- Forest and agricultural land change in the Carpathian region—A meta-analysis of long-term patterns and drivers of change. Collapse of socialism bad for agriculture, good for forests. At the level of cover anyway, who knows what’s happened to diversity.
- Closing yield gaps: perils and possibilities for biodiversity conservation. Better yields potentially good for birds, but everyone needs to work together.
- The Wild Genepool of Pigeonpea at ICRISAT Genebank-Status and Distribution. There are still some gaps.
- Meddling Wheat Germplasm to Augment Grain Protein Content and Grain Yield. I just love that title.
- Interkingdom transfer of the acne causing agent, Propionibacterium acnes, from human to grapevine. First time ever, apparently, that a human pathogen attacks a crop. But do I have to start worrying about wine?
- Discrimination and genetic diversity of cultivated and wild safflowers (Carthamus spp.) using EST-microsatellites markers. C. palestinus is the closest.
- New evidence on the origin of mangosteen (Garcinia mangostana L.) based on morphology and ITS sequence. Not an interspecific hybrid after all.
- Knowledge gaps and research needs concerning agroforestry’s contribution to Sustainable Development Goals in Africa. Can agroforestry concepts and practices form an effective, efficient and fair pathway towards the achievement of many Sustainable Development Goals? Yes, but only if governance of food production is multi-sectoral and system-based.
- History, structure, and genetic diversity of Brazilian Gir cattle. Diversity is not as restricted as might be feared, so it can probably take a breeding programme with high selection intensity.
Brainfood: Intercropping, Biodiversity loss, Fisheries evolution, Pigeonpea diversity, Upland framing, Alpine agroforestry, Italian core tomatoes, Madagascar adaptation
- Is there an associational resistance of winter pea–durum wheat intercrops towards Acyrthosiphon pisum Harris? Yep. Which is important for organic systems, apparently, because they are martyrs to this aphid.
- Interactions between climate change and land use change on biodiversity: attribution problems, risks, and opportunities. Interactions make things complicated, but fortunately there are some pretty simple things you can do that address multiple drivers of biodiversity loss. Including for crop wild relatives?
- What can selection experiments teach us about fisheries-induced evolution? Harvesting can lead to rapid genetic change and lower fisheries yields.
- Genetic Diversity and Demographic History of Cajanus spp. Illustrated from Genome-Wide SNPs. Asia species different to Australian. Madhya Pradesh and Andhra Pradesh centres of origin and domestication. More diversity within populations and landraces than between states.
- Mixed Grazing Systems Benefit both Upland Biodiversity and Livestock Production. Livestock grazing management on upland farms influences economic outputs, biodiversity and greenhouse gas emissions, all at once. Mixed upland grazing systems consisting of sheep and cattle is your win-win-win. Heirloom breeds no help, alas. Because they don’t count as biodiversity, I guess.
- What plant traits tell us: Consequences of land-use change of a traditional agro-forest system on biodiversity and ecosystem service provision. Both abandonment and intensification of traditionally managed larch agroforestry in the Alps are bad.
- Genetic diversity in Italian tomato landraces: Implications for the development of a core collection. You may need up to 25% of a southern Italian collection of open-pollinated tomato landraces to get a decent core. But since the collection is only 75 landraces anyway…
- Extreme vulnerability of smallholder farmers to agricultural risks and climate change in Madagascar. Main coping strategy seems to be eating less food. And moving from rice to cassava, beans and wild yams. Scary.
Nibbles: Seed law, Bananas, Crop wild relatives, Wheat diversity, Seed libraries
- People are ready with their reactions to the Great EU Seed Law Thing.
- Bananas seem ready once again for their decadal extinction story.
- Those nice people saving crop wild relatives are ready with a new Twitter account to follow.
- The wheat diversity of Nepal will soon be ready for science.
- And The Boston Globe is ready with its own story about seed libraries.
Crop Trust speaks
Ready for your close-up?
Brainfood: Sturgeon semen, Wheat biofortification, Wild barley future, Pest numbers, Wild potatoes, Mishan pig drift, Microbial models, Paspalum genomics, Chinese peanuts
- Improvement in wild endangered Persian sturgeon, Acipenser persicus (Borodin, 1897) semen cryopreservation by 2-hydroxypropyl-beta-cyclodextrin (HβCD). Hey, stop sniggering, it’s good to know there’s an ex situ option.
- Biofortification of wheat grain with iron and zinc: integrating novel genomic resources and knowledge from model crops. Your jetpack is here, sir.
- Genetic Diversity and Ecological Niche Modelling of Wild Barley: Refugia, Large-Scale Post-LGM Range Expansion and Limited Mid-Future Climate Threats? As ever, the answer is yes.
- Economic and physical determinants of the global distributions of crop pests and pathogens. More crops, more pests, but not as many as there would be if more money were available for observation.
- Wild potato species (Solanum section Petota Solanaceae) in the Tunari National Park, Andean Region of Cochabamba, Bolivia. Four species, but not very morphologically variable.
- Impact of Genetic Drift on Access and Benefit Sharing Under the Nagoya Protocol: The Case of the Meishan Pig. Current Meishan pigs in the US have become differentiated from the ones originally imported from China in the 1980s.
- Investment into the future of microbial resources: culture collection funding models and BRC business plans for biological resource centres. Services must include capacity building and the promotion of links to research collections and users. That can’t be done on basis of full cost recovery from sales. Will need a combination of government, commercial and project support. Can crop collections learn anything from this?
- Gene Discovery and Molecular Marker Development, Based on High-Throughput Transcript Sequencing of Paspalum dilatatum Poir. Important forage grown in apomictic monoculture now has genomic resources that should allow better breeding. And perhaps some diversification.
- Genetic Diversity and Population Structure of the Major Peanut (Arachis hypogaea L.) Cultivars Grown in China by SSR Markers. The northern cultivars are different to the southern.