Agriculture
Mahmoud Gholami; Mohammad Kafi; Hamid reza Khazaie; Hossein Abarghouei
Abstract
In order to study competition response among saffron corms, a split plot experiment was conducted on the basis of complete randomized block design with three replications in a field in Ashkezar city of Yazd province for 3 years. The main plots were irrigation with three levels (100%, 75% and 50% of ETc) ...
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In order to study competition response among saffron corms, a split plot experiment was conducted on the basis of complete randomized block design with three replications in a field in Ashkezar city of Yazd province for 3 years. The main plots were irrigation with three levels (100%, 75% and 50% of ETc) and the sub plots were fertilization management methods including control (without any fertilizer or manure), applying 10 t ha-1 cow manure, 10 t ha-1 vermicompost both by spreading, 10 t ha-1 or 5 t ha-1vermicompost buried under planting corm rows, 10 l ha-1 Humaster Saffron fertilizer for 1 or 2 times after flowering during irrigation. Results showed that under moderate water stress in comparison with control, total corm number and total corm weight per plant was declined more than 30% and 17% respectively. But average corm weight was enhanced by 12%. Total effective corm weight and total effective corm number were declined more than 50% under strict water stress in comparison with control. During 3 experimental years, total effective corm number, total effective corm weight, total corm number and total corm weight were increased by 189%, 205%, 470% and 263% respectively while average corm weight, effective corm weight ratio and effective corm number ratio were declined by 38%, 17% and 48% respectively. In summary, results showed that increasing in corm weight per plants during experimental years were mostly as a result of increasing in corm numbers. Although, big corms per small corms were decreased year by year as a result of competition among corms. Under moderate stress water, saffron plant grew up each corm weight in comparison with increasing corm number per plant while under strict water stress allocated assimilates among more corms and increases corm numbers per plant.
Agriculture
Mahmoud Gholami; Mohammad Kafi; Hamid reza Khazaie; Hossein Abarghouei
Abstract
In order to improve saffron yield and modify crop pattern in arid areas, a split plot experiment was conducted based on randomized complete block design with three replication in a research field in Charkhab village of Yazd province during 2013-2016. Main plots included; irrigation in three levels (100%, ...
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In order to improve saffron yield and modify crop pattern in arid areas, a split plot experiment was conducted based on randomized complete block design with three replication in a research field in Charkhab village of Yazd province during 2013-2016. Main plots included; irrigation in three levels (100%, 75% and 50% of ETc), and sub plots were seven fertilizer management including; control (zero fertilization), applying 10 t/ha cow manure(10M), 10 t/ha vermicompost by spreading(10V), 10 t/ha vermicompost buried under planting corm rows (10RV), 5 t/ha vermicompost buried under planting corm rows(5RV), spraying 10 L/ha Humaster Saffron fertilizer for 1 (SH) or 2 (CH) times after flowering. Results showed that as water stress decreased from 75% to 50% ET, flower yield and its relative traits, bud number per plant, leaf dry weight, highest corm weight, total corm weight and effective corm weight decreased significantly in each treatment. Among fertilizer managements, 10M treatment increased growth characteristics of saffron plants in the first year while 10RV and CH treatments showed better performance in the second and third years. Generally, results showed that using Humaster-Saffron fertilizer showed advantages in comparison with other treatments due to its potassium and humic acid content and possibility of its easy application in every year and along with irrigation water.
Agriculture
Mahmoud Gholami; Mohammad Kafi; Hamid Reza Khazaei
Abstract
Saffron is the main medicinal plant of Iran. In order to study the relations of sink and source between saffron leaves and corms, a split plot experiment was conducted on the basis of complete randomized block design with three replications in a field in the Ashkezar city of Yazd province during 2013-2014. ...
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Saffron is the main medicinal plant of Iran. In order to study the relations of sink and source between saffron leaves and corms, a split plot experiment was conducted on the basis of complete randomized block design with three replications in a field in the Ashkezar city of Yazd province during 2013-2014. The main plots and sub plots were irrigated with three levels (100%, 75% and 50% of ETc) and the fertilization management methods including control (without any fertilizer or manure), applying 10 t/ha cow manure, 10 t/ha vermicompost by spreading, 10 t/ha vermicompost buried under planting corm rows, 5 t/ha vermicompost buried under planting corm rows, or spraying 10 l/ha Humaster Saffron fertilizer for 1 or 2 times after flowering. The Pearson correlation coefficients were calculated between leaf length in every measuring stage and the weight of biggest corm at the end of the first year (as daughter corm). The results showed that correlation coefficients were decreased until 40 days after emergence and then increased. The highest correlation coefficient reached around 80 days after emergence and followed until the end of the growth period. The best corm yield was reached for 10 t/ha vermicompost buried under planting corm rows. Also under different irrigation regimes, the best results were obtained through full irrigation treatment.