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Influence of Rhizobia inoculation on biomass gain and tissue nitrogen content of Leucaena leucocephala seedlings under drought

机译:接种根瘤菌对干旱胁迫下银合欢幼苗生物量和组织氮含量的影响

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摘要

Anticipated increases in the frequency of heat waves and drought spells may have negative effects on the ability of leguminous trees to fix nitrogen (N). In seedlings of Leucaena leucocephala inoculated with Mesorhizobium loti or Rhizobium tropici, we investigated how the developmental stage and a short drought influenced overall biomass and the accumulation of carbon and N in plant tissues. In early developmental stages, the number of nodules and nodule biomass were correlated with total plant biomass and δ15N, and nodules and roots contributed 33%–35% of the seedling total N. Seedlings associated with R. tropici fixed more N and exhibited higher overall biomass compared with M. loti seedlings. Four and a half months after inoculation (140 days after inoculation, DAI), a short (15-day) drought inhibited seedling growth and caused a decline in total plant N, with the smallest decline in R. tropici seedlings. After 15 days of drought, i.e., 155 DAI, the nodules had accumulated proline, but the total amino acid concentration did not change. Our results indicate that N-fixation is independent of seedlings growth. In addition, R. tropici is a better choice than M. loti as a symbiont for Leucaena seedlings for forest restoration and agroforestry applications under increasingly drier conditions.
机译:预计热浪和干旱的频率会增加,对豆科植物固氮(N)的能力会产生负面影响。在接种了间生根瘤菌或热带根瘤菌的银合欢的幼苗中,我们研究了发育阶段和短暂干旱如何影响植物组织中的整体生物量以及碳和氮的积累。在发育的早期,根瘤和根瘤生物量与植物总生物量和δ15N相关,根瘤和根系占幼苗总氮的33%–35%。生物量与洛蒂草幼苗相比。接种后四个半月(接种后140天,DAI),短暂的干旱(15天)抑制了幼苗的生长,并导致了总植株N量的下降,其中R. tropici幼苗的下降幅度最小。干旱15天(即155 DAI)后,结节积累了脯氨酸,但总氨基酸浓度没有变化。我们的结果表明固氮与幼苗生长无关。此外,在日益干燥的条件下,热带罗非鱼是一种更好的选择,比罗伊莫氏菌更适合作为白斑苗的共生体,用于森林恢复和农林业应用。

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