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Biomass Production and Weed Control in Some Winter Cover Crops in Hokuriku District

机译:北陆地区某些冬季覆盖作物的生物量生产和杂草控制

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For the purpose of introduction cover crops into summer crop production in the Hokuriku district, grass (wheat, barley, rye and bristle oat), legume (hairy vetch, HV ; common vetch, CV ; milk vetch, MV ; crimson clover, CC) and Brassica (rape) cover crops were sown in October of 1998 and 1999, and above-ground bio-mass (AGB) in the following spring and weed control effect were observed at the University Farm of Niigata University. A large amount of AGB (646 kg DW and 591 kg DW per 10 a in rye and inHV, respectively) was provided as organic matter to the field. In particular, nitrogen content of HV was 4.2% (DW) and approximately 24 kg/10 a organic N was supplied to the field grown HV. After mowing, although HV residue covered the ground surface completely, ground surface cover by residue of other cover crops was insufficient. Suckering occurred from the stubble of rye, and living mulch was formed by seed germination on the ground surface in wheat, barley and CC. These cover crops should be mowed earlier for residue mulch formation. There was little difference in AGB between 1999 and 2000 ; however, HV-AGB obtained in 2000 was reduced compared to that in 1999 because of long period of snow cover in 2000. Emergence and growth of weed in the grass residue mulch were smaller or the same compared with the tilled field for control. In the HV residue mulch field, weed emergence was smaller but final weed DW was larger than the tilled field and grass mulch fields. DW of lettuce grown in HV, CV and bristle oat mulch was larger than those in tilled or other mulch fields. From these observations, HV and rye will be promising cover crops in the Hokuriku district because of the large AGB production. However, it is necessary to establish cropping techniquesso that seedlings can overwinter in the snow cover region in HV and suckering will be suppressed after mowing in rye.
机译:为了将农作物引入北陆地区的夏季作物生产中,草(小麦,大麦,黑麦和猪鬃燕麦),豆类(有毛v子,HV;普通v子,CV;;子,MV;深红三叶草,CC)分别在1998年10月和1999年10月播种了甘蓝型油菜和油菜(油菜),第二年春季在新泻大学的大学农场观察到了地上生物量(AGB)和杂草控制效果。向田间提供了大量的AGB(每10 a黑麦和inHV中分别为646 kg DW和591 kg DW)作为有机物。特别是,HV的氮含量为4.2%(DW),大约24 kg / 10的有机氮被供应到田间生长的HV。割草后,尽管HV残留物完全覆盖了地面,但其他被覆作物的残留物对地面的覆盖不足。从黑麦的残茬开始产生吸吮,并且通过在小麦,大麦和CC中的地表种子发芽形成活的覆盖物。这些覆盖作物应尽早割草以形成残留物覆盖物。 1999年和2000年之间的AGB差异不大;但是,由于2000年积雪较长,2000年获得的HV-AGB比1999年减少。与对照耕地相比,草渣覆盖物中杂草的出现和生长较小或相同。在HV渣覆盖地上,杂草出苗较小,但最终杂草DW大于耕地和草覆盖地。 HV,CV和刚毛燕麦覆盖物中生菜的DW大于耕种或其他覆盖物领域中的生菜的DW。从这些观察结果来看,由于AGB产量高,HV和黑麦将成为北陆地区有希望的覆盖作物。但是,有必要建立种植技术,以使幼苗能够在HV的积雪区域越冬,并且在黑麦割草后抑制吸盘。

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