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龙爪稷(Eleusine coracana L. Gaertn.)种质微型核心收集品耐盐性的变异程度。

The extent of variation in salinity tolerance of the minicore collection of finger millet (Eleusine coracana L. Gaertn.) germplasm.

作者信息

Krishnamurthy Lakshmanan, Upadhyaya Hari Deo, Purushothaman Ramamoorthy, Gowda Cholenahalli Lakkegowda Laxmipathi, Kashiwagi Junichi, Dwivedi Sangam Lal, Singh Sube, Vadez Vincent

机构信息

International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Patancheru 502 324, Andhra Pradesh, India.

International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Patancheru 502 324, Andhra Pradesh, India.

出版信息

Plant Sci. 2014 Oct;227:51-9. doi: 10.1016/j.plantsci.2014.07.001. Epub 2014 Jul 8.

Abstract

Finger millet (Eleusine coracana L. Gaertn.) ranks third in production among the dry land cereals. It is widely cultivated in Africa and South Asia where soil salinization is a major production constraint. It is a potential crop for salt affected soils. To identify salt tolerant germplasm, the minicore finger millet germplasm (n=80) was screened for grain yield performance in a soil saturated with NaCl solution of 100 or 125mM. Genotype effect was significant for most traits, while salinity×genotype interaction was significant only in one year. Salinity delayed phenology, marginally reduced shoot biomass and grain yield. There was a large range of genotypic variation in grain yield under salinity and other traits. The yield loss was higher in accessions with prolific growth and yield potential was associated with saline yields. Based on saline yields, accessions were grouped in to four groups and the top tolerant group had 22 accessions with IE 4797 remaining at the top. Salinity had no adverse impact on grain yield of five accessions. Root anatomy in selected genotype of pearl and finger millet showed presence of porous cortex and well fortified endodermis in finger millet that can exclude Na(+) and enhance N absorption.

摘要

龙爪稷(Eleusine coracana L. Gaertn.)在旱地谷物产量中排名第三。它在非洲和南亚广泛种植,而土壤盐渍化是这些地区主要的生产限制因素。它是一种适合盐渍化土壤种植的潜在作物。为了鉴定耐盐种质,对80份龙爪稷微型核心种质在100或125mM氯化钠溶液饱和的土壤中进行了籽粒产量性能筛选。大多数性状的基因型效应显著,而盐分×基因型互作仅在一年中显著。盐分延迟了物候期,略微降低了地上部生物量和籽粒产量。在盐分条件下,籽粒产量和其他性状存在很大的基因型变异。生长繁茂的种质产量损失较高,产量潜力与盐渍条件下的产量相关。根据盐渍条件下的产量,将种质分为四组,耐盐性最强的一组有22份种质,其中IE 4797排名第一。盐分对5份种质的籽粒产量没有不利影响。对珍珠粟和龙爪稷选定基因型的根系解剖显示,龙爪稷存在多孔皮层和强化良好的内皮层,能够排除Na(+)并增强氮吸收。

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