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在日本和马达加斯加缺磷田间条件下旱稻早期根系和地上部活力的QTL定位

QTL mapping for early root and shoot vigor of upland rice ( L.) under P deficient field conditions in Japan and Madagascar.

作者信息

Ranaivo Harisoa Nicole, Lam Dinh Thi, Ueda Yoshiaki, Pariasca Tanaka Juan, Takanashi Hideki, Ramanankaja Landiarimisa, Razafimbelo Tantely, Wissuwa Matthias

机构信息

Rice Research Department, National Center for Applied Research on Rural Development (FOFIFA), Antananarivo, Madagascar.

Crop, Livestock and Environment Division, Japan International Research Center for Agricultural Sciences (JIRCAS), Tsukuba, Japan.

出版信息

Front Plant Sci. 2022 Oct 24;13:1017419. doi: 10.3389/fpls.2022.1017419. eCollection 2022.

Abstract

Upland rice production is limited by the low phosphorus (P) availability of many highly weathered tropical soils and P deficiency is likely to become increasingly limiting in future drier climates because P mobility decreases sharply with soil moisture. Good seedling root development will be crucial to cope with the combined effects of low P and water availability. Upland rice genebank accession DJ123 was used as a donor for P efficiency and root vigor traits in a cross with inefficient local variety Nerica4 and a set of backcross lines were used to characterize the seedling stage response of upland rice to low P availability and to identify associated QTL in field trials in Japan and Madagascar. Ten QTL were detected for crown root number, root, shoot and total dry weight per plant in a highly P deficient field in Japan using the BCF generation. Of these, on chromosome 9 affected multiple traits, increasing root number, root weight and total biomass, whereas a neighboring QTL on chromosome 9 (2) increased shoot biomass. Field trials with derived BCF lines in a low-P field in Madagascar confirmed a highly influential region on chromosome 9. However, 2 appeared more influential than , as the shoot and root biomass contrast between lines carrying DJ123 or Nerica4 alleles at 2 was +23.8% and +13.5% compared to +19.2% and +14.4% at . This advantage increased further during the growing season, leading to 46% higher shoot biomass at the late vegetative stage. Results suggest an introgression between 8.0 and 12.9 Mb on chromosome 9 from P efficient donor DJ123 can improve plant performance under P-limited conditions. The QTL identified here have practical relevance because they were confirmed in the target genetic background of the local variety Nerica4 and can therefore be applied directly to improve its performance.

摘要

旱稻生产受到许多高度风化的热带土壤中低磷有效性的限制,并且在未来更干燥的气候条件下,磷缺乏可能会越来越成为限制因素,因为磷的移动性会随着土壤湿度的急剧下降而大大降低。良好的幼苗根系发育对于应对低磷和水分有效性的综合影响至关重要。旱稻基因库种质DJ123被用作磷效率和根系活力性状的供体,与低效的当地品种Nerica4进行杂交,并使用一组回交系来表征旱稻在低磷有效性条件下的苗期反应,并在日本和马达加斯加的田间试验中鉴定相关的数量性状位点(QTL)。在日本一个高度缺磷的田间,利用回交一代(BCF)检测到了与冠根数、单株根干重、地上部干重和总干重相关的10个QTL。其中,位于第9号染色体上的一个QTL影响多个性状,增加了根数、根重和总生物量,而第9号染色体上相邻的一个QTL(2)增加了地上部生物量。在马达加斯加一个低磷田间对衍生的BCF系进行的田间试验证实了第9号染色体上一个具有高度影响力的区域。然而,QTL 2似乎比QTL 1更具影响力,因为在QTL 2处携带DJ123或Nerica4等位基因的株系之间地上部和根系生物量的差异分别为+23.8%和+13.5%,而在QTL 1处分别为+19.2%和+14.4%。在生长季节,这种优势进一步增加,导致营养生长后期地上部生物量高出46%。结果表明,从磷高效供体DJ123导入第9号染色体上8.0至12.9兆碱基之间的片段可以改善磷限制条件下的植株表现。这里鉴定出的QTL具有实际意义,因为它们在当地品种Nerica4的目标遗传背景中得到了证实,因此可以直接应用于提高其性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8478/9637880/84ffbee6dc95/fpls-13-1017419-g001.jpg

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