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首页> 外文期刊>Field Crops Research >Optimum sowing date and cultivar duration of dry-seeded boro on the High Ganges River Floodplain of Bangladesh
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Optimum sowing date and cultivar duration of dry-seeded boro on the High Ganges River Floodplain of Bangladesh

机译:孟加拉国恒河泛滥平原上播种硼的最佳播种日期和品种持续时间

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Changing rice cultivation method from puddling, manual transplanting and continuous ponding to dry seeding followed by alternate wetting and drying water management (AWD) has the potential to greatly reduce labour and irrigation requirement and crop establishment cost of dry season rice crops. However, in the case of boro crops (irrigated dry season rice) grown in Bangladesh, careful selection of sowing date and variety (duration) may be needed to avoid cold damage during both the vegetative and reproductive stages, and to avoid high temperature and rain storms during flowering and grain filling. Therefore, field experiments were undertaken to evaluate 5 sowing dates (1, 8, 15, 22, and 30 November) and two commonly grown cultivars with medium (BRRI dhan28, 140-145 days) and long (BRRI dhan29, 160-165 days) duration. The experiments were conducted during the 2011/12, 2012/13 and 2013/14 dry seasons at Jessore on the southern end of the High Ganges River Floodplain. Crops sown in early November emerged faster and had higher plant density than crops sown in late November, and also had better growth for the first couple of months after sowing, probably due to higher temperature during crop establishment and the early vegetative stage. Delaying sowing from 1 to 30 November reduced the time to flowering (FL) by 5-9 days, and the time to physiological maturity (PM) by 14-16 days. There was a consistent trend for highest grain yield (BRRI dhan28 4.7-5.0 t ha(-1), BRRI dhan29 6.7-6.9 t ha(-1)) with 8 November sowing, significantly higher than yield of late November sowings, mainly due to lower floret fertility and more so for BRRI dhan29. Maximum yield of both cultivars was well below attainable yield of transplanted crops grown in the same location and season, and the reasons need to be elucidated in studies comparing the performance of both. Cultivation of November-sown dry seeded boro at Jessore is risky given the complete failure of all crops sown in 2012 due to cold damage in January 2013, and the severe low temperature stress experienced by the later sowings in 2011. While the 2013/14 crop did not show visual symptoms of cold injury during the early vegetative stage, crop growth was also very poor during the cold period. The risk of severe cold damage in dry seeded born is even greater in the major born producing area of north west Bangladesh, where December and January temperature is lower than at Jessore. Therefore, there is a need to develop born varieties with greater cold tolerance during the early-mid vegetative stage to reduce the risk of failure and improve yield of dry seeded born crops, thus enabling farmers to capitalise on the potential advantages of converting from puddling and transplanting to dry seeding. (C) 2015 Elsevier B.V. All rights reserved.
机译:将稻米的种植方式从混水,人工移栽和连续移栽改为干播,然后再进行湿润和干燥水管理(AWD)交替进行,有可能极大地减少旱季水稻作物的劳动力和灌溉需求以及作物种植成本。但是,在孟加拉国种植无硼作物(旱季水稻)的情况下,可能需要仔细选择播种日期和品种(持续时间),以避免在营养和生殖阶段受到冷害,并避免高温和雨淋暴风雨期间开花和灌浆。因此,进行了田间试验,以评估5个播种日期(11月1日,8月15日,22日和30日)和两个通常种植的中度(BRRI dhan28,140-145天)和长(BRRI dhan29,160-165天)品种)的持续时间。实验是在恒河泛滥平原南端的杰索尔在2011 / 12、2012 / 13和2013/14旱季进行的。与11月下旬播种的农作物相比,11月初播种的农作物出苗更快,植物密度更高,而且播种后的头几个月生长也更好,这可能是由于作物生长和早期营养期的温度升高。从11月1日至30日推迟播种,可使开花(FL)时间缩短5-9天,而使生理成熟(PM)时间减少14-16天。在11月8日播种时,最高谷物产量一直保持一致的趋势(BRRI dhan28 4.7-5.0 t ha(-1),BRRI dhan29 6.7-6.9 t ha(-1)),明显高于11月下旬播种的单产降低小花的受精率,对于BRRI dhan29则更是如此。两个品种的最大产量都远低于相同地点和季节种植的移植作物的可达到产量,在比较两者性能的研究中需要阐明原因。考虑到由于2013年1月的冷害,2012年播种的所有农作物完全歉收,以及2011年后期播种遭受的严重低温胁迫,11月在杰索尔播种的播种硼谷的耕种是有风险的。在营养早期,没有表现出冷害的视觉症状,在寒冷时期作物的生长也很差。在孟加拉国西北部主要的产区,干燥种子出生的人遭受严重的冷害的风险更大,那里的十二月和一月温度低于杰索尔。因此,有必要在植物营养的早期到中期发展耐寒性强的出生品种,以减少失败的风险并提高干燥种子播种农作物的产量,从而使农民能够利用从水洼和地皮转作的潜在优势。移栽到干种子上。 (C)2015 Elsevier B.V.保留所有权利。

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