Journal of Experimental Botany · 2019 · 46 citations · 31 references
BiologyPlant BiologyQuinolizidine AlkaloidsDevelopmental BiologyBotanyMedicineGeneticsNatural SciencesSitu BiosynthesisGenetic VariationNarrow-leafed LupinGenomicsBitter NllPhytochemicalPhytochemistryPharmacologyPlant HormonePlant Physiology
Narrow-leafed lupin (NLL, Lupinus angustifolius) is a promising legume crop that produces seeds with very high protein content. However, NLL accumulates toxic quinolizidine alkaloids (QAs) in most of its tissues, including the seeds. To determine the level of in situ biosynthesis in the seeds, we compared the accumulation of QAs with the expression of the biosynthetic gene lysine decarboxylase (LDC) in developing seeds and pods of a bitter (high-QA) variety of NLL. While QAs accumulated steadily in seeds until the drying phase, LDC expression was comparatively very low throughout seed development. In contrast, both QA accumulation and LDC expression peaked early in pods and decreased subsequently, reaching background levels at the onset of drying. We complemented these studies with MS imaging, which revealed the distribution patterns of individual QAs in cross-sections of pods and seeds. Finally, we show that a paternal bitter genotype does not influence the QA levels of F1 seeds grown on a maternal, low-QA genotype. We conclude that the accumulation of QAs in seeds of bitter NLL is mostly, if not exclusively, transported from other tissues. These results open the possibility of using transport engineering to generate herbivore-resistant bitter NLL varieties that produce QA-free seeds.
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Guillaume Robichaud, Kenneth P. Garrard, Jeremy A. Barry et al. · Journal of the American Society for Mass Spectrometry · 2013 · 396 citations · Full text
The future of lupin as a protein crop in Europe
M. Mercedes Lucas, Frederick L. Stoddard, Paolo Annicchiarico et al. · Frontiers in Plant Science · 2015 · 302 citations · Full text
Nutrition, Engineering, Genetics +16