Thirkell Tom J, Grimmer Mike, James Lucy, Pastok Daria, Allary Théa, Elliott Ashleigh, Paveley Neil, Daniell Tim, Field Katie J
Plants, Photosynthesis and Soil School of Biosciences University of Sheffield Sheffield UK.
ADAS Boxworth Cambridge UK.
Food Energy Secur. 2022 May;11(2):e370. doi: 10.1002/fes3.370. Epub 2022 Feb 14.
All cereal crops engage in arbuscular mycorrhizal symbioses which can have profound, but sometimes deleterious, effects on plant nutrient acquisition and growth. The mechanisms underlying variable mycorrhizal responsiveness in cereals are not well characterised or understood. Adapting crops to realise mycorrhizal benefits could reduce fertiliser requirements and improve crop nutrition where fertiliser is unavailable. We conducted a phenotype screen in wheat ( L.), using 99 lines of an Avalon × Cadenza doubled-haploid mapping population. Plants were grown with or without a mixed inoculum containing 5 species of arbuscular mycorrhizal fungi. Plant growth, nutrition and mycorrhizal colonisation were quantified. Plant growth response to inoculation was remarkably varied among lines, ranging from more than 30% decrease to 80% increase in shoot biomass. Mycorrhizal plants did not suffer decreasing shoot phosphorus concentration with increasing biomass as observed in their non-mycorrhizal counterparts. The extent to which mycorrhizal inoculation was beneficial for individual lines was negatively correlated with shoot biomass in the non-mycorrhizal state but was not correlated with the extent of mycorrhizal colonisation of roots. Highly variable mycorrhizal responsiveness among closely related wheat lines and the identification of several QTL for these traits suggests the potential to breed for improved crop-mycorrhizal symbiosis.
所有谷类作物都会形成丛枝菌根共生关系,这种关系对植物养分获取和生长可能产生深远影响,但有时也会产生有害影响。谷类作物中菌根反应性变化的潜在机制尚未得到充分表征或理解。使作物适应以实现菌根益处可以减少肥料需求,并在无法获得肥料的情况下改善作物营养状况。我们使用99个Avalon×Cadenza双单倍体作图群体品系,对小麦(L.)进行了表型筛选。将植物种植在有或没有包含5种丛枝菌根真菌的混合接种物的环境中。对植物生长、营养状况和菌根定殖情况进行了量化。不同品系间,接种对植物生长的反应差异显著,地上部生物量减少超过30%至增加80%不等。与未接种菌根的对应植株不同,接种菌根的植株地上部磷浓度并未随着生物量增加而降低。接种菌根对各个品系的有益程度与非菌根状态下的地上部生物量呈负相关,但与根部菌根定殖程度无关。亲缘关系相近的小麦品系间菌根反应性高度可变,并且鉴定出了这些性状的几个数量性状位点,这表明培育改善作物-菌根共生关系的品种具有潜力。