Adaptivity and stability parameters of heterotic tomato hybrids (Solanum lycopersicum L.) in soil greenhouses

IF 0.2 Q4 AGRICULTURE, MULTIDISCIPLINARY
I. E. Bayeva, I. G. Puhachova, M. M. Dabrodzkin, A. Kilchevsky
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Abstract

Varieties and hybrids which are stable in yield and suitable for cultivation in various soil and climatic zones have a particular value within the conditions of industrial production. New varieties created by breeders should be characterized by the highest yield in favorable conditions, and, at the same time, by the stable yield in other conditions, i.e. be highly accommodative. The aim of the research was to assess environmental stability and plasticity parameters of tomato hybrids according to the main characteristics of yield and then to select the hybrids F1 with high productivity and stability in soil greenhouses. The calculation of adaptive ability and ecological stability indexes was carried out according to the method of A.V. Kilchevsky and L.V. Khotyleva using the ADIS program. As a result, some hybrids were identified as heavy yielding and with high general adaptive ability according to the following parameters: early fruit yield - NikolaçLine‑2, Line‑4×Line‑2, NikolaçLine 19/3, NikolaçLine-9, Line TX-144×Irishka, Line B-3-1-8×Line 19/0, Line C-9464×Line 19/0; on the basis of “commercial fruit yield” - NikolaçLine-2, TX-144×Line-2, Line TX-144×Irishka, TX140×Line-2, Line TX-140×Line 19/3, Line B-3-1-8×Line 19/0, Line C-9464×Line 19/0; by the weight of commercial fruit - NikolaçLine 19/3, Line TX-144çLine 19/3, Line B-3-1-8×Line 19/0. Greater part of yield parameters was stable for hybrids NikolaçLine-2, Line-4×Line-2, TX-140×Line-2, Line B-3-1-8×Line 19/0, Line TX-144×Irishka. Hybrids combinations Azart and Vityaz have successfully passed the test and were recommended for planting on the territory of the Republic of Belarus. Thus, feasibility of ecological stability and plasticity assessment at the final stage of breeding process has been proven. It reduces possibility of errors in choosing hybrids for State testing procedures. Acknowledgments. The research was carried out within the framework of the State Program “Innovative Biotechnologies” for 2010-2012 and for the period up to 2015”, as well as the Interstate Target Program of the Eurasian Economic Community “Innovative Biotechnologies” for 2011-2015.
番茄杂交种在土壤温室中的适应性和稳定性参数
产量稳定,适合在各种土壤和气候带栽培的品种和杂交种,在工业生产条件下具有特殊的价值。育种家创造的新品种应具有在有利条件下产量最高,同时在其他条件下产量稳定的特点,即具有高度适应性。本研究的目的是根据番茄产量的主要特征,对番茄杂交种的环境稳定性和可塑性参数进行评价,从而筛选出高产稳定的土壤大棚杂交种F1。采用ADIS程序,参照A.V. Kilchevsky和L.V. Khotyleva的方法计算了适应能力和生态稳定性指标。结果,根据以下参数,鉴定了一些高产和高一般适应能力的杂交种:早果产量- nikola Line‑2、nikola Line‑2、nikola Line 19/3、nikola Line‑9、TX-144×Irishka、B-3-1-8×Line 19/0、C-9464×Line 19/0;基于“商品水果产量”- nikola Line-2、TX-144×Line-2、TX-144×Irishka、TX140×Line-2、TX-140×Line 19/3、B-3-1-8×Line 19/0、C-9464×Line 19/0;按商品水果的重量- nikola线19/3,线tx -144 线19/3,线B-3-1-8×Line 19/0。杂种nikola Line-2、Line-4×Line-2、TX-140×Line-2、B-3-1-8×Line 19/0、TX-144×Irishka的产量参数大部分稳定。杂交组合Azart和Vityaz已经成功地通过了测试,并被推荐在白俄罗斯共和国境内种植。从而证明了在养殖后期进行生态稳定性和可塑性评价的可行性。它减少了为国家测试程序选择混合动力车时出现错误的可能性。致谢该研究是在2010-2012年国家“创新生物技术”计划和2011-2015年欧亚经济共同体“创新生物技术”州际目标计划的框架内进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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