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首页> 外文期刊>The Indian Journal of Agronomy >Evaluation of Bt (Bacillus thuringiensis) and non-Bt cotton (Gossypium hirsutum) hybrids under varied planting time
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Evaluation of Bt (Bacillus thuringiensis) and non-Bt cotton (Gossypium hirsutum) hybrids under varied planting time

机译:不同种植时间下Bt(苏云金芽孢杆菌)和非Bt棉(陆地棉)杂交种的评价

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摘要

A field trial was carried out under irrigated situation during the fall seasons i.e. between August and February of 2003-04 and 2004-05 at Coimbatore to evaluate the performance and suitability of popular Bt and non-Bt hybrids (MECH 162 Bt and MECH 162 non Bt) on both optimum and delayed planting conditions under four dates of sowing (15 August, 1 and 15 September, and 1, October). Timely planting of Bt hybrid on 15 August produced significantly higher seed cotton yield (2.05 t/ha) and associated traits. The result revealed that seed cotton yields were similar under Bt (MECH 162 Bt) when sown either on 1 or 15 September and that of non-Bt (MECH 162 non Bt) sown on 15 August. The study also suggested that Bt cotton hybrid could be staggered planted from 15 August to 15 September without significant reduction in yield. Higher yield of 'MECH 162 Bt' was also apparent under late planting condition (1 October) over its isogenic non-Bt as the former recorded significantly (42.5%) higher yield (1.47 t/ha) over the latter (1.04 t/ha). Bt cotton matured early in the season (with higher Bartlett's index) and retained higher number of bolls, which resulted in increased sink strength and seed cotton yield. However, elevated performance in fibre yields due to sowing time differences or Bt gene per se (MECH 162 Bt versus its non-Bt) could hardly influence the more resilient quality traits except 2.5% span length. Highest net return ((sic)35,550/ha) and benefit cost ratio (BCR, 1.63) were also calculated with 15 August planting with the Bt hybrid. Even under late sown condition economic advantage of Bt hybrid was evident from increased net return (11.6%) and BCR (37%). Irrespective of dates of sowing, incorporation of Bt gene onto non-Bt hybrid increased gross return, net return and BCR by 15.6, 36.4 and 144.3% respectively. A Regression equation involving yield (Y), maximum air temperature (T-max), rainfall (RF) and RH (Y=117.4+0.06359 T-max (0-45 DAS) - 0.04716 RH 07 22 (46-90 DAS) - 0.03115 RF(1-2 weeks) was validated for yield prediction using chi-square test.
机译:在秋季,即2003-04年8月至2月和2004-05年秋季,在Coimbatore进行了灌溉条件下的田间试验,以评估流行的Bt和非Bt杂种的性能和适宜性(MECH 162 Bt和MECH 162 non Bt)在四个播种日期(8月15日,9月1日和15日以及10月1日)的最佳播种和延迟播种条件下。 8月15日及时种植Bt杂交种可显着提高籽棉产量(2.05吨/公顷)和相关性状。结果表明,9月1日或15日播种的Bt(MECH 162 Bt)下的籽棉产量与8月15日播种的非Bt(MECH 162非Bt)相似。研究还表明,Bt棉花杂交种可以从8月15日到9月15日交错种植,而不会显着降低产量。在播种后期(10月1日),'MECH 162 Bt'的产量也高于其等基因非Bt,因为前者的产量(1.47 t / ha)明显高于后者(1.04 t / ha)(42.5%) )。转基因棉花在该季节早期成熟(巴特利特指数较高),并保留了更多的棉铃,这导致水槽强度和籽棉产量增加。然而,由于播种时间差异或Bt基因本身(MECH 162 Bt与非Bt基因相比),提高了纤维产量的性能几乎不会影响更具弹性的品质特性,但跨距长度为2.5%。在8月15日种植Bt杂交种时,也计算出最高的净收益((sic)35,550 / ha)和收益成本比(BCR,1.63)。即使在后期播种条件下,Bt杂交种的经济优势也可以从增加的净收益(11.6%)和BCR(37%)中看出。无论播种日期如何,将Bt基因掺入非Bt杂种中的总收益,净收益和BCR分别增加了15.6%,36.4%和144.3%。涉及产量(Y),最高气温(T-max),降雨量(RF)和RH(Y = 117.4 + 0.06359 T-max(0-45 DAS)-0.04716 RH 07 22(46-90 DAS)的回归方程-使用卡方检验验证了0.03115 RF(1-2周)的产量预测。

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