蛇瓜数量性状配合力研究(英文)

M. S. Islam, MM Rahman, M. Zakaria, M. Hoque, M. Hasan
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摘要

本研究以7个不同基因型(TC 01、TC 05、TC 24、TC 33、TC 02、TC 46和TC 53)的蛇瓜为亲本,于2019年3 - 6月在Bangabandhu Sheikh Mujibur Rahman农业大学(BSMRAU)以7 × 7半双列杂交方式进行RCBD 3个重复的21个杂交。研究的目的是确定果实产量及其相关性状(包括果实品质性状)的一般配合力(GCA)和特定配合力(SCA)。14个性状的一般预测比(GPR)均大于0.5(50%),说明加性基因效应优于非加性基因效应。对19个数量性状的GCA估计表明,P2和P6基因型在促进早熟性以及其他大多数重要性状(单株果数、单株果重和单株果产量/公顷)方面是较好的一般组合;P2和P6分别在果长和果径方面表现较好,P4在主藤长和主藤节数方面表现较好,P3在果长和百粒重方面表现较好,P5在单果重和果长等方面表现较好,P1在蝇害较少方面表现较好。在果实产量、品质和产量组成方面最有潜力的组合是P1 × P2、P1 × P3、P1 × P4、P1 × P7、P2 × P3、P2 × P5、P2 × P6、P2 × P7、P3 × P7、P4 × P5、P4 × P6、P4 × P7和P5 × P7这13个组合。13个组合中只有P1 × P2和P2 × P6两个组合均具有良好的一般组合亲本(高×高)。因此,这两个杂交品种可以通过系谱选择来改善各自的性状。其余11个在不同性状上表现出高SCA效应的杂交组合均来自不同类型GCA效应(高×中、高×低、中×低和低×低)的亲本。13个杂交组合的结果表明,加性×加性、加性×显性和/或显性×显性基因互作对相关性状的表达起遗传控制作用。孟加拉国J. Agril。Res. 46(4): 491-510, December 2021
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combining Ability of Quantitative Traits in Snake Gourd (Trichosanthes Cucumerina Var. Anguina)
The present study was carried out on snake gourd having seven diverse genotypes (TC 01, TC 05, TC 24, TC 33, TC 02, TC 46 and TC 53) used as parental lines and their 21 crosses generated from 7 × 7 half-diallel fashion at Bangabandhu Sheikh Mujibur Rahman Agricultural University (BSMRAU) during March to June 2019 following RCBD with three replications. The aim of the study was to determine general combining ability (GCA) and specific combining ability (SCA) for fruit yield and its related traits including fruit quality traits. General prediction ratio (GPR) of these 14 traits was greater than 0.5 (50%), indicating predominance of additive gene effects over non-additive gene effects. The estimates of GCA for 19 quantitative traits revealed that the genotypes P2 and P6 were good general combiners for promoting earliness as well as most other important characters viz., number of fruits/ plant, individual fruit weight and fruit yield/ plant/ hectare; P2 and P6 were also good for fruit length and fruit diameter, respectively whereas, P4 was good for main vine length and number of nodes on main vine while, P3 was superior for long fruit and 100-seed weight whereas, P5 was good for number of seeds/ fruit and P1 good for less fruit fly infestation including individual fruit weight and fruit length. The most promising specific combiners for fruit yield, quality and yield components were from the 13 crosses viz., P1 × P2, P1 × P3, P1 × P4, P1 × P7, P2 × P3, P2 × P5, P2 × P6, P2 × P7, P3 × P7, P4 × P5, P4 × P6, P4 × P7 and P5 × P7. Out of 13 crosses only two crosses namely, P1 × P2 and P2 × P6 had both the good general combiner parents (high × high). These two crosses were therefore, amenable for improvement of the respective traits through pedigree selection. Remaining 11 crosses displaying high SCA effects for different traits were observed to be derived from parents having various types of GCA effects (high × medium, high × low, medium × low and low × low). The results of 13 crosses therefore, indicate the operation of additive × additive, additive × dominant and/ or dominant × dominant gene interactions for the genetic control of expression of the relative traits. Bangladesh J. Agril. Res. 46(4): 491-510, December 2021
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