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在温室和田间环境中鉴定出的鹰嘴豆新型耐盐位点。

Novel Salinity Tolerance Loci in Chickpea Identified in Glasshouse and Field Environments.

作者信息

Atieno Judith, Colmer Timothy D, Taylor Julian, Li Yongle, Quealy John, Kotula Lukasz, Nicol Dion, Nguyen Duong T, Brien Chris, Langridge Peter, Croser Janine, Hayes Julie E, Sutton Tim

机构信息

South Australian Research and Development Institute, Adelaide, SA, Australia.

School of Agriculture, Food and Wine, University of Adelaide, Adelaide, SA, Australia.

出版信息

Front Plant Sci. 2021 Apr 28;12:667910. doi: 10.3389/fpls.2021.667910. eCollection 2021.

Abstract

A better understanding of the genetics of salinity tolerance in chickpea would enable breeding of salt tolerant varieties, offering potential to expand chickpea production to marginal, salinity-affected areas. A Recombinant Inbred Line population was developed using accelerated-Single Seed Descent of progeny from a cross between two chickpea varieties, Rupali (salt-sensitive) and Genesis836 (salt-tolerant). The population was screened for salinity tolerance using high-throughput image-based phenotyping in the glasshouse, in hydroponics, and across 2 years of field trials at Merredin, Western Australia. A genetic map was constructed from 628 unique DArT and SNP markers, spanning 963.5 cM. Markers linked to two flowering loci identified on linkage groups CaLG03 and CaLG05 were used as cofactors during genetic analysis to remove the confounding effects of flowering on salinity response. Forty-two QTL were linked to growth rate, yield, and yield component traits under both control and saline conditions, and leaf tissue ion accumulation under salt stress. Residuals from regressions fitting best linear unbiased predictions from saline conditions onto best linear unbiased predictions from control conditions provided a measure of salinity tolerance , independent of yield potential. Six QTL on CaLG04, CaLG05, and CaLG06 were associated with tolerance . In total, 21 QTL mapped to two distinct regions on CaLG04. The first distinct region controlled the number of filled pods, leaf necrosis, seed number, and seed yield specifically under salinity, and co-located with four QTL linked to salt tolerance . The second distinct region controlled 100-seed weight and growth-related traits, independent of salinity treatment. Positional cloning of the salinity tolerance-specific loci on CaLG04, CaLG05, and CaLG06 will improve our understanding of the key determinants of salinity tolerance in chickpea.

摘要

深入了解鹰嘴豆耐盐性的遗传学特性,将有助于培育耐盐品种,从而有可能将鹰嘴豆的种植范围扩大到受盐度影响的边缘地区。利用加速单粒传法,从两个鹰嘴豆品种Rupali(盐敏感型)和Genesis836(耐盐型)的杂交后代中培育出一个重组自交系群体。在温室、水培条件下以及在西澳大利亚州梅勒丁进行的为期两年的田间试验中,使用基于高通量图像的表型分析方法对该群体的耐盐性进行了筛选。利用628个独特的DArT和SNP标记构建了一张遗传图谱,覆盖963.5厘摩。与在连锁群CaLG03和CaLG05上鉴定出的两个开花位点相关的标记,在遗传分析过程中用作辅助因子,以消除开花对盐度响应的混杂影响。在对照和盐胁迫条件下,42个数量性状位点与生长速率、产量及产量构成性状相关,以及与盐胁迫下叶片组织离子积累相关。将盐胁迫条件下的最佳线性无偏预测值对对照条件下的最佳线性无偏预测值进行回归分析所得的残差,提供了一种独立于产量潜力的耐盐性度量方法。在CaLG04、CaLG05和CaLG06上的6个数量性状位点与耐盐性相关。总共有21个数量性状位点定位到CaLG04上的两个不同区域。第一个不同区域专门控制盐胁迫下的饱粒荚数、叶片坏死、种子数和种子产量,并且与4个与耐盐性相关的数量性状位点共定位。第二个不同区域控制百粒重和与生长相关的性状,与盐度处理无关。对CaLG04、CaLG05和CaLG06上耐盐性特异性位点进行定位克隆,将有助于我们更好地理解鹰嘴豆耐盐性的关键决定因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3c1/8113763/091382947266/fpls-12-667910-g0001.jpg

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