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Germination ecology of Rhynchosia capitata: an emerging summer weed in Asia

机译:人头Rhynchosia capitata的萌发生态:亚洲新兴的夏季杂草

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Rhynchosia capitata is becoming an increasing problem in summer crops, such as cotton, soybean, pearl millet and mungbean in many Asian countries. Laboratory and greenhouse studies have been conducted to determine the effects of several environmental factors on seed germination patterns and seedling emergence of R. capitata. We investigated whether the diverse ecological factors such as temperature, light, salinity, moisture stress, pH, and soil depth affected germination and seedling emergence of R. capitata. Germination increased as temperature increased from 25oC and significantly reduced at 45oC. Presence or absence of light did not influence germination. Germination of R. capitata was sensitive to increased salt and moisture stress, as well as to seed burial depth. Only 48% of seeds germinated at 150 mM salt concentration compared to 100% in control (distilled water). Similarly, 15% of seeds germinated at an osmotic potential of ‑0.8 MPa compared to 88% at ‑0.2 MPa. The optimum pH for seed germination of R. capitata was 7 (98% germination), but the seeds also germinated at lower level of pH 5 (85%) and at higher level of pH 10 (75%). In seed burial trial, maximum seedling emergence of 93% occurred at 2 cm depth, and seedling did not emerge from a depth of 12 cm. The high germination ability of R. capitata under a wide range of ecological factors suggests that this species is likely to be the one to cause more problems in a near future, if not managed appropriately.
机译:在许多亚洲国家,人均肺炎支原体正成为夏季作物(例如棉花,大豆,珍珠粟和绿豆)中日益严重的问题。已经进行了实验室和温室研究,以确定几种环境因素对人参种子发芽模式和幼苗出苗的影响。我们调查了温度,光照,盐度,水分胁迫,pH和土壤深度等各种生态因素是否影响了人头草的发芽和幼苗出苗。随着温度从25oC升高,发芽量增加,在45oC时发芽量显着降低。有无光照不会影响发芽。 R. capitata的萌发对盐和水分胁迫的增加以及种子的埋藏深度很敏感。在盐浓度为150 mM时,只有48%的种子发芽,而对照(蒸馏水)中只有100%的种子发芽。同样,有15%的种子以‑0.8 MPa的渗透势发芽,而在‑0.2 MPa时的发芽率为88%。人头罗非鱼种子萌发的最佳pH为7(发芽率为98%),但种子在较低的pH 5(85%)和较高的pH 10(75%)下也发芽。在种子埋葬试验中,在2 cm深度出现的最大出苗率为93%,而在12 cm深度没有出现出苗。在广泛的生态因素下,人头蝠的高发芽能力表明,如果管理不当,该物种很可能在不久的将来引起更多的问题。

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