首页> 美国卫生研究院文献>Journal of Nematology >Saline Irrigation Affects Belonolaimus longicaudatus and Hoplolaimus galeatus on Seashore Paspalum
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Saline Irrigation Affects Belonolaimus longicaudatus and Hoplolaimus galeatus on Seashore Paspalum

机译:盐渍灌溉对海滨雀spa的Belolaolaimus longicaudatus和Hoplolaimus galeatus产生影响

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摘要

Seashore paspalum (Paspalum vaginatum) has great potential for use in salt-affected turfgrass sites. Use of this grass on golf courses, athletic fields, and lawns in subtropical coastal areas may aid in conservation of freshwater resources. Belonolaimus longicaudatus and Hoplolaimus galeatus are considered among the most damaging root pathogens of turfgrasses in Florida. Glasshouse experiments were performed in 2002 and 2003 to examine the effects of increasing levels of irrigation salinity on B. longicaudatus and H. galeatus. Irrigation treatments were formulated by concentrating deionized water to six salinity levels (0, 5, 10, 15, 20, and 25 dS/m). Final population densities of H. galeatus followed a negative linear regression (r² = 0.92 and 0.83; P <= 0.01) with increasing salinity levels. Final population densities of B. longicaudatus were quadratically (r² = 0.72 and 0.78; P <= 0.01) related to increasing salinity levels from 0 to 25 dS/m. An increase in population densities of B. longicaudatus was observed at moderate salinity levels (10 and 15 dS/m) compared to 0 dS/m. Root-length comparisons revealed that B. longicaudatus caused root stunting at low salinity levels, 0 to 10 dS/m, but roots were not affected at 15 to 25 dS/m. These results indicate that the ability of B. longicaudatus to feed and stunt root growth was negatively affected at salinity levels of 15 dS/m and above.
机译:海滨雀spa(Paspalum阴道瘤)在受盐影响的草皮草场所具有巨大的潜力。在亚热带沿海地区的高尔夫球场,运动场和草坪上使用这种草可能有助于保护淡水资源。 Belonolaimus longicaudatus和Hoplolaimus galeatus被认为是佛罗里达草皮草中最具破坏性的根系病原体。在2002年和2003年进行了温室试验,以研究提高灌溉盐度水平对长双歧杆菌和galeatus的影响。通过将去离子水浓缩至六个盐度水平(0、5、10、15、20和25 dS / m)来制定灌溉处理方法。随着盐度水平的提高,半乳糖人形菌的最终种群密度呈负线性回归(r²= 0.92和0.83; P <= 0.01)。最终的B. longicaudatus种群密度与盐度水平从0到25 dS / m的增加呈平方关系(r²= 0.72和0.78; P <= 0.01)。在中等盐度水平(10和15 dS / m)下,与0 dS / m相比,长双歧杆菌的种群密度增加。根长比较显示,B。longicaudatus在低盐度(0至10 dS / m)下导致根发育迟缓,但在15至25 dS / m时根系不受影响。这些结果表明,在盐度水平为15 dS / m及以上时,长双歧杆菌的进食和特技根生长能力受到负面影响。

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