PRRs such as Arabidopsis EFR and rice XA21 are taxonomically restricted and are absent from most plant genomes. Here we show that rice plants expressing EFR or the chimeric receptor EFR::XA21, containing the EFR ectodomain and the XA21 intracellular domain, sense both Escherichia coli- and Xanthomonas oryzae pv. oryzae (Xoo)-derived elf18 peptides at sub-nanomolar concentrations. Treatment of EFR and EFR::XA21 rice leaf tissue with elf18 leads to MAP kinase activation, reactive oxygen production and defense gene expression. Although expression of EFR does not lead to robust enhanced resistance to fully virulent Xoo isolates, it does lead to quantitatively enhanced resistance to weakly virulent Xoo isolates. EFR interacts with OsSERK2 and the XA21 binding protein 24 (XB24), two key components of the rice XA21-mediated immune response. Rice-EFR plants silenced for OsSERK2, or overexpressing rice XB24 are compromised in elf18-induced reactive oxygen production and defense gene expression indicating that these proteins are also important for EFR-mediated signaling in transgenic rice. Taken together, our results demonstrate the potential feasibility of enhancing disease resistance in rice and possibly other monocotyledonous crop species by expression of dicotyledonous PRRs. Our results also suggest that Arabidopsis EFR utilizes at least a subset of the known endogenous rice XA21 signaling components
Understanding caretakers' dilemma in deciding whether or not to adhere with referral advice after pre-referral treatment with rectal artesunate
BACKGROUND: Malaria kills. A single rectal dose of artesunate before referral can
reduce mortality and prevent permanent disability. However, the success of this
intervention depends on caretakers' adherence to referral advice for follow-up
care. This paper explores the dilemma facing caretakers when they are in the
process of deciding whether or not to transit their child to a health facility
after pre-referral treatment with rectal artesunate.
METHODS: Four focus group discussions were held in each of three purposively
selected villages in Mtwara rural district of Tanzania. Data were analysed
manually using latent qualitative content analysis.
RESULTS: The theme "Caretakers dilemma in deciding whether or not to adhere with
referral advice after pre-referral treatment with rectal artesunate" depicts the
challenge they face. Caretakers' understanding of the rationale for going to
hospital after treatment--when and why they should adhere--influenced adherence.
Caretakers, whose children did not improve, usually adhered to referral advice.
If a child had noticeably improved with pre-referral treatment however,
caretakers weighed whether they should proceed to the facility, balancing the
child's improved condition against other competing priorities, difficulties in
reaching the health facilities, and the perceived quality of care at the health
facility. Some misinterpretation were found regarding the urgency and rationale
for adherence among some caretakers of children who improved which were
attributed to be possibly due to their prior understanding.
CONCLUSION: Some caretakers did not adhere when their children improved and some
who adhered did so without understanding why they should proceed to the facility.
Successful implementation of the rectal artesunate strategy depends upon
effective communication regarding referral to clinic
The role of HLA-G in human pregnancy
Pregnancy in mammals featuring hemochorial placentation introduces a major conflict with the mother's immune system, which is dedicated to repelling invaders bearing foreign DNA and RNA. Numerous and highly sophisticated strategies for preventing mothers from rejecting their genetically different fetus(es) have now been identified. These involve production of novel soluble and membrane-bound molecules by uterine and placental cells. In humans, the placenta-derived molecules include glycoproteins derived from the HLA class Ib gene, HLA-G. Isoforms of HLA-G saturate the maternal-fetal interface and circulate in mothers throughout pregnancy. Uteroplacental immune privilege for the fetus and its associated tissues is believed to result when immune cells encounter HLA-G. Unequivocally demonstration of this concept requires experiments in animal models. Both the monkey and the baboon express molecules that are similar but not identical to HLA-G, and may comprise suitable animal models for establishing a central role for these proteins in pregnancy
Ancient DNA and deep population structure in sub-Saharan African foragers
Multiple lines of genetic and archaeological evidence suggest that there were major demographic changes in the terminal Late Pleistocene epoch and early Holocene epoch of sub-Saharan Africa(1-4). Inferences about this period are challenging to make because demographic shifts in the past 5,000 years have obscured the structures of more ancient populations(3,5). Here we present genome-wide ancient DNA data for six individuals from eastern and south-central Africa spanning the past approximately 18,000 years (doubling the time depth of sub-Saharan African ancient DNA), increase the data quality for 15 previously published ancient individuals and analyse these alongside data from 13 other published ancient individuals. The ancestry of the individuals in our study area can be modelled as a geographically structured mixture of three highly divergent source populations, probably reflecting Pleistocene interactions around 80-20 thousand years ago, including deeply diverged eastern and southern African lineages, plus a previously unappreciated ubiquitous distribution of ancestry that occurs in highest proportion today in central African rainforest hunter-gatherers. Once established, this structure remained highly stable, with limited long-range gene flow. These results provide a new line of genetic evidence in support of hypotheses that have emerged from archaeological analyses but remain contested, suggesting increasing regionalization at the end of the Pleistocene epoch.
DNA analysis of 6 individuals from eastern and south-central Africa spanning the past approximately 18,000 years, and of 28 previously published ancient individuals, provides genetic evidence supporting hypotheses of increasing regionalization at the end of the Pleistocene.info:eu-repo/semantics/publishedVersio
Reactive Oxygen Species Play a Role in the Infection of the Necrotrophic Fungi, Rhizoctonia solani in Wheat
Rhizoctonia solani is a nectrotrophic fungal pathogen that causes billions of dollars of damage to agriculture worldwide and infects a broad host range including wheat, rice, potato and legumes. In this study we identify wheat genes that are differentially expressed in response to the R. solani isolate, AG8, using microarray technology. A significant number of wheat genes identified in this screen were involved in reactive oxygen species (ROS) production and redox regulation. Levels of ROS species were increased in wheat root tissue following R. solani infection as determined by Nitro Blue Tetrazolium (NBT), 3,3'-diaminobenzidine (DAB) and titanium sulphate measurements. Pathogen/ROS related genes from R. solani were also tested for expression patterns upon wheat infection. TmpL, a R. solani gene homologous to a gene associated with ROS regulation in Alternaria brassicicola, and OAH, a R. solani gene homologous to oxaloacetate acetylhydrolase which has been shown to produce oxalic acid in Sclerotinia sclerotiorum, were highly induced in R. solani when infecting wheat. We speculate that the interplay between the wheat and R. solani ROS generating proteins may be important for determining the outcome of the wheat/R. solani interaction
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