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首页> 外文期刊>Field Crops Research >Variability of root length density and its contributions to seed yield in chickpea (Cicer arietinum L.) under terminal drought stress.
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Variability of root length density and its contributions to seed yield in chickpea (Cicer arietinum L.) under terminal drought stress.

机译:终末干旱胁迫下鹰嘴豆(Cicer arietinum L.)的根长密度变化及其对种子产量的贡献。

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摘要

The importance of root systems in acquiring water has long been recognized as crucial to cope with drought conditions. This investigation was conducted to: (i) evaluate the variability on root length density (RLD) of chickpea in the vegetative growth stage; (ii) estimate the effect of RLD on seed yield under terminal drought conditions; and (iii) set up a procedure to facilitate the screening of chickpea genotypes with large RLD. Twelve diverse chickpea genotypes were grown in tall PVC cylinders with two different soil water treatments in 2000 and 2001, and in field under water deficit conditions during 2000/2001 and 2001/2002. In field trials, the mean RLD at 35 days after sowing showed a significant positive correlation with seed yield in both years. Similarly, the RLD in the 15-30 cm soil depth had significant positive effects to the seed yield in both years. The importance of the root trait was particularly relevant in 2001/2002, a more severe drought year, when the RLD in deeper soil layer, 30-60 cm depth, showed a significant positive relationship with seed yield. Also, the RLD at deeper soil layer, 30-60 cm depth, was higher in 2001/2002 than in 2000/2001, in particular in tolerant genotypes. The PVC cylinder trials were set up to facilitate the screening of chickpea genotypes with large RLD. RLD of plants grown in cylinders with 70% field capacity was correlated with RLD in the field trials (r=0.731; p=0.01). This work highlights the importance of roots in coping with terminal drought in chickpea. The cylinder system offers a much easier procedure to screen chickpea genotypes with large RLD..
机译:长期以来,人们一直认为根系对获取水的重要性对于应对干旱条件至关重要。进行该调查以:(i)评价营养生长阶段鹰嘴豆根长密度(RLD)的变异性; (ii)评估干旱极端条件下RLD对种子产量的影响; (iii)建立程序以促进对具有较大RLD的鹰嘴豆基因型的筛选。在2000年和2001年,在两种不同土壤水处理条件下的高PVC圆筒中种植了十二种不同的鹰嘴豆基因型,并在2000/2001年和2001/2002年的缺水条件下在田间种植。在田间试验中,播种后第35天的平均RLD与这两年的种子产量均呈显着正相关。同样,在两年中,在15-30厘米土壤深度的RLD对种子产量都有明显的积极影响。根性状的重要性在2001/2002年尤为重要,2001/2002年是干旱更严重的年份,当土壤深层30-60 cm的RLD与种子产量呈显着正相关。同样,在更深的土壤层(30-60厘米深),RLD在2001/2002年高于2000/2001年,特别是在耐性基因型方面。进行了PVC圆柱试验,以方便筛选具有较大RLD的鹰嘴豆基因型。在田间试验中,在具有70%田间生产能力的圆筒中生长的植物的RLD与田间试验的RLD相关(r = 0.731; p = 0.01)。这项工作强调了根在应对鹰嘴豆终末干旱中的重要性。圆柱系统为筛查具有较大RLD的鹰嘴豆基因型提供了更为简单的程序。

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