首页> 外文期刊>Field Crops Research >Multivariate approach to identify and characterize bread wheat (Triticum aestivum) germplasm for waterlogging tolerance in India
【24h】

Multivariate approach to identify and characterize bread wheat (Triticum aestivum) germplasm for waterlogging tolerance in India

机译:鉴定和表征面包小麦(Triticum aestivum)种质在印度涝耐力的面包小麦(Triticum aestivum)种质的多变量方法

获取原文
获取原文并翻译 | 示例
           

摘要

An experiment was conducted for evaluating the performance of 149 elite Indian and Australian germplasm lines under normal and waterlogged soil conditions over two years (2014-15 and 2015-16), revealed significant differences for all the studied traits under waterlogged as well as under normal soil conditions. Waterlogging adversely affected thousand kernel weight, tillers per meter, biological yield and grain yield. The three morphological traits namely; biological yield, tillers per meter and plant height significantly contributed towards waterlogging tolerance. The geometric mean productivity (GMP), harmonic mean (HM), stress tolerance index (STI), mean productivity (MP) and mean relative performance (MRP), were significantly and positively correlated with grain yield under waterlogged (Ys) as well as under normal soil conditions (Yp). Whereas, yield stability index (YSI) was found positively correlated with grain yield only under waterlogged soil conditions (Ys) in both years as well as over the years. Besides, GMP, HM, MP, MRP and STI were also significantly correlated with each other in individual year as well as across years, indicating thereby that any one of these parameters might be used as an alternative option to each other for selecting high yielding genotypes under both the conditions (waterlogging and normal). The promising lines identified based on GMP, STI, MP, HM and MRP could also be rated as tolerant being high yielding particularly for waterlogging condition. The two parameters (YSI and reduction percentage) identified as effective selection indices clearly discriminated the per se performance of genotypes based on stable performance under waterlogged conditions, and thus these could be used an indicative approach of gennplasm lines possessing waterlogging tolerance genes. The correlation values also supported results and indicated strong association of biological yield with yield stability index. The germplasm lines namely; UP 2584, TINCURRIN, SSD-C2-172, SSD-C2-151, SSD-C2 204, SSD-C2 140, RW 3684, NW 4098, KRL 105, K 307, HD 3086, HD 2329, DUCULA 4 and CUNDERIN were identified to be capable of producing highest biomass and also higher values for YSI among all lines taken for this study. Based on both YSI and biological yield, lines CUNDERIN, DUCULA 4, HD 3086, KRI, 105 and RW 3684 were identified to as tolerant and could be utilized as potential donor for increasing waterlogging tolerance of future wheat genotypes. Our research findings also imply that tolerant lines eventually would lead to higher productivity under stress situations, where heavy rainfall and stagnation of water for a prolonged period adversely affect the wheat crop. The results of the present study based on field screening technique and the selection criteria based upon indices will be rewarding for increasing grain yield of wheat under such harsh environments.
机译:进行了一个实验,用于评估249个Elite印度和澳大利亚种质系列在两年内(2014-15和2015-16)的正常和涝渍土壤条件下的性能,揭示了对涝渍和正常的所有研究性状的显着差异土壤条件。 Waterlogging不利地影响了千粒重量,分蘖每米,生物产量和谷物产量。三种形态特征即;生物产量,每米分蘖和植物高度显着促进耐涝性。几何平均生产率(GMP),谐波平均值(HM),应力耐受性指数(STI),平均生产率(MP)和平均相对性能(MRP),与涝渍(YS)下的籽粒产量呈正相关,以及在正常土壤条件下(yp)。然而,发现产量稳定性指数(YSI)在多年来的含水土壤条件(ys)下,谷物产量呈正相关。此外,GMP,HM,MP,MRP和STI在个别年内也与彼此显着相关,并且在多年中,表明这些参数中的任何一种都可以用作彼此的替代选择,以选择高产生基因型在条件下(涝渍和正常)。基于GMP,STI,MP,HM和MRP鉴定的有希望的线也可以额定受耐受性的耐受性,特别是对于涝渍条件。识别为有效选择指标的两个参数(YSI和减少百分比)明确区分了基因型的基因型的SE性能,基于耐涝条件下的稳定性能,因此可以使用具有涝耐受基因的Gennplasm线的指示性方法。相关值还支持结果,并表明具有产量稳定性指数的生物产量强烈关联。种质线条是; Up 2584,Tincurrin,SSD-C2-172,SSD-C2-151,SSD-C2 204,SSD-C2140,RW 3684,NW 4098,KRL 105,K 307,HD 3086,HD 2329,DECULA 4和CURDIN鉴定能够产生最高生物量,并且在本研究所采取的所有线条中产生ysi的较高值。基于YSI和生物屈服,鉴定为耐受线,杜克丁4,HD 3086,KRI,105和RW 3684,可作为耐受性,并且可以用作潜在的供体,以增加未来小麦基因型的耐水涝耐受性。我们的研究发现还暗示,宽容的线条最终会导致压力情况下的更高的生产力,其中延长时间的大雨和水停滞不可不利地影响小麦作物。基于现场筛查技术的本研究结果及基于指数的选择标准将奖励在这种恶劣环境下增加小麦的谷物产量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号