双交杂交种在产量、果实品质和对番茄卷曲叶病毒病的耐受性等方面均可显著取代单交杂交种

Q2 Agricultural and Biological Sciences
Sudipa Roy, Debmala Mukherjee, Subhra Pramanik, S. Islam, S. Banerjee, Subhashis Kundu, Tanmoy Ghosh, Sayani Ghosh, A. Maji, A. Mandal, A. Chattopadhyay, P. Hazra
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引用次数: 0

摘要

摘要商业上可买到的杂交种的重组可以产生理想的片段,作为番茄育种新等位基因的来源。以番茄(Solanum lycopersicum L.)的7个商品单交(SC)杂交种为材料,采用半双列杂交的方法,获得21个双交(DC)杂交种,对其果实产量、加工品质和番茄卷叶病毒(ToLCV)病害严重性等性状的配合力、基因作用方式和异生程度进行了评价。除果实中总可溶性固形物(TSS)含量受到加性和非加性基因作用的调节外,所有性状的对照均表现出非加性作用的优势。与SC杂交种相比,DC杂交种的大多数性状都有所改善。DC杂交种的最大异源效应是维生素C含量,其次是番茄红素含量、单株产量、可滴定酸度、单株果数和ToLCV的百病指数。根据综合配合力效应和平均性能,在SC杂交种中筛选出两个较好的组合剂“PAN-1286”和“Devi”。在热带和亚热带进行多点试验后,对DC杂交种‘TO-1458×L-37’和‘NS-501×TO-1458’进行商业开发可能是有用的。高产、耐ToLCV病的DC杂交种可用于分离世代,以鉴定优质的多亲本高级世代间杂交(MAGIC)群体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Double cross hybrids could substantially supersede single cross hybrids for yield, fruit quality and tolerance to tomato leaf curl virus disease
ABSTRACT Recombination of commercially available hybrids could produce desirable segregants that act as sources of new alleles for tomato breeding. Seven commercial single cross (SC) hybrids of tomato (Solanum lycopersicum L.) were crossed in a half diallel fashion to obtain 21 double cross hybrids (DC) to estimate combining ability, mode of gene action and extent of heterobeltiosis for fruit yield, processing qualities and tomato leaf curl virus (ToLCV) disease severity traits. Predominance of non-additive gene action occurred in the control for all characters except for total soluble solids (TSS) content in fruit that was conditioned by both additive and non-additive gene action. Improvement of most traits in DC hybrids over SC hybrids occurred. Maximum heterotic effect in DC hybrids was for vitamin C content followed by lycopene content, fruit yield per plant, titratable acidity content, number of fruit per plant and percent disease index of ToLCV. Two good combiners, ‘PAN-1286’ and ‘Devi’ among SC hybrids were identified based on general combining ability effects and average performance. Commercial exploitation of DC hybrids, ‘TO-1458 × L-37’ and ‘NS-501 × TO-1458’ following multilocational testing in the tropics and subtropics might be useful. High yielding, ToLCV disease tolerant DC hybrids could be exploited in segregating generations to identify elite multi-parent advanced generation inter-cross (MAGIC) populations.
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来源期刊
International Journal of Vegetable Science
International Journal of Vegetable Science Agricultural and Biological Sciences-Plant Science
CiteScore
3.10
自引率
0.00%
发文量
30
期刊介绍: The International Journal of Vegetable Science features innovative articles on all aspects of vegetable production, including growth regulation, pest management, sustainable production, harvesting, handling, storage, shipping, and final consumption. Researchers, practitioners, and academics present current findings on new crops and protected culture as well as traditional crops, examine marketing trends in the commercial vegetable industry, and address vital issues of concern to breeders, production managers, and processors working in all continents where vegetables are grown.
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