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Drought Resistance Indices for Screening of Potato (Solanum tuberosum L.) Genotypes

机译:筛选土豆筛选的抗旱指标(Solanum Tuberosum L.)基因型

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In breeding for drought tolerance, availability of precise, cheap and easy to apply selection tool is critical. The aim of the present study was to identify potential screening tools that are useful for selection of drought tolerant genotypes in potato and select drought resistant potato genotypes. The study assessed sixty clones arranged in a 10×6 alpha lattice design with two replicates in a managed stress experiment. Two irrigation treatments were applied: fully watered non-stress and terminal drought, where the irrigation water supply to the crop was withheld after 50 % flowering to induce post-flowering stress. Stress indices were calculated based on tuber yield of genotypes in both stressed and non-stressed conditions. Identification of drought tolerant genotypes based on a single index was less informative as different indices identified different genotypes as drought tolerant. Hence, to determine the most desirable drought tolerant clones rank sum of indices, correlation, and bi-plot display of the principal component analysis was employed. The indices modified stress tolerance index based on non-stressed yield, Men productivity, Geometric mean productivity, Stress tolerance index, Harmonic mean, modified stress tolerance index based on stressed yield and Yield index exhibited strong association with both yield under stressed and non-stressed yield. These indices discriminated drought tolerant genotypes with higher tuber yielding potential both under stress and non-stress conditions. Genotypes CIP-398180.612, CIP-397069.5, and CIP-304371.67 were identified as drought tolerant. These genotypes could be potentially grown both under drought prone and potential environments and these selection attributes could help to develop climate resilient potato varieties.
机译:在育种育种耐受性中,精确,便宜且易于应用的选择工具的可用性至关重要。本研究的目的是识别潜在的筛选工具,可用于在马铃薯中选择耐旱性基因型,并选择抗旱马铃薯基因型。该研究评估了10×6个α晶格设计中排列的六十克隆,在托管应力实验中有两种重复。应用了两种灌溉处理:完全浇水的非应力和末端干旱,其中在50%开花后扣留对作物的灌溉供水以诱导开花后应力。基于压力和非应激条件的基因型的块茎产量计算应力指数。基于单一指数的鉴定耐旱耐受基因型的鉴定不太有信息,因为不同的指标确定不同基因型作为耐旱性。因此,为了确定采用主成分分析的指数,相关性和双图显示的最理想的耐旱克隆等级。基于非胁迫产量的索引改性应力耐受性指数,男性生产率,几何平均生产率,基于应力产量和产量指数的谐波平均值,改性应力耐受指数表现出强烈的屈服和非应力下的产量强烈关联屈服。这些索引在应激和非应激条件下具有更高的块茎产生潜力的抗旱耐受性基因型。基因型CIP-398180.612,CIP-397069.5和CIP-304371.67被鉴定为耐旱性。这些基因型可能在干旱易于和潜在的环境下潜在地生长,这些选择属性可以帮助发展气候弹性马铃薯品种。

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