首页> 外文期刊>Scientific reports. >Inheritance of fruit yield and quality in melon (Cucumis melo L.) grown under field salinity stress
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Inheritance of fruit yield and quality in melon (Cucumis melo L.) grown under field salinity stress

机译:田间盐分胁迫下甜瓜(Cucumis melo L.)果实产量和品质的遗传

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摘要

Cultivation of salinity-tolerant crops can help mitigate salinization threats to soil and fresh water resources. This study was conducted to investigate the quantitative genetic basis of yield, yield components, and quality-related traits of salinity-stressed melon (Cucumis melo L.) using 55 melon hybrids and their 11 parents (half diallel). The results of combined ANOVA revealed highly significant effects of salinity and genotype on all the traits studied. Salinity stress influenced the inheritance of all the traits. The lower values of variance components (mainly additive), GCA/SCA ratio, as well as broad- and narrow-sense heritabilities were estimated for saline conditions (ECsubW/sub?=?14 dSmsup-1/sup) when compared with those obtained under non-saline conditions. Fruit weight was governed by additive effects in non-saline conditions, but largely governed by the dominant nature in saline conditions. Based on the results obtained, especially as reflected by fruit yield, it is possible to develop melon hybrids with higher salinity tolerance than is currently observed in tolerant cultivars. On the other hand, most of the traits contributing to fruit quality are found to be governed by additive effects, allowing for their further improvement through recurrent selection to develop new cultivars of high yield and good quality for cultivation under saline conditions.
机译:耐盐碱作物的种植可以帮助减轻对土壤和淡水资源的盐碱化威胁。进行了这项研究,以调查使用55个甜瓜杂种及其11个亲本(半透析)的盐度胁迫甜瓜(Cucumis melo L.)的产量,产量组成和与品质相关的性状的定量遗传基础。组合方差分析的结果表明盐度和基因型对所有研究的性状均具有高度显着的影响。盐分胁迫影响所有性状的遗传。对于盐分条件,估计了方差分量(主要是累加的),GCA / SCA比以及广义和狭义遗传力的较低值(EC W ?=?14 dSm - 1 )与在非盐条件下获得的结果进行比较。在非盐碱条件下,果实重量受累加效应控制,但在盐碱条件下,果实重量主要由显性控制。基于所获得的结果,特别是如水果产量所反映的,可以开发出比目前在耐性品种中观察到的耐盐性更高的瓜杂种。另一方面,发现大多数影响果实品质的性状受累加效应的控制,可以通过反复选择使其进一步改良,从而开发出高产,优质的新品种,以便在盐条件下进行栽培。

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