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Salt tolerance of tepary (Phaseolus acutifolius Gray) and navy (P. vulgaris L.) beans at several developmental stages.

机译:在几个发育阶段,三生(Phaseolus acutifolius Grey)和海军(P. vulgaris L.)豆的耐盐性。

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摘要

Two accessions of tepary (phaseolus acutifolius Gray var. latifolius) and navy (P. vulgaris L. 'Fleetwood') beans were studied for salt tolerance at several• developmental stages. Genotypes were germinated at 0.0 through -2.5 MPa NaCl at 25°C and 35°C for nine days. Tepary accessions had higher germination percentages and rates than navy for ≤ - 2.0 MPa at 250C and ≤ - 1.5 MPa at 35°C. Fresh weights of root plus hypocotyl decreased severely with the first increment of NaCl (-0.5 MPa) for all genotypes. Fresh weight of navy was reduced more at 35°C than at 25°C. Genotypes were stressed in vermiculite-filled trays with 0.0 through -1.5 MPa NaCl for 14 days. Final growth stage and rates of emergence were reduced at salinities ~ -0.6 MPa NaCl, and were higher in tepary than navy at -1.2 MPa. Tepary beans tended to maintain higher water and osmotic potentials, and at -0.9 MPa had less reduction in leaf area than navy beans. Fresh weights, dry weights and root:shoot ratios declined in all genotypes with increasing salinities. Plants grown hydroponically were stressed with -0.10, -0.25, and -0.50 MPa NaCl during either vegetative or reproductive stages. Navy had equal or greater fresh and dry weights of leaf, stem, and pods at -0.10 MPa, but tepary beans had equal or greater weights at the highest salinity relative to navy. Tepary had the greatest pod weight with -0.50 MPa NaCl applied during the reproductive stage. Carbon exchange rates (CER) were lower in navy than one or both tepary beans at some sampling times. Tepary beans tended to have higher leaf water and osmotic potentials than did navy. Transpiration and stomatal resistance values were similar in all genotypes, while leaf temperatures were different in white tepary versus navy. Tepary beans yielded higher than navy when grown in low and high salinity fields. Transpiration rates, leaf water and osmotic potentials, and CERs were similar or higher, while stomatal resistance and leaf temperatures were similar or lower in tepary than in navy. Plant height and stand count also were measured. Tepary was more salt tolerant than navy, exhibiting greater tolerance to NaCl at every growth stage.
机译:研究了两个变种(菜豆,菜豆灰变种latifolius)和海军豆(P. vulgaris L.'Fleetwood')豆在几个发育阶段的耐盐性。基因型在25°C和35°C在0.0至-2.5 MPa NaCl的条件下萌发9天。在250°C≤-2.0 MPa和35°C≤-1.5 MPa的条件下,三倍体的发芽率和发芽率高于海军。对于所有基因型,随着NaCl的首次增加(-0.5 MPa),根和下胚轴的鲜重均急剧下降。海军的新鲜重量在35°C下比在25°C下减少更多。在充满0.0石的托盘中,用0.0到-1.5 MPa NaCl胁迫基因型14天。在盐度约为-0.6 MPa的NaCl下,最终的生长阶段和出苗率降低了,而在-1.2 MPa的条件下,三叉系的最终生长阶段和出苗率更高。三元豆倾向于保持较高的水分和渗透势,在-0.9 MPa时,叶面积的减少幅度小于海军豆。随着盐度的增加,所有基因型的鲜重,干重和根:茎比均下降。在营养或生殖阶段,水培生长的植物分别承受-0.10,-0.25和-0.50 MPa NaCl胁迫。海军在-0.10 MPa时具有的叶,茎和豆荚的鲜重和干重相等或更高,而相对于海军,三元豆在最高盐度下具有相等或更高的重量。三倍体在生殖阶段使用-0.50 MPa NaCl具有最大的豆荚重量。在某些采样时间,海军的碳交换率(CER)低于一个或两个三生豆。三元豆往往比海军具有更高的叶水和渗透潜能。所有基因型的蒸腾和气孔阻力值均相似,而白色三倍体与海军的叶片温度不同。在低盐和高盐田种植时,三生豆的产量要高于海军。与海军相比,三倍体的蒸腾速率,叶片水和渗透势以及CER相似或更高,而气孔阻力和叶片温度相似或更低。还测量了植物高度和林分数量。三倍体比海军更耐盐,在每个生长阶段对NaCl表现出更大的耐受性。

著录项

  • 作者

    Goertz Steven Harvey.;

  • 作者单位
  • 年度 1989
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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