Formation of Production Characters of Soya Genotypes [Glycine max (L.) Merr.] in the Areas of South-East Kazakhstan with Sufficient and Limited Water Supply

Moisture stress is a major environmental factor that limits the soy (Glycine max (L.) Merr.) yield worldwide. This study aimed to evaluate production characters of 98 varieties and collection samples of soy in the fields of the Almaty region of the Republic of Kazakhstan with and without irrigation....

Full description

Bibliographic Details
Main Authors: Svetlana Vladimirovna Didorenko, Raushan Saylauvna Yerzhebayeva, Dzuldyz Bakaevna Abildaeva, A. A. Amangeldiyeva
Format: Article
Language:English
Published: Universitas Brawijaya 2020-09-01
Series:AGRIVITA Journal of Agricultural Science
Subjects:
Online Access:https://agrivita.ub.ac.id/index.php/agrivita/article/view/2739
id doaj-6aaf84cf006348e9a676242f21edceae
record_format Article
spelling doaj-6aaf84cf006348e9a676242f21edceae2020-11-27T05:41:05ZengUniversitas BrawijayaAGRIVITA Journal of Agricultural Science0126-05372477-85162020-09-0142350952010.17503/agrivita.v42i3.2739547Formation of Production Characters of Soya Genotypes [Glycine max (L.) Merr.] in the Areas of South-East Kazakhstan with Sufficient and Limited Water SupplySvetlana Vladimirovna Didorenko0Raushan Saylauvna Yerzhebayeva1Dzuldyz Bakaevna Abildaeva2A. A. Amangeldiyeva3Kazakh Research Institute of Agriculture and Plant Growing, Almalybak, Republic of KazakhstanKazakh Research Institute of Agriculture and Plant Growing, Almalybak, Republic of KazakhstanKazakh Research Institute of Agriculture and Plant Growing, Almalybak, Republic of KazakhstanKazakh Research Institute of Agriculture and Plant Growing, Almalybak, Republic of KazakhstanMoisture stress is a major environmental factor that limits the soy (Glycine max (L.) Merr.) yield worldwide. This study aimed to evaluate production characters of 98 varieties and collection samples of soy in the fields of the Almaty region of the Republic of Kazakhstan with and without irrigation. The experiment used a combination of features – weight of seeds from a plot, weight of 1,000 seeds, and seed plumpness – as the main markers for drought resistance assessment. Based on a comprehensive assessment of the working collection, soybean genotypes with high drought resistance were identified. These genotypes are useful genetic materials for soy breeding programs with the aim to increase yields and drought resistance. Varieties of the maturity group 00 can be cultivated in the Almaty region without irrigation, since these accessions avoid moisture stress by shortening the vegetation period. These samples can also be recommended for cultivation in non-irrigared areas of Eastern and Northern Kazakhstan. The highest productivity potential in the Almaty region was found in varieties of the maturity group II. However, their cultivation without irrigation will lead to a maximum decrease in yield.https://agrivita.ub.ac.id/index.php/agrivita/article/view/2739collectioncrop yielddrought resistanceirrigationnon-irrigated agriculture
collection DOAJ
language English
format Article
sources DOAJ
author Svetlana Vladimirovna Didorenko
Raushan Saylauvna Yerzhebayeva
Dzuldyz Bakaevna Abildaeva
A. A. Amangeldiyeva
spellingShingle Svetlana Vladimirovna Didorenko
Raushan Saylauvna Yerzhebayeva
Dzuldyz Bakaevna Abildaeva
A. A. Amangeldiyeva
Formation of Production Characters of Soya Genotypes [Glycine max (L.) Merr.] in the Areas of South-East Kazakhstan with Sufficient and Limited Water Supply
AGRIVITA Journal of Agricultural Science
collection
crop yield
drought resistance
irrigation
non-irrigated agriculture
author_facet Svetlana Vladimirovna Didorenko
Raushan Saylauvna Yerzhebayeva
Dzuldyz Bakaevna Abildaeva
A. A. Amangeldiyeva
author_sort Svetlana Vladimirovna Didorenko
title Formation of Production Characters of Soya Genotypes [Glycine max (L.) Merr.] in the Areas of South-East Kazakhstan with Sufficient and Limited Water Supply
title_short Formation of Production Characters of Soya Genotypes [Glycine max (L.) Merr.] in the Areas of South-East Kazakhstan with Sufficient and Limited Water Supply
title_full Formation of Production Characters of Soya Genotypes [Glycine max (L.) Merr.] in the Areas of South-East Kazakhstan with Sufficient and Limited Water Supply
title_fullStr Formation of Production Characters of Soya Genotypes [Glycine max (L.) Merr.] in the Areas of South-East Kazakhstan with Sufficient and Limited Water Supply
title_full_unstemmed Formation of Production Characters of Soya Genotypes [Glycine max (L.) Merr.] in the Areas of South-East Kazakhstan with Sufficient and Limited Water Supply
title_sort formation of production characters of soya genotypes [glycine max (l.) merr.] in the areas of south-east kazakhstan with sufficient and limited water supply
publisher Universitas Brawijaya
series AGRIVITA Journal of Agricultural Science
issn 0126-0537
2477-8516
publishDate 2020-09-01
description Moisture stress is a major environmental factor that limits the soy (Glycine max (L.) Merr.) yield worldwide. This study aimed to evaluate production characters of 98 varieties and collection samples of soy in the fields of the Almaty region of the Republic of Kazakhstan with and without irrigation. The experiment used a combination of features – weight of seeds from a plot, weight of 1,000 seeds, and seed plumpness – as the main markers for drought resistance assessment. Based on a comprehensive assessment of the working collection, soybean genotypes with high drought resistance were identified. These genotypes are useful genetic materials for soy breeding programs with the aim to increase yields and drought resistance. Varieties of the maturity group 00 can be cultivated in the Almaty region without irrigation, since these accessions avoid moisture stress by shortening the vegetation period. These samples can also be recommended for cultivation in non-irrigared areas of Eastern and Northern Kazakhstan. The highest productivity potential in the Almaty region was found in varieties of the maturity group II. However, their cultivation without irrigation will lead to a maximum decrease in yield.
topic collection
crop yield
drought resistance
irrigation
non-irrigated agriculture
url https://agrivita.ub.ac.id/index.php/agrivita/article/view/2739
work_keys_str_mv AT svetlanavladimirovnadidorenko formationofproductioncharactersofsoyagenotypesglycinemaxlmerrintheareasofsoutheastkazakhstanwithsufficientandlimitedwatersupply
AT raushansaylauvnayerzhebayeva formationofproductioncharactersofsoyagenotypesglycinemaxlmerrintheareasofsoutheastkazakhstanwithsufficientandlimitedwatersupply
AT dzuldyzbakaevnaabildaeva formationofproductioncharactersofsoyagenotypesglycinemaxlmerrintheareasofsoutheastkazakhstanwithsufficientandlimitedwatersupply
AT aaamangeldiyeva formationofproductioncharactersofsoyagenotypesglycinemaxlmerrintheareasofsoutheastkazakhstanwithsufficientandlimitedwatersupply
_version_ 1724414144315129856