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Moisture stress is among the limiting factors to crop yields. The objective of this study was to determine the effects of moisture stress imposed at different growth stages of bean plants on nodulation and nitrogen fixation. The experiment was conducted in greenhouse and in the field, at Sokoine University of Agriculture. The bean genotype "Kijivu" was used, the stages were; (i) VC (Cotyledonary and unifoliolate leaves visible), (ii) V2 (Second trifoliolate leaf unfolded), (iii) V4 (Fourth trifoliolates on the main stem, blossom clusters not opened) and (iv) R2 (Pods 1/2 inch long. Irrigation treatments were initiated to maintain moisture treatments of 100%, 75%, 50%, or 25% of the soils field capacity for each plant growth stage until plant maturity. Moisture stress significantly affected nodulation, nitrogen fixation, and finally grain yields. Numbers of nodules per plant were reduced by 56.0% in greenhouse and 69.2% in the field between V4 and VC at 25% moisture regime. Shoot biomass was reduced by 40.8% and 26.8% while root biomass was reduced 23.5% and 31.5% in greenhouse and field, respectively. These results suggest that for maximum nodulation and nitrogen fixation to be achieved, moisture stress must be avoided at the VC and V2 growing stages.
机译:水分胁迫是限制作物产量的因素之一。这项研究的目的是确定在豆类植物不同生长阶段施加的水分胁迫对结瘤和固氮的影响。该实验在索科因农业大学的温室和野外进行。使用了大豆基因型“ Kijivu”,分阶段进行; (i)VC(可见子叶和单叶的叶子),(ii)V2(第二三叶形的叶子展开),(iii)V4(主茎上的四叶形,没有开花簇)和(iv)R2(1/2荚)每英寸长,开始灌溉处理以保持每个植物生长阶段土壤处理能力的100%,75%,50%或25%的水分处理直至植物成熟,水分胁迫显着影响结瘤,固氮和最终结实在湿度为25%的情况下,温室中每棵植物的根瘤数量减少了56.0%,V4和VC之间的田间减少了69.2%,枝条生物量减少了40.8%和26.8%,而根系生物量减少了23.5%和31.5%。这些结果表明,要实现最大的结瘤和固氮作用,在VC和V2生长阶段必须避免水分胁迫。

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