首页> 美国卫生研究院文献>Annals of Botany >High-throughput phenotyping (HTP) identifies seedling root traits linked to variation in seed yield and nutrient capture in field-grown oilseed rape (Brassica napus L.)
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High-throughput phenotyping (HTP) identifies seedling root traits linked to variation in seed yield and nutrient capture in field-grown oilseed rape (Brassica napus L.)

机译:高通量表型(HTP)可以识别与田间种植油菜(Brassica napus L.)的种子产量和养分吸收变化相关的幼苗根系性状

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摘要

>Background and Aims Root traits can be selected for crop improvement. Techniques such as soil excavations can be used to screen root traits in the field, but are limited to genotypes that are well-adapted to field conditions. The aim of this study was to compare a low-cost, high-throughput root phenotyping (HTP) technique in a controlled environment with field performance, using oilseed rape (OSR; Brassica napus) varieties.>Methods Primary root length (PRL), lateral root length and lateral root density (LRD) were measured on 14-d-old seedlings of elite OSR varieties (n = 32) using a ‘pouch and wick’ HTP system (∼40 replicates). Six field experiments were conducted using the same varieties at two UK sites each year for 3 years. Plants were excavated at the 6- to 8-leaf stage for general vigour assessments of roots and shoots in all six experiments, and final seed yield was determined. Leaves were sampled for mineral composition from one of the field experiments.>Key Results Seedling PRL in the HTP system correlated with seed yield in four out of six (r = 0·50, 0·50, 0·33, 0·49; P < 0·05) and with emergence in three out of five (r = 0·59, 0·22, 0·49; P < 0·05) field experiments. Seedling LRD correlated positively with leaf concentrations of some minerals, e.g. calcium (r = 0·46; P < 0·01) and zinc (r = 0·58; P < 0·001), but did not correlate with emergence, general early vigour or yield in the field.>Conclusions Associations between PRL and field performance are generally related to early vigour. These root traits might therefore be of limited additional selection value, given that vigour can be measured easily on shoots/canopies. In contrast, LRD cannot be assessed easily in the field and, if LRD can improve nutrient uptake, then it may be possible to use HTP systems to screen this trait in both elite and more genetically diverse, non-field-adapted OSR.
机译:可以选择>背景和目标来改善作物的根系性状。诸如土壤发掘的技术可用于筛选田间的根系性状,但仅限于适应田间条件的基因型。这项研究的目的是比较使用油菜(OSR;甘蓝型油菜)品种在受控环境下具有田间表现的低成本,高通量根系表型(HTP)技术。>方法根长(PRL),侧根长和侧根密度(LRD)是使用“袋装和灯芯” HTP系统(约40个重复)在14天大的OSR优良品种(n = 32)上测量的。每年在两个英国站点使用相同品种进行六个田间试验,为期三年。在所有6个实验中,在6到8片叶阶段开挖植物,以便对根和茎进行一般活力评估,并确定最终的种子产量。 >关键结果:HTP系统中的幼苗PRL与六分之四的种子产量相关(r = 0·50、0·50、0· 33,0·49; P <0·05)和五分之三的出现(r = 0·59,0·22,0·49; P <0·05)。幼苗的LRD与某些矿物质的叶片浓度呈正相关,例如钙(r = 0·46; P <0·01)和锌(r = 0·58; P <0·001),但与田间出苗,一般早期活力或产量无关。>结论 PRL和现场绩效之间的关联通常与早期精力旺盛有关。鉴于可以容易地在枝条/冠层上测量活力,因此这些根性状可能具有有限的附加选择价值。相反,在野外不能轻易评估LRD,如果LRD可以改善养分吸收,那么有可能使用HTP系统在精英人群和遗传多样性更高的非田间适应性OSR中筛选该性状。

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