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Can the exceptional chilling tolerance of C4 photosynthesis found in Miscanthus × giganteus be exceeded? Screening of a novel Miscanthus Japanese germplasm collection

机译:是否可以超过在芒草(Miscanthus×giganteus)中发现的C4光合作用的出色耐寒性?新型芒草日本种质资源的筛选

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摘要

>Background and Aims A clone of the hybrid perennial C4 grass Miscanthus × giganteus (Mxg) is known for achieving exceptionally high rates of leaf CO2 uptake during chilling. This is a requisite of success in the early spring, as is the ability of the leaves to survive occasional frosts. The aim of this study was to search for genotypes with greater potential than Mxg for photosynthesis and frost survival under these conditions.>Methods A total of 864 accessions representing 164 local populations of M. sacchariflorus (Msa), M. sinensis (Msi) and M. tinctorius (Mti) collected across Japan were studied. Accessions whose leaves survived a natural late frost in the field were screened for high maximum photosystem II efficiency (Fv/Fm) following chilling weather, as an indicator of their capacity for light-limited photosynthesis. Those showing the highest Fv/Fm were transferred to a high-light-controlled environment and maintained at chilling temperatures, where they were further screened for their capacities for high-light-limited and light-saturated leaf uptake of CO2 (ΦCO2,max and Asat, respectively).>Key Results For the first time, relatives of Mxg with significantly superior capacities for photosynthesis at chilling temperatures were identified. Msa accession ‘73/2’ developed leaves in the spring that survived night-time frost, and during growth under chilling maintained a statistically significant 79 % higher ΦCO2,max, as a measure of light-limited photosynthesis, and a 70 % higher Asat, as a measure of light-saturated photosynthesis. A second Msa accession, ‘73/3’ also showed significantly higher rates of leaf uptake of CO2.>Conclusions As remarkable as Mxg has proved in its chilling tolerance of C4 photosynthesis, this study shows that there is still value and potential in searching for yet more superior tolerance. Msa accession ‘73/2’ shows rates of light-limited and light-saturated photosynthesis at chilling temperatures that are comparable with those of the most cold-tolerant C3 species. This adds further proof to the thesis that C4 photosynthesis is not inherently limited to warm climates.
机译:>背景和目的:多年生C4杂草芒草×硕大杂草(Mxg)的一个克隆因在冷藏过程中获得很高的叶片二氧化碳吸收率而闻名。这是早春取得成功的必要条件,叶子能够承受偶尔的霜冻。这项研究的目的是寻找在这些条件下光合作用和霜冻存活潜力比Mxg大的基因型。>方法共有864个种,代表了164个糖化M. sacchariflorus(Msa),M研究了在日本各地收集的中华绒螯蟹(Msi)和丁香支原体(Mti)。在寒冷的天气后,筛选出叶片在大田中自然霜冻后仍能存活的种质,以获得最高的光系统II最高效率(Fv / Fm),以作为其光限光合作用能力的指标。 Fv / Fm最高的那些被转移到高光控制的环境中,并保持在寒冷的温度下,在此进一步筛选它们的高光限制和光饱和叶片吸收CO2的能力(ΦCO2,max和>主要结果首次确定了在寒冷温度下具有极高光合作用能力的Mxg亲戚。 Msa登录号'73 / 2'在春季发育,可在夜间霜冻条件下存活,并且在寒冷条件下生长期间,作为衡量光合作用的光合作用的指标,ΦCO2,max的统计上显着提高了79%,而Asat则提高了70% ,作为光饱和光合作用的量度。 Msa的第二个登录号'73 / 3'也显示了更高的叶片吸收CO2的速率。>结论尽管Mxg在其对C4光合作用的耐寒性方面得到了证明,但仍令人瞩目。价值和寻找更高耐受性的潜力。 Msa登录号“ 73/2”显示了在寒冷温度下光限制和光饱和的光合作用速率,与最耐寒的C3物种相当。这进一步证明了C4光合作用并非天生就局限于温暖的气候。

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